#Benzyl Chloride News
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Benzyl Chloride Prices: Trend | Pricing | News | Price | Database
The global market for benzyl chloride is witnessing dynamic fluctuations in pricing trends, influenced by various factors ranging from raw material availability to demand across end-use industries. Benzyl chloride, a vital intermediate in the production of numerous chemicals, plays a pivotal role in industries such as pharmaceuticals, agrochemicals, and dyes. This importance places its pricing under significant scrutiny, as it directly impacts the cost structures of these dependent sectors. The pricing of benzyl chloride has shown volatility over the past few years, primarily due to fluctuations in benzyl alcohol and toluene prices, which serve as key raw materials. Variations in crude oil prices further affect the cost of these precursors, creating a cascading effect on the overall benzyl chloride market. Additionally, geopolitical uncertainties and trade policies significantly influence the supply chain, impacting both raw material procurement and product distribution.
The demand-supply dynamics of benzyl chloride also play a critical role in determining its market price. An uptick in demand from the agrochemical sector, driven by the growing need for crop protection chemicals, has amplified the pressure on manufacturers to ensure consistent supply. Similarly, the pharmaceutical industry's demand for benzyl chloride as a precursor in active pharmaceutical ingredient (API) production has seen a steady rise, pushing prices higher in certain regions. However, production constraints, environmental regulations, and stringent policies on the handling of hazardous chemicals have limited the production capacity of benzyl chloride manufacturers, creating a delicate balance between demand and supply. These factors contribute to the periodic surge in benzyl chloride prices, especially in regions where regulatory compliance adds an extra layer of cost.
Get Real time Prices for Benzyl Chloride: https://www.chemanalyst.com/Pricing-data/benzyl-chloride-1299
Asia-Pacific emerges as a significant player in the benzyl chloride market, driven by robust industrial growth and increasing demand from end-use sectors. China and India, in particular, have become major hubs for benzyl chloride production due to their cost-competitive manufacturing landscapes and abundant availability of raw materials. However, environmental regulations and stricter emission norms in these countries are starting to impact production volumes, leading to fluctuations in local and international pricing. In Europe and North America, the market dynamics are influenced more by regulatory frameworks and advancements in production technologies. The higher emphasis on sustainable practices in these regions often leads to a higher cost of production, which is subsequently reflected in the pricing of benzyl chloride. Despite these challenges, the demand in these regions remains stable, driven by consistent requirements from the pharmaceutical and specialty chemical sectors.
Another critical factor influencing benzyl chloride prices is the emergence of alternative products and substitutes. With the increasing focus on green chemistry and sustainable practices, research and development activities are being directed toward finding eco-friendly alternatives to benzyl chloride. While these substitutes are yet to gain significant traction in the market, their potential impact on benzyl chloride demand and pricing cannot be overlooked. Moreover, technological advancements in chemical synthesis are enabling the production of benzyl chloride with improved efficiency, which could help stabilize prices by reducing production costs. Investments in innovation and technology are thus playing a pivotal role in shaping the future trajectory of the benzyl chloride market.
The global trade dynamics surrounding benzyl chloride also contribute to its price volatility. Export-import tariffs, trade restrictions, and currency fluctuations all play a part in determining the final cost of benzyl chloride in international markets. For instance, the imposition of tariffs on chemical imports by certain countries has led to increased prices in regions reliant on imports. Conversely, countries with a strong domestic production base are better positioned to control prices and ensure market stability. The interplay of these factors creates a complex pricing landscape, requiring stakeholders to closely monitor market trends and adjust their strategies accordingly. Additionally, the rise of e-commerce platforms and digital marketplaces for chemicals is gradually transforming the traditional trading ecosystem, introducing new dynamics to price discovery and negotiation.
Sustainability is becoming a key focus area for the benzyl chloride market, influencing both production practices and pricing strategies. Companies are increasingly investing in environmentally friendly technologies to align with global sustainability goals and reduce their carbon footprint. These initiatives, while beneficial in the long term, often involve significant upfront costs, which are passed on to consumers in the form of higher prices. However, the growing awareness and demand for sustainable products are expected to create opportunities for premium pricing, offsetting the initial investment costs. Furthermore, collaborations between industry players and regulatory bodies are fostering the development of standards and certifications that promote transparency and accountability in the benzyl chloride supply chain.
Looking ahead, the benzyl chloride market is poised for steady growth, supported by advancements in production technologies and the increasing demand from key end-use sectors. However, the pricing dynamics will continue to be shaped by a myriad of factors, including raw material costs, regulatory frameworks, and global trade policies. Stakeholders across the value chain will need to adopt a proactive approach to navigate these challenges and capitalize on emerging opportunities. By leveraging data-driven insights and adopting agile strategies, companies can position themselves competitively in the evolving benzyl chloride market, ensuring sustainable growth and profitability in the long term. In this dynamic landscape, staying ahead of market trends and fostering innovation will be crucial for driving value creation and maintaining a competitive edge in the benzyl chloride industry.
News for Benzyl Chloride: https://www.chemanalyst.com/NewsAndDeals/NewsDetails/benzyl-chloride-prices-soar-amid-tight-supply-and-high-demand-across-key-markets-29746
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#Benzyl Chloride#Benzyl Chloride Price#Benzyl Chloride Prices#Benzyl Chloride Price Monitor#Benzyl Chloride News
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The role of Bacteriostatic Water in the Management of Diabetes using Injectables
What is Bacteriostatic Water?
Bacteriostatic water is sterile, non-toxic water which contains a small amount of benzyl Alcohol, which inhibits the growth of bacteria. This quality of preservative permits bacteriostatic water to be utilized for multiple injections, which is perfect for patients who require frequent injections. In contrast to Sterile Water to Inject that is intended for use only once Bacteriostatic water for injection is able to be kept and reused until 28 days following the opening.
How Bacteriostatic Water Supports Diabetes Management
Treatment for diabetes usually requires injectable daily or weekly medicines, such as insulin or other hormone therapy. This is how bacteriostatic water assists diabetic patients to safely use these drugs:
1. Safe Dilution of Injectable Medications
A variety of injectable diabetes medicines such as insulin require dilution in order to achieve the correct dosage. Bacteriostatic water can help patients safely dilute their medication without putting themselves at risk of contamination.
Benzyl alcohol stops the growth of bacterial The minimal amount of benzyl alcohol present in bacteriostatic water assists in keeping the solution safe for many uses, decreasing the possibility of contamination by bacteria.
Helps ensure accurate dosage proper dilution of bacteriostatic water enables patients to tailor dosages to meet their specific needs and ensures that their medication is effective and secure.
Be aware that in the event that Sodium Chloride and Sterile Water to inject is employed as a dilutive, these alternatives are generally intended for one-time use which means they need to be eliminated after only one usage.
2. Ideal for Multi-Dose Injections
Diabetic patients might need to inject insulin or other medications frequently throughout each day. Bacteriostatic water is a great option for injections with multiple doses since it permits the safe repeat use of a vial over a long period of time.
Extra shelf-life: In contrast to Sterile water for injection which has to be removed after only one usage, bacteriostatic water may be used for up to 28 days. This makes it cost-effective and suitable for patients who have frequent injection requirements.
Reduction of waste: Multi-dose vials made with bacteriostatic water cut down the requirement for ampoules that are only used once which makes managing diabetes less expensive.
3. Safe Storage for Diabetic Injectables
If diabetic patients have to make doses of injectable medication, bacteriostatic water is an effective way of storing ready injections.
Water is safe from contamination: Bacteriostatic's preservative properties guarantee that the doses prepared remain free of contamination for multiple uses.
Easy storage Patients who have to prepare dosages ahead of time can count on bacteriostatic water to keep injectables secure and ready for use, making it less necessary to do regular preparation.
Benefits of Bacteriostatic Water for Diabetic Patients
Utilizing bacteriostatic water to injectable medication has many advantages for diabetic patients. Here are a few of the main advantages:
1. Cost Savings
In allowing multi-dose use Bacteriostatic water reduces the cost for patients. With fewer vials for single use patients can cut down on the overall cost of their medical treatment.
Reusable solution Bacteriostatic water removes the requirement for water vials that are sterile and are made for single-use use.
Lower costs for supplies Patients do not have to buy new water bottles, resulting in savings over the long term.
2. Ease of Use for Frequent Injections
Management of diabetes requires consistency and bacteriostatic water makes this easier by allowing secure multiple injections within the same bottle.
Reduced preparation: Patients are able to make doses ahead of time and safely store them which reduces daily medication preparation time.
Better adherence to treatment: The ease of using Bacteriostatic water makes it simpler for patients with diabetes to adhere to their treatment schedule.
3. Enhanced Safety
Security is a top priority for patients who have diabetes and are taking injectable medications. Bacteriostatic water improves the safety of patients by enhancing the following aspects:
Protects against bacterial growth The presence of benzyl alcohol in the mix ensures that any medication diluted is safe to reuse.
Reduces risk of contamination Limits risk of contamination Sterile water for injection which has to be discarded and opened each time, bacteriostatic waters can be stored and utilized safely in several doses.
How to Use Bacteriostatic Water for Diabetes Management
For patients with diabetes that are not yet Bacteriostatic water, here's an easy guide to using it when injecting medications:
Step 1: Preparing the Solution
Hands must be cleaned thoroughly before touching any medical products.
Make use of a clean syringe to remove the amount of water bacteriostatic.
Then slowly inject the Bacteriostatic liquid into the vial of medication, being careful not to release air bubbles.
Step 2: Mixing and Storing
Simply swirl the vial to mix the solution. Do not shake the vial, since this can affect the medicine.
Place the vial in a dry, cool location and follow any instructions for storage given by your doctor.
The vial should be labeled with the year that you first used it, since Bacteriostatic water is safe to use in up to 28 days following the opening.
Step 3: Reusing for Injections
Replace the syringe each time you take the medication off.
Use proper sterilization practices by washing the stopper's rubber with alcohol prior to each use.
Make sure to dispose of the syringe correctly after each injection to ensure cleanliness and security.
Important Considerations When Using Bacteriostatic Water
Although bacteriostatic water can be extremely beneficial, there are some factors diabetics should bear in their minds:
Consult Your Healthcare Provider
Always consult your doctor prior to using Bacteriostatic water in order to store or dilute medicines. They will be able to provide advice regarding proper use, dosage and the potential risk.
Avoid using with certain patient groups
Bacteriostatic water is a source of benzyl alcohol that may make it unsuitable for some people, such as children and those suffering from allergies to benzyl alcohol. Make sure you're free of any allergies to benzyl alcohol prior to taking it.
Proper Storage is Essential
While bacteriostatic waters extend the lifespan of injectable drugs however, proper storage is essential. Make sure to store the vial in a secure, cool space far from sunlight to ensure its efficacy.
Alternatives to Bacteriostatic Water
Although bacteriostatic water is great for diabetics however, there are some who may require alternatives in accordance with medical guidance. Here are some options:
Sterile Water for Injections is used for single dose injections Sterile water does not contain preservatives, and should be disposed of at the end of every usage.
For injections, Sodium Chloride is used. Sometimes used as a dilutive, Sodium Chloride for injection is a good choice for specific medicines, but is not suitable for all injectables, particularly those that require multiple doses.
The Final thoughts: Why Patients with Diabetes benefit from Bacteriostatic Water
For patients with diabetes who require multiple regular injections each day, Bacteriostatic waters are an ideal solution that allows a cost-effective, safe and easy medication administration. The multi-use capabilities as well as safety features and the ease of preparation make it an extremely useful option for a lot of diabetics.
If you understand the purpose of bacteriostatic water as well as how to utilize it correctly the diabetic patient can get greater control of their injectable drugs and better manage their diabetes. When you're beginning injectable therapies or are looking to streamline your treatment routine using bacteriostatic water, it could be a great component of your diabetes treatment program.
If you're in search of an authentic supplier, Bacteriostatic Water Australia provides high-quality bacteriostatic water solutions that are designed to be safe, ensuring that diabetics can take care of their injectables efficiently and safely.
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Benzaldehyde Prices Trend, Monitor, News & Forecast | ChemAnalyst
Benzaldehyde prices, indicative of the cost of benzaldehyde, have undergone fluctuations influenced by various factors such as global market dynamics, industrial demand, and production costs. Understanding these price movements entails a comprehensive analysis of supply and demand dynamics, regulatory changes, and macroeconomic indicators.
The pricing of benzaldehyde is significantly impacted by the balance between supply and demand within the chemical, pharmaceutical, fragrance, and flavor industries. Benzaldehyde, an aromatic aldehyde with applications ranging from flavoring agents and fragrance compounds to pharmaceutical intermediates, plays a crucial role in various industrial processes. Disruptions in the supply chain, such as fluctuations in raw material availability, manufacturing capacity, or transportation logistics, can affect the availability and cost of benzaldehyde, thereby influencing its market price.
Industrial demand plays a pivotal role in determining benzaldehyde prices. Industries such as food and beverage, cosmetics, pharmaceuticals, and specialty chemicals rely heavily on benzaldehyde for its characteristic almond-like aroma and versatile chemical properties. Fluctuations in demand from these sectors, influenced by factors such as consumer preferences, product innovation, and economic conditions, can lead to price volatility for benzaldehyde.
Get Real-Time Benzaldehyde Prices: https://www.chemanalyst.com/Pricing-data/benzaldehyde-1239
Raw material costs significantly influence benzaldehyde prices. The price of raw materials such as toluene or benzyl chloride, which are used in benzaldehyde production, can fluctuate due to changes in global supply and demand dynamics, refining capacity, and energy costs. Any significant increase in raw material costs can translate into higher production costs for benzaldehyde manufacturers, thereby exerting upward pressure on prices.
Macroeconomic indicators, such as GDP growth, industrial output, and consumer spending, can indirectly impact benzaldehyde prices by influencing overall industrial activity and demand for aromatic compounds. Economic downturns or slowdowns in major manufacturing regions may lead to decreased demand and downward pressure on prices. Conversely, robust economic growth and increased consumer spending can support higher prices for benzaldehyde by stimulating demand for fragrances, flavors, and pharmaceuticals.
Regulatory changes and quality standards also play a role in shaping benzaldehyde prices. Government regulations on chemical safety, environmental standards, and product specifications can impact production costs and market access for benzaldehyde manufacturers. Compliance with these regulations may require investments in technology and process improvements, influencing pricing dynamics.
Looking ahead, several factors are expected to continue influencing benzaldehyde prices. Continued growth in sectors such as fragrance and flavor manufacturing, pharmaceuticals, and specialty chemicals, coupled with increasing demand for natural and synthetic aroma chemicals, is likely to drive sustained demand for benzaldehyde. Moreover, advancements in manufacturing technologies and the development of new applications could lead to changes in market dynamics and price levels for benzaldehyde.
In conclusion, benzaldehyde prices are subject to a complex interplay of factors including supply and demand dynamics, industrial trends, raw material costs, regulatory changes, and macroeconomic indicators. Stakeholders in the chemical, fragrance, flavor, and pharmaceutical industries must closely monitor these factors to anticipate price movements and make informed decisions. As industries evolve and consumer preferences change, navigating the dynamic landscape of benzaldehyde pricing will remain a key challenge for industry participants.
Get Real-Time Benzaldehyde Prices: https://www.chemanalyst.com/Pricing-data/benzaldehyde-1239
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TPH CURLS 4 DAYS MOISTURE RICH CURL CREAM 3 OZ, DEFINE HYDRATE HOLD MANGO BUTTER.
Great for curly & coily hair, this curl defining cream softens, hydrates & nourishes hair while providing lasting hold. .
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Add to the hair care & hair products you love, like dry shampoo, hair serum, deep conditioner, scalp treatment, curl cream, hair detangler, hair mask, hair cream, hair moisturizer & essential oils.
We use ingredients for healthy hair: agave, aloe, apple cider vinegar, avocado oil, baobab protein, biotin, chamomile, coconut oil, flaxseed, green tea, olive oil, shea butter, squalane oil & more.
Ingredients:Water (Aqua/Eau), Cetearyl Alcohol, Glycerin, Tapioca Starch, Cetyl Esters, Fragrance (Parfum), Behentrimonium Chloride, Cetyl Alcohol, Butyrospermum Parkii (Shea) Butter, Cocos Nucifera (Coconut) Oil, Mangifera Indica (Mango) Seed Butter, Brassica Oleracea Italica (Broccoli) Seed Oil, Caryocar Brasiliense (Pequi) Fruit Oil, Phenoxyethanol, Cetrimonium Chloride, Isopropyl Alcohol, VP/Drapa Acrylates Copolymer, Coco-Caprylate/Caprate: Polyquaterniun-37, Dicaprylyl Carbonate, Ethylhexylglycerin,Lauryl Glucoside, Aminomethyl Propanol, Limonene, Coumarin, Citronellol, Geraniol, Linalool, Benzyl Benzoate.
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By combining the purifying nature of a performative toner with a nourishing, hydrating, and rejuvenating serum, NEODERMA Skin Energising Toning Lotion takes skincare to new heights of excellence. An iconic sensorial experience which refines with Fusion-Biotics© technology while unlocking your natural glow, this dual-effect solution delivers the confidence of daily radiance.
IDEAL FOR
Dryness & Dehydration
Delicate & Couperose Prone Skin
Daily Care
SKIN TYPES
Normal Skin
Dry Skin
Combination Skin
Oily Skin
Delicate Skin
HOW TO USE
Our toning lotion has been innovatively crafted for daily indulgence, and should be generously swept over the face and neck, avoiding the eye area. Once applied, leave on the skin to allow the serum to deeply nourish, energise, and refine. During initial use, push the pump several times to initiate the flow of product.
FORMULA FACTS
Airless Technology Vegan Dermatologically Tested Allergen-Free Fragrance Synthetic Dye-Free Paraben-Free Mineral Oil-Free Paraffin Wax Free Vaseline Free Ethanolamine Free MCI/MI Free Formaldehyde Donors Free GMO Free Not Tested on Animals
KEY ACTIVE INGREDIENTS
Extremolytes Revitalizes skin elasticity, restores smoothness. Protects against UV radiation, shields from pollution. Biosaccharide Gum-4 Protects against atmospheric pollution, prevents a broad spectrum of UV rays from damaging the skin. Shields against domestic pollution. Electrolytes Revitalizes tired skin, balances and preserves levels of hydration. Supplies abundant nutrients, provides a wake-up call for the skin. Pre-biotics & Pro-biotics Helps skin barrier, balances response to environmental triggers. Balances skin biome, cleanses gently, protecting skin’s natural oils. Vitamin C Repairs and encourages skin firmness. Improves skin texture and clears skin tone. Limits skin discoloration, addresses pro-aging concerns.
LIST OF INGREDIENTS
Aqua (Water), Dimethicone, 1,2-hexanediol, Ammonium Polyacryloyldimethyl Taurate, Benzyl Glycol, Panthenol, Caprylyl/Capryl Glucoside, Diglycerin, Alpha- Glucan Oligosaccharide, Glyceryl Glucoside, Sodium Pca, Ethylhexylglycerin, Parfum (Fragrance), Polyglyceryl-3 Cocoate, Polymnia Sonchifolia Root Juice, Polyglyceryl-10 Laurate, Maltodextrin, Isopulegol, 3-o-ethyl Ascorbic Acid, Tetrasodium Glutamate Diacetate, Magnesium Pca, Tocopherol, Raspberry Ketone, Helianthus Annuus Seed Oil, Zinc Pca, Biosaccharide Gum-4, Lactobacillus, Sodium Glycolate, Citric Acid, Manganese Pca, Phenoxyethanol, Sodium Chloride, Potassium Sorbate.
NOTICE
Please be aware that ingredient lists may change or vary from time to time. Please refer to the ingredient list on the product package you receive for the most up to date list of ingredients.
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CAS NO.103-83-3 N,N-Dimethylbenzylamine Manufacturer/High quality/Best price/In stock
Quick Details Product name:N,N-Dimethylbenzylamine CAS: 103-83-3 Molecular formula:C9H13N Molecular weight:135.21 EINECS No.:203-149-1 Appearance:Colourless Liquid Other names:BDMA;Dabco B-16;BENZYLDIMETHYLAMINE; Dimethylbenzylamine;N-Benzyldimethylamine;aralditeaccelerator062; N,N-Dimethylbenzylamine;N,N-BENZYLDIMETHYLAMINE;Nin-Dimethyl Benzylamine;Benzyl-N,N-dimethylamine;N,N-Dimethyl benzylamine; Araldite accelerator 062;N, N-dimethylbenzylamine;(N,N-Dimethylbenzylamine); Benzylamine, N,N-dimethyl-;N-(Phenylmethyl)dimethylamine;Benzenemethamine, N,N-dimethyl-;N,N-dimethyl-1-phenylmethanamine; Benzenemethanamine,N,N-dimethyl-;N,N-dimethyl(phenyl)methanaminium; N,N-dimethyl(phenyl)methanaminium chloride Port: any port in china Packing: according to the clients requirement Storage: Store in dry, dark and ventilated place. Transportation: by sea or by air payment methods: L/C, T/T, D/A, D/P, O/A, paypal, western union etc.accept all payment. Application 1. It is used as an intermediate in organic synthesis, and can also be used as a dehydrogenation catalyst, preservative, acid neutralizer, etc. 2. Used in organic synthesis 3. Organic synthesis intermediates, catalysts, corrosion inhibitors, acid neutralizers, and accelerators for embedding electron microscope slices for the production of new clean and dehydrohalogenated products 4. This product is an organic synthesis intermediate, such as the synthesis of quaternary ammonium salts, etc., and is also used as a dehydrogenation catalyst, preservative, acid neutralizer, etc. Superiority 1.supply sample 2.the packing can be according the customers` requirment 3.any inquiries will be replied within 24 hours 4.we provide commerical invoice, packing list, bill of loading, coa , health certificate and origin certificate. if your markets have any special requirements, let us know. 5.factory price. 6.prompt delivery. we have good cooperation with many professional forwarders, we can send the products to you once you confirm the order. 7.we can accept various payment methods, l/c, t/t, d/a, d/p, o/a, paypal, western union etc., and we cooperate with sinosure many years. Anyway ,if you need any chemicals from China ,MIT -IVY INDUSTRY CO.,LTD can help you. Company Information MIT-IVY INDUSTRY CO.,LTD is a manufacturer and exporter of fine chemical dyes & pharmaceutical intermediates in China. Mainly produce aniline series products ,chlorine series products,and epoxy curing agent We are a company full of vitality. The company has a group of energetic, well-trained employees and strong technical research and development capabilities. We specialize in the production, development and sales of API intermediates, fine chemicals and plant extracts. Relying on advanced equipment and strict management, adhere to the business philosophy of "openness, tolerance, innovation, and sharing" to create a win-win cooperationplatform.Everything comes from innovation, it is our philosophy ! If you are interested in getting more quotations, please add WHATSAPP:0086-13805212761 or E-MAIL:[email protected] FAQ Q1:Will you supply samples for testing? A: For most of our products, samples are available, but please cover the shipping cost. Q2:What's your MOQ? A: For the high value product, our MOQ starts from 10g,100g and 1kg. Q3:Which kind of payment terms do you accept? A: Proforma invoice enclosed with our bank information will be sent after confirmation of order. payment methods: L/C, T/T, D/A, D/P, O/A, paypal, western union etc.accept all payment. Q4:How about your delivery time? A: Generally, it will take 3 to 5 days after receiving your advance payment. Q5:How do you treat quality complaint? A:First of all, our quality control will reduce the quality problem near to zero. If there is a quality problem caused by us, we will send you free goods for replacement or refund your loss. Main products Mit-Ivy is a well-known fine chemicals and pharmaceutical intermediates manufacturer with strong R&D support in China. Mainly involved Aniline, Chlorine products. Payment:DA 60 DAYS TEL:008619961957599 E-MAIL:[email protected] 产品 Product CAS N-甲基间甲苯胺 N-Methyl-M-Methylaniline 696-44-6 N-羟���基苯胺 N-(2-hydroxyethyl)-Aniline 122-98-5 N-乙基对甲苯胺 N-ethyl-p-toluidine 622-57-1 N,N-二甲基邻甲苯胺 N,N-Dimethyl-o-toluidine 609-72-3 N-甲基邻甲苯胺 N-Methyl-o-methylaniline 611-21-2 N,N-二乙基对甲苯胺 N,N-Diethyl-p-toluidine 613-48-9 N,N-二乙基间甲苯胺 N,N-diethyl-m-toluidine 91-67-8 N-氰乙基-N-羟乙基间甲苯胺 N-cyanoethyl-n-hydroxyethyl-m-toluidine 119-95-9 N-乙基间甲苯胺 N-ethyl-m-toluidine 102-27-2 N-氰乙基-N-羟乙基苯胺 N-cyanoethyl-n-hydroxyethyl aniline 92-64-8 N-乙基邻甲苯胺 N-ethyl-o-toluidine 94-68-8 N,N-二羟乙基对甲苯胺 N,N-dihydroxyethyl-p-toluidine .3077-12-1 N,N-二乙基苯胺 N,N-diethyl aniline 91-66-7 N-丁基-N-羟乙基苯胺 N-butyl-n-hydroxy aniline 3046-94-4 N-乙基-N-氰乙基间甲苯胺 N-ethyl-n-cyanoethyl-m-toluidine 148-69-6 N-丁基-N-氰乙基苯胺 N-butyl-n-cyano aniline 61852-40-2 N-甲基- N-羟乙基苯胺 N-methyl-n-hydroxyetjyl aniline 93-90-3 N,N-二丁基苯胺 N,N-dibutyl aniline 613-29-6 N-乙基-N-氰乙基苯胺 N-ethyl-n-cyanoethyl aniline 148-87-8 N-正丁基苯胺 N-Phenyl-N-butyl aniline 1126-78-9 N-乙基-N-羟乙基苯胺 N-ethyl-n-hydroxyethyl aniline 92-50-2 N-乙基-N-苄基间甲苯胺 N-ethyl-n-benzyl-m-toluidine 119-94-8 N-甲基-N-苄基苯胺 N-methyl-n-benzyl aniline 614-30-2 N-异丙基苯胺 N-isopropy aniline 768-52-5 N-乙基-N-苄基苯胺 N-ethyl-n-benzyl aniline 92-59-1 N-环已基苯胺 N-Cyclohexylaniline 1821-36-9 N,N-二甲基间甲苯胺 N,N,3-trimethyl- Dimethyl-m-toluidine 121-72-2 N-甲基甲酰苯胺 N-Methylformanilide 93-61-8 N-甲基-N-羟乙基对甲苯胺 N-(2-HYDROXYETHYL)-N-METHYL-4-TOLUIDINE 2842-44-6 N,N-二甲基对甲苯胺 N,N,4-trimethyl-;dimethyl-4-toluidine; Dimethyl-p-toluidine 99-97-8 N-甲基对甲苯胺 N-Methyl-p-toluidine 623-08-5 N,N-二甲基苯胺 N,N-dimethyl aniline 121-69-7 N,N-二羟乙基苯胺 N,N-dihydroxyethyl aniline 120-07-0 N-乙基-N-羟乙基间甲苯胺 N-Ethyl-N-Hydroxyethyl-M-Toluidine 91-88-3 N,N-二羟乙基间甲苯胺 N,N-dihydroxyethyl-m-toluidine 91-99-6 N-乙基苯胺 N-ethyl aniline 103-69-5 N-甲基苯胺 N-methyl aniline 100-61-8 N-甲基对甲苯胺 4-Methyl-N-methylaniline 623-08-5 N-甲基-N-羟乙基苯胺 2-(N-Methylanilino)ethanol 93-90-3 N,N-二甲基对苯二胺 N,N-DIMETHYL-P-PHENYLENEDIAMINE 99-98-9 3-(甲氨基)甲苯 3-(Methylamino)toluene 696-44-6 N,N-二异丙醇对甲苯胺 DIPROPOXY-P-TOLUIDINE 38668-48-3 N,N-二乙基邻甲苯胺 N,N-DIETHYL-O-TOLUIDINE 606-46-2 N-甲基对硝基苯胺 N-Methyl-4-nitroaniline 100-15-2 N,N-二苄基苯胺 N,N-DIBENZYLANILINE 91-73-6 N-苯基乙醇胺 2-Anilinoethanol 122-98-5 N-苄基苯胺 N-Phenylbenzylamine 103-32-2 N-羟乙基间甲苯胺 N-2-HYDROXYETHYL-M-TOLUIDINE 102-41-0 N-乙基N氯乙基间甲苯胺 N-ETHYL-N-CHLOROETHYL-M-TOLUIDINE 22564-43-8 N,N-二乙基-4-氨基-2-甲基苯甲醛 4-Diethylamino-2-methylbenzaldehyde 92-14-8 间甲苯胺 M-Toluidine MT 108-44-1 1,4-二溴-2,5-二碘苯 1,4-DIBROMO-2,5-DIIODOBENZENE 63262-06-6 N,N-二羟乙基对苯二胺硫酸盐 N,N-Bis(2-hydroxyethyl)-p-phenylenediamine sulphate 54381-16-7 N-乙基-N-苄基-4-氨基苯甲醛 4-(N-Ethyl-N-benzyl)amino-benzoaldehyde 67676-47-5 N,N-二乙基-4-氨基苯甲醛 4-Diethylaminobenzaldehyde 120-21-8 对二甲胺基苯甲醛 p-Dimethylaminobenzaldehyde 100-10-7 2-氨基噻唑 2-Aminothiazole 96-50-4 对甲苯胺 P-Toluidine PT 106-49-0 N,N-双(2-羟基丙基)苯胺 N,N-BIS(2-HYDROXYPROPYL)ANILINE 3077-13-2 N-乙基-N-氰乙基苯胺 3-Ethylanilinopropiononitrile 148-87-8 N-乙基-N-(3'-磺酸苄基)苯胺 N-Ethyl-N-benzylaniline-3'-sulfonic acid 101-11-1 邻苯甲酰苯甲酸甲酯 Methyl 2-benzoylbenzoate 606-28-0 对羟基苯甲酸甲酯 Methylparaben 99-76-3 十四酸异丙酯 Isopropyl myristate 110-27-0 棕榈酸异丙酯 Isopropyl palmitate 142-91-6 邻甲苯胺 O-Toluidine OT 95-53-4 4-甲基-N-苯基苯胺 N-PHENYL-P-TOLUIDINE 620-84-8 N,N-二甲基苄胺 N,N-Dimethylbenzylamine BDMA 103-83-3 N,N-二甲基甲酰胺 N,N-Dimethylformamide DMF .68-12-2 N-甲基甲酰胺 N,N-Dimethylformamidedimethyl acetal (DMF-DMA) 4637-24-5 N,N-二甲基乙酰胺 N,N-Dimethylacetamide DMAC 127-19-5 N,N-二乙基间甲苯甲酰胺 避蚊胺 N,N-diethyl-m-toluamide DEET 134-62-3 N,N-二乙基羟胺 N,N-Diethylhydroxylamine DEHA 3710-84-7 N,N-二甲基-间甲基苯胺 N,N-DIMETHYL-M-TOLUIDINE 121-72-2 N-甲基二苯胺 N-Methyldiphenylamine 552-82-9 N,N-二氰乙基苯胺 N,N-Dicyanoethylaniline 1555-66-4 N-乙基-2-硝基苯胺 N-Ethyl-2-Nitro-Benzenamine 10112-15-9 N-(2-羟乙基)乙二胺 AEEA 111-41-1 二乙烯三胺(DETA) Diethylenetriamine DETA 111-40-0 三乙烯二胺 Triethylenediamine 280-57-9 三乙烯四胺 TriethylenetetramineTETA 112-24-3 四乙烯五胺 TEPA 112-57-2 间二氯苯 1,3-Dichlorobenzene MDCB 541-73-1 间二三氟甲苯 1,3-Bis(trifluoromethyl)-benzene 402-31-3 粉末丁腈橡胶 MITIVY33-1(POLYMER/ADHESIVE COMPOUNDING) 9003-18-3 十六烷基氯化吡啶 Cetylpyridinium chloride monohydrate 6004-24-6 对氯甲苯 4-Chlorotoluene 106-43-4 无水硫酸钠 SODIUM SULFATE 7757-82-6 /15124-09-1 碱性嫩黄 Auramine O 2465-27-2 偶氮二异丁腈 2,2'-Azobis(2-methylpropionitrile) 78-67-1 Read the full article
#103-83-3#99%BDMA#99%NN-Dimethylbenzylamine#Amines#Aniline#API#Aralditeaccelerator062#aralditeaccelerator062#aromaticamines#BDMA#Benzenemethamine#Benzenemethanamine#Benzyl-NN-dimethylamine#Benzylamine#C9H13N#CASNO.103-83-3#chemicalrawmaterials#DabcoB-16-BENZYLDIMETHYLAMINE#Dimethylbenzylamine#Dyeintermediates#Finechemicals#Generalreagents#intermediates#N#NN-BENZYLDIMETHYLAMINE#NN-Dimethylbenzylamine#NN-dimethyl(phenyl)methanaminium#NN-dimethyl(phenyl)methanaminiumchloride#NN-dimethyl-#NN-dimethyl-1-phenylmethanamine
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Shop Korea’s best skin care & beauty buys
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Shop Korea’s best skin care & beauty buys
Missha M Perfect Cover BB Cream SPF42
Why we love it! Ideal for boosting your natural glow, Missha M Perfect Cover skin-perfecting BB cream will have your skin looking at its dewy, youthful best. Providing a mineral broad spectrum SPF 42 and a barely-there feel, it is the one-stop skin perfecting cream you need to nourish and protect your skin. Leaving a youthfully, perfected look, the lightweight formula has a barely-there feel while offering 7 shades – to blend seamlessly and even out skin tone and provide a dewy glow. It also contains mineral broad-spectrum SPF42 to give your face the vital protection it needs to escape the sun’s damaging rays. All this with powerful ceramides, hyaluronic acid, and Gatuline RC to hydrate and replenish, while a potent blend of nourishing botanical essences, emollient plant oils, and nutrient-rich marine extracts will replenish the look and feel of skin to reduce visible signs of ageing for a radiant, soft and youthful look. Missha: Perhaps one of the best-known K-beauty brands, Missha is a fan favorite for its large selection of exceptional quality skincare and makeup. Missha’s have a quality should be affordable philosophy and firmly believe that beauty products, both skincare and makeup, should be of the highest quality while maintaining value and affordability. It’s the quality of the product content and the ingredients that make the difference. Missha offers a wide range of affordable, quality products for your skin’s needs and beauty solutions. Missha does not test ingredients or products on animals. Description Missha M PERFECT COVER BB CREAM SPF 42 PA+++ 50ml Lightweight, Multi-Function, High CoverageFlawless CoverageSmoothly conceals imperfections, balances skin tone, and visibly smooths complexion for a youthfully perfected lookDewy & MoisturizingKeeps your skin hydrated and soft with powerful ceramides, hyaluronic acid, and Gatuline RCNaturally ConditioningInfused with nourishing botanical essences, emollient plant oils, and nutrient-rich marine extracts to replenish the look and feel of skin Ingredients Key Ingredients Gatuline RC, Hyaluronic Acid, CeramideHelp infuse moisture for firmer-looking skin with reduction in appearance of fine lines & wrinklesRosemary & Chamomile ExtractsFragrant herbal botanicals that help the complexion appear calm and balanced Full List of Ingredients M Perfect Cover BB Cream SPF42 PA+++ (No.13)Water (Aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Propylene Glycol, Titanium Dioxide, Caprylic/Capric Triglyceride, PEG-10 Dimethicone, Cetyl PEG/PPG-10/1 Dimethicone, Arbutin, Mineral Oil, Glycerin, Polyethylene, Talc, Phenyl Trimethicone, Beeswax (Cera Alba), Iron Oxides (CI 77492), Sodium Chloride, Iron Oxides (CI 77491 ), Iron Oxides (CI 77499), Methylparaben, Dimethicone, Propylparaben, Rosa Canina Fruit Oil, Simmondsia Chinensis (Jojoba) Seed Oil, Squalane, Hydrolyzed Collagen, Macadamia Ternifolia Seed Oil, Disodium EDTA, Adenosine, Caviar Extract, Algae Extract, Rosmarinus Officinalis (Rosemary) Leaf Extract, Chamomilla Recutita (Matricaria) Flower Extract, Sodium Hyaluronate, Fagus Sylvatica Bud Extract, Ceramide 3, Fragrance (Parfum), Hydroxyisohexyl 3-Cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha-Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 21)Water (Aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Propylene Glycol, Titanium Dioxide, Caprylic/Capric Triglyceride, PEG-10 Dimethicone, Cetyl PEG/PPG-10/1 Dimethicone, Arbutin, Mineral Oil, Glycerin, Polyethylene, Talc, Phenyl Trimethicone, Beeswax (Cera Alba), Iron Oxides (Yellow), Sodium Chloride, Iron Oxides (Red), Iron Oxides (Black), Methylparaben, Dimethicone, Propylparaben, Rosa Canina Fruit Oil, Simmondsia Chinensis (Jojoba) Seed Oil, Squalane, Hydrolyzed Collagen, Macadamia Ternifolia Seed Oil, Disodium EDTA, Adenosine, Caviar Extract, Algae Extract, Rosmarinus Officinalis (Rosemary) Leaf Extract, Chamomilla Recutita (Matricaria) Flower Extract, Sodium Hyaluronate, Fagus Sylvatica Bud Extract, Ceramide 3, Fragrance (Parfum), Hydroxyisohexyl 3-Cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha-Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 23)Water (Aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Propylene Glycol, Titanium Dioxide, Caprylic/Capric Triglyceride, PEG-10 Dimethicone, Cetyl PEG/PPG-10/1 Dimethicone, Arbutin, Mineral Oil, Glycerin, Polyethylene, Talc, Phenyl Trimethicone, Beeswax (Cera Alba), Iron Oxides (CI 77492), Sodium Chloride, Iron Oxides (CI 77491 ), Iron Oxides (CI 77499), Methylparaben, Dimethicone, Propylparaben, Rosa Canina Fruit Oil, Simmondsia Chinensis (Jojoba) Seed Oil, Squalane, Hydrolyzed Collagen, Macadamia Ternifolia Seed Oil, Disodium EDTA, Adenosine, Caviar Extract, Algae Extract, Rosmarinus Officinalis (Rosemary) Leaf Extract, Chamomilla Recutita (Matricaria) Flower Extract, Sodium Hyaluronate, Fagus Sylvatica Bud Extract, Ceramide 3, Fragrance (Parfum), Hydroxyisohexyl 3-Cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha-Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 25)Water (Aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Propylene Glycol, Titanium Dioxide, Caprylic/Capric Triglyceride, PEG-10 Dimethicone, Iron Oxides (CI 77492), Cetyl PEG/PPG-10/1 Dimethicone, Arbutin, Mineral Oil, Glycerin, Polyethylene, Talc, Beeswax (Cera Alba), Phenyl Trimethicone, Sodium Chloride, Iron Oxides (CI 77491 ), Methylparaben, Iron Oxides (CI 77499), Dimethicone, Propylparaben, Rosa Canina Fruit Oil, Simmondsia Chinensis (Jojoba) Seed Oil, Squalane, Macadamia Ternifolia Seed Oil, Hydrolyzed Collagen, Disodium EDTA, Adenosine, Algae Extract, Rosmarinus Officinalis (Rosemary) Leaf Extract, Fagus Sylvatica Bud Extract, Sodium Hyaluronate, Ceramide 3, Chamomilla Recutita (Matricaria) Flower Extract, Fragrance (Parfum), Hydroxyisohexyl 3-Cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha-Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 27)Water(aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Titanium Dioxide , Caprylic/capric Triglyceride, Arbutin, Mineral Oil, Talc, Methylparaben, Propylparaben, Phenyl Trimethicone, Disodium Edta, Adenosine, Caviar Extract, Algae Extract, Dimethicone, Rosa Rubiginosa Seed Oil, Simmondsia Chinensis (jojoba) Seed Oil, Squalane, Hydrolyzed Collagen, Macadamia Ternifolia Seed Oil, Rosmarinus Officinalis(rosemary) Leaf Extract, Chamomilla Recutita (matricaria) Flower Extract, Sodium Hyaluronate, Fagus Sylvatica Bud Extract, Ceramide 3, Beeswax (cera Alba), Cetyl Peg/ppg-10/1 Dimethicone, Dimethicone Copolyol, Polyethylene, Glycerin, Propylene Glycol, Sodium Chloride, Iron Oxides ( Yellow), Iron Oxides ( Red), Iron Oxides ( Black), Fragrance, Hydroxyisohexyl 3-cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha – Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 29)Water (Aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Propylene Glycol, Titanium Dioxide, Caprylic/Capric Triglyceride, PEG-10 Dimethicone, Iron Oxides (CI 77492), Cetyl PEG/PPG-10/1 Dimethicone, Arbutin, Mineral Oil, Glycerin, Polyethylene, Talc, Beeswax (Cera Alba), Phenyl Trimethicone, Sodium Chloride, Iron Oxides (CI 77491 ), Iron Oxides (CI 77499), Methylparaben, Dimethicone, Propylparaben, Rosa Canina Fruit Oil, Simmondsia Chinensis (Jojoba) Seed Oil, Squalane, Macadamia Ternifolia Seed Oil, Hydrolyzed Collagen, Disodium EDTA, Adenosine, Algae Extract, Rosmarinus Officinalis (Rosemary) Leaf Extract, Fagus Sylvatica Bud Extract, Sodium Hyaluronate, Ceramide 3, Chamomilla Recutita (Matricaria) Flower Extract, Fragrance (Parfum), Hydroxyisohexyl 3-Cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha-Isomethyl Ionone, Hexyl Cinnamal, Linalool, CitronellolM Perfect Cover BB Cream SPF42 PA+++ (No. 31)Water(aqua), Cyclomethicone, Ethylhexyl Methoxycinnamate, Zinc Oxide, Titanium Dioxide , Caprylic/capric Triglyceride, Arbutin, Mineral Oil, Talc, Methylparaben, Propylparaben, Phenyl Trimethicone, Disodium Edta, Adenosine, Caviar Extract, Algae Extract, Dimethicone, Rosa Rubiginosa Seed Oil, Simmondsia Chinensis (jojoba) Seed Oil, Squalane, Hydrolyzed Collagen, Macadamia Ternifolia Seed Oil, Rosmarinus Officinalis(rosemary) Leaf Extract, Chamomilla Recutita (matricaria) Flower Extract, Sodium Hyaluronate, Fagus Sylvatica Bud Extract, Ceramide 3, Beeswax (cera Alba), Cetyl Peg/ppg-10/1 Dimethicone, Dimethicone Copolyol, Polyethylene, Glycerin, Propylene Glycol, Sodium Chloride, Iron Oxides ( Yellow), Iron Oxides ( Red), Iron Oxides ( Black), Fragrance, Hydroxyisohexyl 3-cyclohexene Carboxaldehyde, Butylphenyl Methylpropional, Benzyl Salicylate, Hydroxycitronellal, Alpha – Isomethyl Ionone, Hexyl Cinnamal, Linalool, Citronellol Please Note Ingredients are subject to change at the manufacturer’s discretion. For the most complete and up-to-date list of ingredients, please refer to product packaging. How to use Pump out the desired amount (pea-sized), and smooth onto the skin using preferred method (fingers, sponge applicator, brush)For first application only, prime product by pumping 10 to 20 times
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Lupine Publishers | Chloride-Induced Highly Active Catalyst for Methyl Esterification of Alcohols
Lupine Publishers | ARCHIVES OF ORGANIC AND INORGANIC CHEMICAL SCIENCES
Abstract
In this work, a series of active Au/NiOx catalysts were successful to prepare by tracing the concentrations of chloride in the re-dispersed aqueous solutions. By characterizations, we found that the appropriate amount of residual chloride in Au catalyst would induce Au nanoparticles (Au NPs) to locate on the edges of NiOx particles, which resulted in the active Au/NiOx-9 sample. Fine control of chloride in the aqueous solution provides a new perspective to push for addressing the controllable preparation of active heterogeneous catalysts.
Keywords: Au catalyst, Preparation, Chloride, Esterification
Introduction
In recent decades, Au catalysts have received growing attentions and been widely applied in many important research fields [1], since good performance of Au catalysts was discovered [2]. However, the controllable preparation of highly active heterogeneous catalysts is still a longstanding challenge till now, especially Au catalysts. Many efforts have been devoted to this problem. The active site, structure and the quantum size effect of Au catalyst [3], active oxygen species of the support [4], suitable reducible oxide supports [5],and so on, have been extensively studied. Additionally, catalyst precursors, bases, pH value, aging time, and calcinations temperature are also crucial conditions [2,6]. Nevertheless, the controllable preparation of highly active Au catalyst is still difficult to realize even strictly following all above conditions. Chloride (usually as Cl-) is generally regarded as a poison for Au catalyst, Because of strong interaction of chloride and Au. We realized the reproducible preparation of Au/Fe2O3 catalyst for CO oxidation [7]. It is meaningful to explore whether this method can be applied to other catalysts and reactions or not. In this work, Methyl esterification of alcohols was chosen as model reaction. The controllable preparation of highly active Au/ NiOx catalyst was realized by tracing the concentrations of chloride in the re-dispersed aqueous solutions.
Experimental Details
Au/NiOx catalyst preparation
20ml Ni(NO3)36H2O (0.011 M) and 1.05 ml HAuCl4 (0.24M) were mixed together and were drop wise added into 60 ml Na2CO3 solution (0.31M) under vigorous stirring in 3h. The turbid liquid was divided into four sections and separation by centrifugation. Each section of the recovered precipitate was re-dispersed in different amount of deionised water and ultrasonically washed for 1h. The chloride concentration in the re-dispersed aqueous solution of each section was determined by CHI660D electrochemical workstation. Then, the solid was separated by centrifugation, dried at 80o C for 3h and calcined at 350 oC for 0.5 h to produce the catalyst sample, which was denoted as Au/NiOx-X, in which X suggested the chloride concentration in ppm.
Catalyst activity test
1mmol benzyl alcohol, 30 mg catalyst and 2 ml methanol were added into a glass tube. And then it was exchanged with oxygen and reacted at 60o C (1 atom, O2 balloon). After reaction, it was cooled to room temperature. Biphenyl was used as internal standard and a certain amount of ethanol were added into the reaction mixture up to 10mL for quantitative analysis by GC-FID (Agilent 7890A).
Results and Discussion
The catalytic activities of 15 Au/NiOx samples, which were prepared from the re-dispersed aqueous solutions with chloride concentrations in the range of 2 to 108 ppm, for esterification of benzyl alcohol were studied. According to the results shown in Figure 1, catalytic activity of Au/NiOx varied with the changing of chloride concentration. The yields of methyl benzoate were lower than 21% if the catalysts were prepared from aqueous solutions containing >22ppm chloride. More active catalysts were produced when the chloride concentrations were going down. The Au/ NiOx catalysts with the highest catalytic activity were prepared from aqueous solutions containing 8-13ppm chloride, the yield of methyl benzoate of catalyst Au/NiOx-9 was >99%. Surprisingly, the catalysts turned less active again when the chloride concentrations were < 8ppm. Typically, the yield of methyl benzoate was 20% with catalyst Au/NiOx-3.
TEM measurement results of Au/NiOx are shown in Figure 2. Their TEM images were similar and seemed amorphous. For the sample of Au/NiOx-22, the lattice of gold could be observed and wrapped in NiOx particle. For active Au/NiOx-9, the most of Au NPs connected with the edges of NiOx particles or the junctions of several NiOx particles [8]. In consideration of the best catalytic performance of this sample, this observation strongly supported the former results about active site in Au catalyst, i.e. the interface between Au and iron oxide [3]. It suggested that the appropriate amount of chloride might act as the linkage between Au NPs and the edges of NiOx particles to gain the active Au catalyst, For Au/ NiOx-22 and Au/NiOx-3, too much or less chloride was presented, the interaction of Au NPs and NiOx like Au/NiOx-9 decreased significantly. Accordingly, the catalytic activity lost sharply. By metering more than 150Au NPs, the mean diameters of Au NPs in samples Au/NiOx-3, Au/NiOx-9 and Au/NiOx-22were 4.1, 3.8 and 6.6 nm with 1.91, 1.84 and 3.06 standard deviations. The size distributions of Au NPs in Au/NiOx-3 and Au/NiOx-9 samples were extremely similar. The marked difference of catalytic activities of these two catalysts did not come from the size effect of Au particles, but the contact way of Au NPs and NiOx supports.
At present, there is still not sufficient evidence to explain the real role of chloride in the formation of Au catalysts. However, according to the known evidence, we can make some reasonable conjectures. Firstly, as pH value of the mother aqueous solution rises, chlorine in chloroauric acid is substituted by the hydroxyl. Au-Cl bond breaks and then small Au NPs form. Finally, chloride is adsorbed on the support NiOx as well as Au NPs. Due to the stronger interaction of chlorideon the edges than on planes of NiOx crystallites, after the ultrasonication and washing operations, chloride located on the edges of NiOx crystallites remains. As shown in Figure 3, it is this kind of residual chloride that induces Au NPs to anchor on the edges of NiOx crystallites.
Conclusion
In summary, by tracing the chloride concentrations in the re-dispersed aqueous solution, we successfully prepared active Au/NiOx catalyst for catalytic methyl esterification of alcohols. If the chloride concentration was not in the range of 8-13ppm, the catalytic activity dropped dramatically. These results indicated that the presence of appropriate amounts of residual chloride was beneficial to obtain highly active heterogeneous catalysts. This work can offer a new perspective to realize the controllable preparation of active heterogeneous catalysts
For More ARCHIVES OF ORGANIC AND INORGANIC CHEMICAL SCIENCES
https://lupinepublishers.com/chemistry-journal/
https://lupinepublishers.com/chemistry-journal/fulltext/chloride-induced-highly-active-catalyst-for-methyl-esterification-of-alcohols.ID.000154.php
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Wavy Woman Attempt
Hello. This is a note for your future self, who is probably tearing out any semblance of a wave because it’s still frizzy after 5 months of buying and binning new hair products. Let’s do this! Curly Girl Method seems like something I shouldn't be partaking in so I've renamed it to the Wavy Woman Attempt.
After many minutes of research, I think I have high-porosity hair, because it floats on water and it feels kinda bumpy when I run my finger up the shaft (lol). It dries really quickly and is frizzy and easily absorbs water, which are some other indicators from a selection of websites who I have decided to trust. This means that I need to:
Regularly deep condition
Rinse with cold water to seal my wide-open cuticles
Use leave-in conditioners
I will be using a ‘low-poo’ method (which isn’t CGM apparently but if I only wash with conditioner or something similar I will have a greasy mop a few hours after the shower so I’ll start gently). Here's the 'Is It CG?' 'Be Careful' results of what I'm beginning with.
Johnson’s Baby Shampoo
Ingredients:
'[PR-019204] Aqua, Cocamidopropyl Betaine, Decyl Glucoside, Sodium Cocoyl Isethionate, Polyquaternium-10, Coconut Acid, Glycerin, Sodium Methyl Cocoyl Taurate, PEG-80 Sorbitan Laurate, PEG-150 Distearate, Sodium Chloride, Disodium EDTA, Citric Acid, BHT, Sodium Benzoate, Parfum'
Humectants: Glycerin
A humectant absorbs moisture and keeps a moisture balance in the hair and skin. Humectants will search for moisture in your own hair too. Therefore, in areas where it may be hot, but dry, these products may actually do more bad than good. In the right condition, humectants are materials used in products to moisturize dry or damaged hair.
Polyquats: Polyquaternium-10
These ingredients could cause build up on finer, thin hair.
Chelating Agents: Disodium EDTA
These ingredients bind with metal ions or metallic compounds and prevent them from adhering to your hair. They work to detox your hair from mineral and potentially toxic metal build up. Products with these ingredients should be used sparingly - up to once a month.
So it all got a bit too scientific for me towards the end there and I'm choosing to ignore that bit. Next!
Garnier Ultimate Blends Almond Crush Almond Milk & Agave Sap Conditioner for Normal Hair
What a mouthful... Ingredients:
'1119691 B - Aqua / Water, Cetearyl Alcohol, Glycerin, Isopropyl Myristate, Stearamidopropyl Dimethylamine, Glycine Soja Oil / Soybean Oil, Prunus Amygdalus Dulcis Seed Extract / Sweet Almond Seed Extract, Agave Tequilana Leaf Extract, Aloe Barbadensis Leaf Juice, Sodium Hydroxide, Helianthus Annuus Seed Oil / Sunflower Seed Oil, Coco-Caprylate/Caprate, Hydroxypropyl Guar Hydroxypropyltrimonium Chloride, Caprylyl Glycol, Citric Acid, Xanthan Gum, Tartaric Acid, Cetyl Esters, Potassium Sorbate, Sodium Benzoate, Salicylic Acid, Dehydroacetic Acid, Linalool, Parfum / Fragrance, (F.I.L C218282/1)'
Humectants: Glycerin
A humectant absorbs moisture and keeps a moisture balance in the hair and skin. Humectants will search for moisture in your own hair too. Therefore, in areas where it may be hot, but dry, these products may actually do more bad than good. In the right condition, humectants are materials used in products to moisturize dry or damaged hair.
Conditioning Agents: Stearamidopropyl Dimethylamine; Hydroxypropyl Guar Hydroxypropyltrimonium Chloride; Caprylyl Glycol
These ingredients are Cationic Surfactants that can be an effective mild cleanser in a conditioner or as film-forming conditioning agents. They are water soluble, but some can build up over time.
Again, these things don't mean anything to my tiny brain who doesn't know about hair nor science.
Garnier Ultimate Blends Hair Food Coconut Oil 3-in-1 Hair Mask Treatment for Curly Hair
Ingredients:
'1161330 - Aqua / Water, Cetearyl Alcohol, Glycerin, Isopropyl Myristate, Stearamidopropyl Dimethylamine, Macadamia Integrifolia Seed Oil, Glycine Soja Oil / Soybean Oil, Helianthus Annuus Seed Oil / Sunflower Seed Oil, Simmondsia Chinensis Seed Oil / Jojoba Seed Oil, Prunus Amygdalus Dulcis Oil / Sweet Almond Oil, Cocos Nucifera Oil / Coconut Oil, Sodium Hydroxide, Coco-Caprylate/Caprate, Hydroxypropyl Guar Hydroxypropyltrimonium Chloride, Caprylyl Glycol, Citric Acid, Tartaric Acid, Cetyl Esters, Salicylic Acid, Caramel, Linalool, Geraniol, Coumarin, Limonene, Citral, Citronellol Benzyl Alcohol, Benzyl Cinnamate, Benzyl Salicylate, Parfum / Fragrance, (F.I.L C232321/1)'
Humectants: Glycerin
A humectant absorbs moisture and keeps a moisture balance in the hair and skin. Humectants will search for moisture in your own hair too. Therefore, in areas where it may be hot, but dry, these products may actually do more bad than good. In the right condition, humectants are materials used in products to moisturize dry or damaged hair.
Conditioning Agents: Stearamidopropyl Dimethylamine; Hydroxypropyl Guar Hydroxypropyltrimonium Chloride; Caprylyl Glycol
These ingredients are Cationic Surfactants that can be an effective mild cleanser in a conditioner or as film-forming conditioning agents. They are water soluble, but some can build up over time.
A true repeat of the conditioner I have, which isn't a huge surprise as they're both Garnier. But I'll be using this one as a leave in on the days I'm having a bath or whatever.
I'll also be trying the Umberto Giannini Curl Jelly Scrunching Jelly for a laugh. I've never really used anything post-hair wash so it'll be fun to see if this tames the frizz. I just washed my hair today but I had to use a silicone-laden conditioner, so I'm going to start the real journey on Thursday!
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TAFAKKUR: Part 124
Dental Care with Miswak
We all may appreciate the difference between the positive impact made by a smile of pearly-white teeth and the repulsion triggered by yellowed and blackened rotten teeth, but the health issues run much deeper: as our medical knowledge grows, we are discovering that many diseases originate from dental cavities where microbes teem and nest, causing inflammations in many organs and tissues, most notably in the heart, kidneys, and joints.
The use of herbal sticks for cleaning teeth dates back to around 3500 BC, the time of the Babylonians. In several works of Ancient Greek and Roman literature, chewable sticks to aid dental and mouth hygiene are mentioned. Hippocrates (355 BC) advises rubbing a ball of cotton wrapped around a stick and dipped in honey on teeth, to maintain dental hygiene, whereas Romans used pastes obtained from gumwood. Dental hygiene is coming throughout history.
Arabs utilized the miswak for many years. The Japanese used wooden sticks called “koyoji” and Jews used wooden sticks called “kesam.” In the 1920s, in some rural areas across the United States, a stick of blood-twig was used for rubbing on the teeth. And according to a Chinese encyclopedia published in the seventeenth century, the first-ever toothbrush was made in China, in 1498.
Prophet Muhammad, peace be upon him, warned those of his Companions who visited him with bad teeth about the need for dental hygiene (Ahmad ibn Hanbal, Musnad 1/214):
“I oft reiterated my recommendations to you about the miswak.” (Bukhari, Jum’a 8; Nasai, Taharah 5; Ahmad ibn Hanbal, Musnad 3/143; Darimi, Wudhu’ 18)
“(The Archangel) Gabriel counseled me to use the miswak so much that I thought a verse might be revealed about the miswak to decree its use as obligatory for all.” (Ibn Majah)
Obviously he assigned the utmost importance to dental hygiene. It should be noted here that the Araq tree (Salvadora persica) from which the miswaq is obtained has features that are not present in other trees, and the Prophet particularly specified using the roots of that tree as the miswak.
Research has been conducted to discover the scientific and modern medicinal effects of the miswak, which has been used by Muslims in adherence to the Prophet’s practice. In 2010, a Ph.D. study at Karolinka Institute, Sweden, provided a significant message about its effectiveness (Picture 1).
The Araq tree, which is used as the miswak across a geography spanning from Africa to the far east, is a short tree or bush with a slanted trunk, and it is easy to chew its spongy roots, parts of which generally expand and soften when dipped in water.
The roots of the Araq tree are washed to remove the soil, and approximately 1 cm from the tip of the root stick is peeled to be used as the toothbrush. The stick is pummeled or chewed until the fibers become softer. Fresh and soft miswak are preferable: If the miswak is dry, it is advised to dip it in freshwater for 24 hours before use. It is better to peel frequently, so the tip is renewed. The most practical advice is to use the peeled tip until it loses its tang and fragrance, because the fragrant components indicate the beneficial effect of the miswak. According to a study, using the same tip for more than 24 hours lowers its cytotoxic ability to get rid of microbes.
The practice of using miswak in the Muslim World is widespread in Asia, Africa, and some regions in the Middle East. As many Muslims opt for miswak use to maintain a practice of the Prophet, the World Health Organization (WHO) also advises and encourages the use of miswak as an effective dental hygiene tool along with the conventional toothbrush. The miswak is easy to use and effective; it also has chemical properties that help control dental plaque. Based on the basic information we have about the miswak, we can easily say that deeper research is needed for its different components, like its fibers, essence, and essential oils.
Antibacterial effects of the miswak
The antibacterial activities of the essences obtained by crushing different roots of the miswak have been analyzed by microbiological techniques. It was discovered that the miswak essence has a very strong antibacterial effect, predominantly against Gram-negative bacteria, including mouth-cavity microbes like Porphyromonas gingivalis and Aggregatibacter actinomycetemcomitans. Two additional studies conducted on five different types of bacteria i.e. Streptococcus mutans, S. faecalis, S. aureus, Haemophilus influenzae, Salmonella enterica, and Candida albicans, and a type of fungus [5, 6, 7, 8] revealed that the miswak essence stops the reproduction of micro-organisms, has a lower effect on Lactobacillus acidophilus, is active against Herpes simplex virus which causes blistered lesions, and suppresses acid production.
The essential oil obtained from miswak essence includes 70% benzyl isothiocyanate, 9.4% limonene, 8.7% I-pinene and 2.55% flavonoid. As the miswak’s main antibacterial component, benzyl isothiocyanate kills bacteria by forming protrusions on their cell membranes. The volatile nature of this substance may open doors to new practices requiring antibacterial treatment. It has been proven that fresh miswak is effective at preventing the formation of dental plaque and gum inflammation, and it has also been acknowledged that it may play a potential role in preventing periodontal diseases.
The miswak essence hinders acidic (pH) conditions causing tartar and dental plaque, leads to a long-term increase of pH in the mouth, stimulates saliva flow in the parotid glands (located in front of both ears), and prevents tartar formation.
It is necessary to conduct further lab and clinical research to augment the positive results shown so far about the effects of the miswak against the inflammation of the palate and gums, as well as its antiviral and antifungal activities. Some research has additionally suggested that the miswak has antioxidant, analgesic, and anti-inflammatory effects. It is claimed that potassium chloride, salvadourea (a urea derivative), alkaloids, and oleic and linoleic acids in the miswak sap increase the viscosity of saliva, helps it to soak into hard-to-reach corners in the mouth, and contributes to overall dental hygiene. It is reported that a substance named Xylitol in the miswak essence suppresses acid production and the reproduction of mutant streptococci [9, 10].
An interesting substance in the miswak oil
Benzyl-isothiocyanates are effective molecules in the defense systems of several plants such as cabbage, watercress, and broccoli. Secreted after damage to plant tissues, benzyl isothiocyanate forms a protective antibacterial layer on the damaged part of the plant. While dental plaque and tartar are mechanically removed by rubbing the miswak on teeth, this action also helps the substance secreted from the miswak reach deeper parts of the oral cavity. It is especially proven that benzyl isothiocyanates are strongly effective as bactericide on Gram-negative bacteria and have minimal effect on Gram-positives.
Lab tests conducted on animals indicate that these components also have anti-carcinogenic activity, and people who get isothiocyanates by nutrition have a lower risk of cancer. It is fascinating that the miswak, too, has the same substance.
While introducing a new set of ethical principles, Prophet Muhammad, peace be upon him, revoked some customs and habits inherent to the pagan culture before Islam (Age of Ignorance) and kept others. Using miswak was a practice among the Arabs in the region; the Prophet encouraged its use and emphasized its benefits. Eventually, Muslims have adopted it as not only a habitual practice, but also as a healthy spiritual activity and are keeping the memory of the Prophet alive.
#allah#god#muhammad#prophet#sunnah#hadith#quran#ayat#islam#muslim#muslimah#revert#convert#religion#reminder#help#hijab#pray#prayer#welcome to islam#how to convert islam#new muslim#new revert#new convert#revert help#convert help#islam help#muslim help#dua#salah
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Benzyl Chloride Prices | Pricing | Trend | News | Database | Chart | Forecast
Benzyl Chloride Prices is a key chemical compound widely used across several industries, including pharmaceuticals, agrochemicals, and plastics. The price of benzyl chloride is influenced by several factors, including raw material costs, supply chain dynamics, manufacturing processes, and fluctuations in demand across various end-use industries. Over the years, the market for benzyl chloride has been shaped by global economic conditions, environmental regulations, and geopolitical factors, which in turn affect its pricing.
One of the primary factors that drive the price of benzyl chloride is the cost of its raw materials. Benzyl chloride is primarily derived from toluene, an aromatic hydrocarbon that is widely used in the chemical industry. The prices of toluene, therefore, play a significant role in determining the cost of producing benzyl chloride. When the price of toluene increases, it exerts upward pressure on benzyl chloride prices as manufacturers pass on the increased production costs to their customers. Additionally, the cost of chlorine, another essential input in benzyl chloride production, can also influence the price dynamics. Variations in the supply and demand for chlorine in other sectors such as water treatment and plastics manufacturing can lead to price volatility in benzyl chloride.
Get Real Time Prices for Benzyl Chloride: https://www.chemanalyst.com/Pricing-data/benzyl-chloride-1299
Another important factor that affects benzyl chloride prices is the overall market demand. Benzyl chloride is a versatile chemical, used in the production of a variety of products such as benzyl alcohol, benzyl cyanide, and benzyl quaternary ammonium compounds. These products find applications in a wide range of industries, including pharmaceuticals, agrochemicals, personal care products, and dyes. The growth of these industries significantly impacts the demand for benzyl chloride, thereby influencing its pricing. For example, the pharmaceutical sector has been a major consumer of benzyl chloride due to its use in the production of various drugs and intermediates. With the global rise in demand for pharmaceuticals, particularly in emerging economies, the demand for benzyl chloride has also increased, leading to price hikes in some regions.
Supply chain disruptions can also have a profound impact on benzyl chloride prices. Events such as natural disasters, political instability, or logistical challenges can disrupt the availability of raw materials or finished products. In such cases, the supply of benzyl chloride may become constrained, leading to a rise in prices as buyers compete for limited supplies. Additionally, the COVID-19 pandemic has significantly affected supply chains across the globe, leading to delays in production and distribution, which contributed to price volatility in the benzyl chloride market. With restrictions on movement and temporary shutdowns of manufacturing facilities, the supply of benzyl chloride was affected, causing price fluctuations in various markets.
Environmental regulations and safety standards also play a crucial role in influencing benzyl chloride prices. Benzyl chloride is classified as a hazardous chemical, and its production and transportation are subject to strict regulations in many regions. Compliance with environmental laws and safety standards adds to the cost of production for manufacturers, who often pass on these costs to the end consumer. Furthermore, companies must invest in technologies that minimize emissions and waste during the manufacturing process to meet regulatory requirements, further driving up costs. The stringent environmental policies in regions such as North America and Europe have led to higher production costs for benzyl chloride, which are reflected in its market prices.
Geopolitical factors and trade policies can further influence benzyl chloride pricing. For instance, tariffs and trade restrictions between countries can affect the flow of raw materials or finished products, leading to price fluctuations. Countries that are major producers of toluene or benzyl chloride, such as China, play a significant role in shaping the global market dynamics. Any disruption in production or changes in trade policies in these regions can create ripple effects across the global benzyl chloride market. Moreover, fluctuations in currency exchange rates can also impact the prices of benzyl chloride, especially in regions where the chemical is imported or exported in large quantities. A weaker currency in a major importing region could result in higher prices for benzyl chloride, while a stronger currency might lower the cost of imports.
Technological advancements in the production of benzyl chloride can also influence its pricing. The development of more efficient production processes or the use of alternative raw materials can reduce the cost of production, leading to lower prices for benzyl chloride. Conversely, if new technologies require significant capital investments, these costs may be passed on to consumers, resulting in higher prices. Additionally, advancements in logistics and distribution can help streamline the supply chain, potentially reducing transportation costs and stabilizing prices.
In conclusion, benzyl chloride prices are influenced by a complex interplay of factors including raw material costs, market demand, supply chain disruptions, environmental regulations, geopolitical factors, and technological advancements. As industries such as pharmaceuticals and agrochemicals continue to grow, the demand for benzyl chloride is expected to rise, which could lead to further price fluctuations in the market. Moreover, with increasing regulatory pressure and potential supply chain challenges, benzyl chloride prices are likely to remain volatile in the coming years. Buyers and manufacturers must closely monitor these factors to better navigate the pricing trends and manage their costs effectively.
Get Real Time Prices for Benzyl Chloride: https://www.chemanalyst.com/Pricing-data/benzyl-chloride-1299
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#Benzyl Chloride#Benzyl Chloride Price#Benzyl Chloride Prices#Benzyl Chloride Price Monitor#Benzyl Chloride News#Benzyl Chloride Database
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Worldwide 5G Genocide Starting in October
Dear Benjamin:
I was badly poisoned on 2 recent humanitarian flights home from Central America, through Houston airport and on to Canada, as was my travel partner- we almost died. The airlines were United and Air Canada. Upon trying to detoxify and researching what happened to us, I discovered that they are using new ‘Fogging’ nanotechnology chemicals, metals, and aerosols on aircraft under the guise of new anti-COVID 19 measures.
Through multiple holistic means, we were found to be actively poisoned with ‘Benzalkonium chloride, benzyl chloride, chloro-aceto phenone’, ammonia, radioactive aluminum, radioactive mercury, and nanobot technology. The first few chemicals used are on the list of WW1 chemical warfare agents on Wikipedia here (others are degradation products from the human body processing these poisons):
https://en.wikipedia.org/wiki/List_of_chemical_warfare_agents
The two nano-chemicals I believe were used on our aircraft are (confirmed by a private jet company as the main chemicals used for Fogging):
BACOBAN: https://new.parkdentalresearch.com/shop/index.php?route=product/product&path=101_103&product_id=351
VIRACLEAN: https://www.catalog.md/drugs/vira-clean.html
THE CHEMICAL DEGRADATION PROCESS AND ADDITIONAL POISONS PRODUCED:
https://en.wikipedia.org/wiki/Benzalkonium_chloride
https://pubchem.ncbi.nlm.nih.gov/compound/Pyrithione-sodium
https://en.wikipedia.org/wiki/Benzyl_chloride
The cognitive impairment from this experience cannot be described (from perfect health to vision loss, nausea, hearing loss, loss of equilibrium, inability to process information, inability to speak, read or write, seizures and so much more. I am blessed to work in health and to have gone on an immediate and rigorous detox program which helped significantly though long term- impairment may be the outcome as these are very noxious poisons. Others on our flight or other flights might not be as lucky.
THIS IS THE EXACT PROCESS THEY USE TO SANITIZE PLANES:
First, they spray a sheet of positively charged ‘nano-glass’ called electrostatic spraying (sometimes with chemicals and sometimes without), then they aerosol the entire plane with the active nano-particle chemicals (as shown on the websites above), which are said to self-replicate for up to 10 days after application, only they are using the chemicals between every single flight, and in some cases all night long for 8 hours straight. Traveler’s then board the plane just 60 minutes after application.
Apparently the nano-material technology makes it so that the product cannot be re-applied repeatedly and once coated, it will reject more coating for the next 10 days back into the air.
This is advertised as making the product go-farther with less use’ but when applied repeatedly as airlines are doing, the result is that these charged atoms spew back into the air as a potent positively charged aerosol being attracted to the next neutral or negatively charged atoms that enter the flight, such as the body and lungs of human beings.
As if this were not enough, they end the treatment with a UV light blast of the entire aircraft, using mercury lights which when turned on, release a potent mercury vapor into the air, to further cause harm to the coming passengers.
If you dig into this, you will quickly see that this is nothing short of an aerosol vaccine program meant to incept healthy humans with unapproved, unconsented poisons and nano-technology.
The worst part is that this is already happening in schools, and some public places, and soon to be in stores, malls, movie theaters, condo building lobbies and subways, buses and rental cars. Children around the world are being diagnosed with rare brain diseases and I believe it’s from exposure in schools.
I have PDF’s full of info I can send you if you want more info on Fogging, however, my own personal poisoning, awful as it is, is not why I contacted you.
Through this experience both my travel partner and I are now extremely EMF sensitive and upon returning to Canada, became incapacitated once in 5G radiation. I became quickly aware that I am now (thanks to nanobot brain poisoning) a walking human Geiger counter. The nanobots in my brain allow me to sense with inhuman accuracy every single deviation in microwave frequency and I feel every 5G tower, meter, street light, receiver long before I see it.
This led me to dig into the 5G/ nanobot/transhumanism agenda rabbit hole and fell across what I believe is a global genocide agenda using 5G frequency. This agenda is set to be rolled out this coming October, and continued from city to city until next August and will result in hundreds of millions of deaths in the US, Canada and possibly much more worldwide.
This is the real reason why I contacted you:
I believe the above mentioned fogging chemicals are being dumped on us via chemtrails and in public spaces, and will be used to falsify a second COVID wave, as the new COVID symptoms are identical to those of Benzalkonium chloride and radiation poisoning.
I believe this is an aerosol mass-vaccination agenda. The coming COVID vaccines will also contain nanobots and nano-technology.
I believe that anyone infected like I am (and soon to be everyone) will be hyper-reactive to 5G and will become a physical part of the electrical smart grid pulling frequencies to their brains as if they were a human tower. This enables mind control, implanting of emotional reactions, and thoughts via frequency manipulation and creates transhumanism.
I believe they locked people down earlier this year under the false guise of a virus so they could roll out 5G in every part of the world on current infrastructure so that nobody would notice.
I have traveled extensively this last month trying to find a 5G-free safe haven and there are none. Even remote areas of Canada and impoverished areas of Central America have 5G infrastructure already in place and frequencies already being emitted.
5G is NOT a WIFI issue, this is an electrical agenda and the microwaves pulse into the house and environment via electrical wires, signals, smart meters, and house-hold appliances and plugs, NOT VIA WIFI ROUTERS EXCLUSIVELY.
Areas with 3G or less WIFI strength actually have 5G infrastructure already set up in their electrical systems.
Areas around the world without WIFI at all are still experiencing microwave pulsing throughout the day.
Big Tech used the term 4.5G (4G PLUS) to build the 5G infrastructure without drawing attention to 5G itself which is highly controversial and not widely accepted by the population.
I believe that the global plan is to vaccinate people (both through inoculation of the willing and forced aerosol poisoning of the resistant) with nanobots and then to blast 5G anytime there is population resistance to first control people, then to actually kill them.
I believe that 5G, and only 5G, is why people died in WUHAN in 2019, then Italy, Queens NY, now Sweden (being blasted as we speak) and so many other areas to come. They were dosed with, or vaccinated with nanotech, and then the frequency was increased as a test to see which frequencies had people falling dead and at which rate.
Here is why 5G built into our electrical system is so dangerous:
4G is 7GHZ or less
4.5G (4G Plus) is 7-12 GHZ
5G is 15-300 GHZ
At 10 GHZ the human immune system starts to falter, sleep is impaired and healing is minimized
At 10-30 GHZ, disorientation sets in, feeling tired, drowsy, weak, trouble sleeping, dry mouth, dehydration, poor cell turnover and lowered hemoglobin, depression, anxiety and other symptoms of radiation poisoning/ microwave syndrome.
At 35 GHZ the oxygen molecules in the air and our bodies begin to spin, making it impossible for our hemoglobin to uptake oxygen causing asphyxiation. 75% of healthy people will die in the first 2-3 days of being exposed to 35 GHZ consistently. The healthiest will die within a week.
At 50 GHZ, nothing survives, including birds, bees, trees etc.
At 60 GHZ everything goes up in flames (similar to the wildfires in the US right now- in 5G areas)
They are currently experimenting daily with frequency changes (I feel every shift) to normalize people’s symptoms and exposures so no one notices what is happening. They are experimenting to see how high they can go before people start noticing.
I have been in areas where the map shows only 4G or even 3G and yet they have 5G frequencies already pulsing.
They increase the frequencies at night so people sleep poorly, causing a weakened society, and lower it during the morning, increasing again in the afternoon.
5G is the most dangerous large-scale and immediate-acting bioweapon in all of history.
5G is the equivalent of having a loaded gun pointed to every single one of our heads, no matter where you live, where you work, what your race, what your social status or how much money or skills you have, you are the mercy of that dial.
If you have electricity right now, you can be killed in an instant if they blast the frequency through your home at anything over 35 GHZ.
Here is a woman who shares the global plan in more detail, with dates, escape routes and timelines if you are interested: https://www.lindaemmanuel.com/index.html
See a 5G map here (not super accurate or up to date as they are doing this in secrecy but shows the different classifications): https://www.nperf.com/en/map/5g
This is the genocide agenda:
All 5G infrastructure is already in place. Look at receivers already placed on your streetlights, smart meters, your electrical outlets and appliances, the towers themselves, rooftop receivers, etc.
Next is poisoning people with aerosols, and toxic food and water to falsify the second wave
Once people are in lockdown, they cannot leave their homes- these areas are then easy 5G kill zones.
The government can choose to increase the frequency anytime they decide and depopulate as much as they want, in any chosen area.
I guarantee that unless you are very far off-grid, without any electricity and no neighbors who have it either, you are, as we are, currently sitting in a potential kill zone.
I have tried reaching out to colleagues, health pioneers and other popular leaders in the natural movement but everyone is afraid to share this as they feel they will be killed immediately and censored to block the sharing of this info.
Here is what I am hoping you, or some of your connections, may be able to do:
Turn off the smart grid somehow
Deactivate these smart meters, streetlights or shut down/ de-activate the satellites
Block or get access to control the frequencies to disable them from being used at frequencies over 7GHZ
Anything at all to help the root issue from a technical side because just telling people as I’ve been doing and warning the public is not enough. Media is corrupted and the truth is censored, this will never make it viral fast enough to create change or save humanity or the planet.
I am praying that you look into this and can come up with a viable solution to help block or disable this potential global agenda.
I am here to answer any questions you have, will assist in any way I can, and will make myself available to provide you with any further info, content, links, resources, or anything else I can do to assist your efforts.
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Preservatives in Bacteriostatic Water: Are They Necessary for Every Injection?
Bacteriostatic water is typically used to inject in a variety of healthcare and medical settings and contains preservatives that ensure safety across multiple applications. Are these preservatives necessary for every kind of injection? Let's examine the significance of preservatives used in bacteriostatic water and their benefits, as well as the best time to use them.
What is Bacteriostatic Water?
Bacteriostatic Water can be described as a kind of sterile drinking water that has an insignificant amount of preservative, typically benzyl Alcohol to stop the growth of bacteria. In contrast to sterile water which is meant to be used for a single purpose it is possible to be used repeatedly in a span of 28 days, which makes it incredibly versatile and beneficial in a range of medical applications.
Why Are Preservatives Used in Bacteriostatic Water?
The main reason to include preservatives such as benzyl alcohol to bacteriostatic waters is to stop the spread of bacterial infections throughout multiple uses. Preservatives make the water suitable for injections that require frequent doses over time, since the addition of benzyl alcohol helps keep the solution clear of bacteria.
Key Benefits of Preservatives in Bacteriostatic Water:
Stops the growth of bacteria: Benzyl alcohol helps ensure the solution is secure for multiple applications.
Increases shelf life: Bacteriostatic water can be kept and reused for up to 28 days.
reduces the amount of waste produced: The use of multiple doses minimizes the requirement for more vials, thus reducing the amount of waste generated by medical procedures.
Are Preservatives Necessary for Every Injection?
Preservatives aren't required in every single injection. The requirement for bacteriostatic waters in contrast to sterile injection water is dependent on the type of medicine as well as how often injections are performed and also the needs of the patient.
What is the best time to use Bacteriostatic Water in conjunction with Sterile Water for Injection
1. For Multi-Dose Injections
Best Choice: Bacteriostatic Water for Injection
Why: The benzyl alcohol preservative helps to ensure that the water is safe for a variety of doses, thus reducing the requirement for a new vial every time.
Example Uses: Treatments with hormones which require multiple doses over a period of time.
2. For Single-Dose Injections
Best Choice: Sterile Water for Injection (e.g., 10 ml Sterile Water for Injection or Sterile Water for Injection 10ml)
The reason: Single-use sterile water does not have preservatives in it that reduce the risk for people who are sensitive to benzyl alcohol.
Examples of Uses: Emergency injections or one-time reconstitution of antibiotics.
Benzyl Alcohol in Bacteriostatic Water: Essential or Optional?
The preservative is benzyl alcohol in the bacteriostatic waters. While it is safe for most adults, some groups must stay clear of bacteriostatic waters, since benzyl alcohol may cause adverse consequences:
Newborns: The use of bacteriostatic waters isn't recommended to infants because they are unable to metabolize the alcohol benzyl effectively.
Allergic Reactions People who are with a sensitivity to benzyl-alcohol should choose non-preservative alternatives such as water that is sterile.
Key Products: Bacteriostatic Water, Sterile Water, and More
The selection of bacteriostatic waters and sterile water or even products such as Bacteriostatic saline will depend on your medical needs. Here's a brief overview of the various options available:
Bacteriostatic Water for Injection Multi-dose use with the use of benzyl alcohol as an ingredient in the preservative.
Sterile Water for Injection Perfect for single-dose use without preservatives.
Bacteriostatic Saline and Bacteriostatic Chloride: Saline-based options with preservatives that are often used to treat multiple doses.
sodium Chloride to Inject: Non-preserved and typically employed in single-dose scenarios.
Purchase Distilled Water Adelaide: Pure, non-preserved water that is ideal for a variety of healthcare needs.
Selecting the Right Volume 10 ml or. 30 ml of Bacteriostatic Water to Inject
The appropriate amount of bacteriostatic water is contingent on the use you make of it:
30ml Bacteriostatic Solution for Injections: Suitable for treatments that require higher doses or more frequent dosages.
10 ml of Sterile Water to Inject: An excellent option for small, single-use applications that do not contain preservatives.
When to Buy Bacteriostatic Water in Australia
If you're in the market to purchase Bacteriostatic Water in Australia, especially in the case of frequent injections and multiple dose requirements, selecting the correct quantity and type can increase efficiency and decrease expenses. Make sure that the product is compatible with prescribed medication and test for tolerance to benzyl alcohol.
Final Thoughts: Preservatives Play a Crucial Role in Multi-Use Safety
Preservatives found in bacteriostatic water such as benzyl Alcohol are definitely essential for injections with multiple doses. However, they're not the best choice for all scenarios. Single dose injections, patients with sensitive conditions and infants gain by using sterile water without preservatives injection. Understanding these options will help you to make better and safer medical decisions.
Healthcare providers must get high-quality sterile water from reliable vendors such as Bacteriostatic Water Australia. They provide items such as Sterile Water and Bacteriostatic Water for Injection to ensure compliance with the highest purity and safety requirements. The additional preservative in Benzyl Alcohol Bacteriostatic contributes to the safety of multi-use vials, which ensures patient safety during long-term therapy.
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Byre Launches Body Washes With Unwanted Whey. But Is That Good For Skin?
Did you know the diary industry wastes 870.000 tonnes of whey, a by-product of cheese and milk production, every single year?
What a waste! But, wait, Gio, what has this got to do with skincare?
Meet Byre. It’s a new range of British body washes that rescues whey powder and uses it as their key ingredient. Like this weren’t enough, they also donate part of the proceeds to the Royal Agricultural Benevolent Institution to help support farming family in needs.
Using their body washes definitely makes you feel good. But are they good for your skin, too? Let’s find out:
Key Ingredients In Byre Body Washes
Sodium Laureth Sulfate and Cocamidopropyl Betaine
Sodium Laureth Sulfate and Cocamidopropyl Betaine are the cleansing agents that make these body washes work. Their job is to help water mix with oil and dirt, so they can be easily rinsed away.
While they’re at it, they also make the cleanser foam. The higher their concentration, the more lather they make.
Despite their incomprehensible chemical names, these two babies are gentle on the skin. They remove dirt and impurities without drying out skin or irritating it.
Related: Are Sulfates In Skincare Products Bad For Skin?
Whey Protein
Whey is a by-product of cheese production. It’s the liquid that’s left over after the cheese has been curdled and strained.
In skincare, whey protein is a moisturiser. It helps strengthens the skin’s protective barrier and keep skin soft and supple for hours.
Doesn’t matter how gently you cleanse, the process is always a bit traumatic for your skin. Whey makes sure that it stays soft and hydrated even as the surfactants remove oil and dirt.
Let’s Put Them To The Test: Personal Use & Opinion
Byre Body Washes come in three “milk” variants: Full, Semi-Skimmed, and Skimmed. How cool is that?
They all use the same active ingredients (explained above) and have similar formulas. What makes each one stand out is its unique scent and texture:
Full Cream: Milky white, it has the richest texture that feels more like a lotion. It’s the most hydrating of the lot, but doesn’t lather. That makes it perfect for sensitive or very dry skin. The scent? Sweet and soapy vanilla.
Semi-Skimmed: Pearly white, its texture is neither thick nor runny. I dig this one the most. It applies like a dream, is hydrating and barely lathers. The fruity floral scent is heavenly, too.
Skimmed: Translucent white, it has a thin, almost runny texture that lathers a little. It’s the least hydrating, making it perfect for oilier skin types. Or for the men in your life. The earthy, woody scent veers more towards the masculine.
All three body washes do an excellent job at cleansing my dry skin without leaving it tight and parched. They remove all dirt and impurities from my body, leaving it both clean and soft – and me feeling good. Win win.
Available at: £5.00 at Byre and Sainsbury’s
Byre Body Washes gently remove dirt and impurities from the skin, without drying or irritating it. Although they don't lather, they leave skin clean, soft, and smelling lovely.
Beautiful With Brains
PRO
Removes all traces of dirt and impurities
Gentle, doesn't dry out skin
Leaves skin softer and smoother
Donates part of the proceeding to farming families in need
CON
I wish they were available in my more shops
8.3 4.1666666666667 5
OVERALL SCORE
Have you tried Byre Body Washes? Share your thoughts in the comments below.
Full Cream Body Wash Ingredients: Aqua, Sodium Laureth Sulfate, Glycerin, Glycol Distearate, Cocamidopropyl Betaine, Sodium Chloride, Whey Protein, Laureth-4, Phenoxyethanol, Parfum, Sodium Benzoate, Coco-Glucoside, PEG-7 Glyceryl Cocoate, Citric Acid, Aloe Barbadensis Leaf Juice Powder, Styrene/Acrylates Copolymer, Benzyl Salicylate, Disodium EDTA, Linalool, Courmarin, Papaver Somniferum Seed Oil, Polyquaternium-7, Benzoic Acid, Avena Satova (Oat) Meal Extracts, Potassium Sorbate.
Semi-Skimmed Body Wash Ingredients: Aqua, Sodium Laureth Sulfate, Glycerin, Sodium Chloride, Glycol Distearate, Cocamidopropyl Betaine, Whey Protein, Laureth-4, Phenoxyethanol, Parfum, Sodium Benzoate, Coco-Glucoside, PEG-7 Glyceryl Cocoate, Aloe Barbadensis Leaf Juice Powder, Styrene/Acrylates Copolymer, Disodium EDTA, Citric Acid, Hexyl Cinnamal, Benzyl Salicylate, Alpha-Isomethyl Ionone, Courmarin, Butylphenyl Methylpropional, Papaver Somniferum Seed Oil, Polyquaternium-7, Niacinamide, Sodium Starch Octenylsuccinate, Benzoic Acid, Calcium Pantothenate, Maltodextrin, Sodium Ascorbic Phosphate, Pyridoxine Hcl, Tocopheryl Acetate, Silica.
Skimmed Body Wash Ingredients: Aqua, Sodium Laureth Sulfate, Sodium Chloride, Glycol Distearate, Cocamidopropyl Betaine, Glycerin, Whey Protein, Laureth-4, Phenoxyethanol, Parfum, Sodium Benzoate, Coco-Glucoside, PEG-7 Glyceryl Cocoate, Aloe Barbadensis Leaf Juice Powder, Styrene/Acrylates Copolymer, Citric Acid, Disodium EDTA, Papaver Somniferum Seed Oil, Polyquaternium-7, Aloe Barbadensis Leaf Extract, Arctium Lappa Root Extract, Melissa Officials Leaf Extract, Passiflora Edulis Flower Extract, Benzoic Acid, Potassium Sorbate.
Take The Guesswork Out Of Skincare Shopping
Get access to the “Pro Skincare Library” for exclusive skincare routine “cheat sheets” and tricks to help you navigate the beauty aisles jungle like a pro and immediately know what to pick off the shelves to achieve the gorgeous skin of your dreams - even when you’re drowning in an endless sea of skincare products.
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Byre Launches Body Washes With Unwanted Whey. But Is That Good For Skin? syndicated from Beautiful With Brains
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Garnier color reviver copper
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Ivermectin is a powerful remedy for both common and crusted scabies.
Ivermectin belongs to the class of broad-spectrum antiparasitic drugs known as ivermectin acaricides, which are effective against a variety of nematodes and ectoparasites. Although this medication is available for some time it is given. Buy Ivermectin Online Which is TGA approved for the treatment of scabies. It is a TGA-approved and PBS-listed medication for onchocerciasis and strongyloidiasis. In the community-based control of endemic scabies, oral ivermectin has been proven to be more effective than a placebo. Ivermectin has been demonstrated to be slower to remove lesions than permethrin, despite being effective at treating scabies (defined as no new lesions brought on by the mite) after two different treatments. Due to high heterogeneity among trials, it is challenging to reach a judgment regarding the relative efficacy of ivermectin versus benzyl benzoate. Ivermectin medication when used to treat scabies is generally well tolerated with only mild, temporary adverse effects.
Uncertainty of Ivermectine in some areas
There has been a significant variation in study techniques in the RCTs employing ivermectin for typical scabies, making it challenging to assess the drug's clinical efficacy. In addition, there are problems with applying the trial population to the suggested PBS population.
There are no controlled clinical trials that have been published to evaluate the appropriate dosing regimen to treat typical or crusted studies. In case serious studies potential dosing regimens have been evaluated statically. A single dose of ivermectin may not be effective against all phases of the scabies parasite's life cycle, according to studies contrasting it with topical therapies for typical scabies.
Ivermectin has been proven to be effective for treating typical and crusted scabies in mass treatments of communities with endemic scabies, despite the lack of clinical trial data for its effectiveness, particularly in the Aboriginal and Torres Strait Islander communities. However, there is limited data regarding the treatment of ivermectin for very old, young, and liver patients.
What does the NPS medicine say?
This medication represents a significant advancement in the treatment of crusted scabies, common scabies that is resistant to topical treatments, scabies outbreaks in public places, and scabies in nursing homes for the elderly.
Ivermectin plays a part in managing endemic scabies, particularly when compliance with head-to-toe use of topical medicines is logistically challenging. Standard topical therapy of scabies is effective in the majority of patients when administered appropriately. Make sure the patients know the proper dosing of Ivermectin to successfully treat scabies with minimizing the risk of antimicrobial resistance.
What is Ivermectin, its effectiveness in treating scabies?
Ivermectin is an avermectin acaricide that kills scabies mites by blocking a group of ligand-gated chloride ion channels and resulting in chronic channel opening.
Although the scabies mite's in-vivo target has not yet been discovered, it has been hypothesized that ivermectin kills parasites by excessively causing the release of the neurotransmitter gamma-aminobutyric acid (GABA) in their nervous systems. As the life-cycle-dependent variability in ligand-gated chloride ion channel expression, Ivermectin is not considered effective against all stages of the parasite. However, it is a strongly used treatment for both onchocerciasis and strongyloidiasis.
Conclusion: Ivermectine is considered one of the most effective medications for treating both common and crusted scabies.
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