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Sulfonic Acid Manufacturer in Delhi: A Comprehensive Overview
Sulfonic acid is a vital chemical compound widely used across numerous industries, including detergents, pharmaceuticals, textiles, and water treatment. Its versatile properties make it indispensable for manufacturing processes. Delhi, a major industrial hub, hosts a variety of manufacturers supplying high-quality sulfonic acid to meet local and national demands. This article provides an in-depth look at sulfonic acid, its applications, and factors to consider when choosing a reliable sulfonic acid manufacturer in Delhi.
What is Sulfonic Acid?
Sulfonic acid belongs to a class of organic compounds characterized by the presence of a sulfur atom bonded to a hydroxyl group and a carbon chain (R-SO3H). Known for its strong acidity, excellent solubility in water, and chemical stability, sulfonic acid plays a key role in diverse industrial applications.
The most commonly used type of sulfonic acid is linear alkylbenzene sulfonic acid (LABSA), which is a key ingredient in producing detergents and cleaning agents. Its eco-friendliness and efficiency make it a preferred choice in industries focused on sustainability.
Applications of Sulfonic Acid
Sulfonic acid’s adaptability has made it a critical component in various industries:
Detergent Manufacturing Sulfonic acid is a primary surfactant used in manufacturing laundry detergents, dishwashing liquids, and industrial cleaning agents. It enhances the cleaning power by breaking down grease and grime effectively.
Pharmaceutical Industry The compound is used in synthesizing drugs and stabilizing pharmaceutical formulations. Its derivatives often serve as intermediates in chemical reactions during drug production.
Textile and Dye Industry Sulfonic acid improves the solubility and binding of dyes to fabrics, ensuring vivid and long-lasting colors in textiles. It is a critical agent for high-quality dye production.
Water Treatment As part of ion exchange resins, sulfonic acid plays a vital role in water purification and softening processes, helping industries meet clean water standards.
Petroleum Industry The oil and gas sector uses sulfonic acid as a corrosion inhibitor and emulsifier in drilling operations.
Why Choose a Sulfonic Acid Manufacturer in Delhi?
Delhi's industrial ecosystem is home to some of the most reputed chemical manufacturers in India. Choosing a reliable sulfonic acid manufacturer in Delhi ensures access to high-quality products that meet stringent standards. Here’s why it matters:
Quality Assurance Reliable manufacturers in Delhi prioritize quality control, offering sulfonic acid with high purity levels. Superior product quality ensures better results across applications.
Cost Efficiency Manufacturers in Delhi provide competitive pricing, especially for bulk orders, making it cost-effective for businesses.
Regulatory Compliance Leading manufacturers adhere to environmental and safety regulations, ensuring sustainable production processes.
Customization Many Delhi-based manufacturers offer tailored solutions to meet specific industrial needs, including unique formulations or packaging options.
Factors to Consider When Choosing a Manufacturer
Selecting the right sulfonic acid manufacturer can significantly impact your business operations. Key factors to evaluate include:
Reputation and Experience Look for manufacturers with a proven track record and positive reviews. Established companies often guarantee reliability and quality.
Certifications and Standards Certifications like ISO 9001 or environmental clearances indicate adherence to global quality standards.
Technical Support A good manufacturer provides technical assistance, helping you select the right product for your specific applications.
Supply Chain and Logistics Ensure the manufacturer has an efficient supply chain to deliver products on time, especially for large-scale industrial operations.
Why Delhi is a Key Hub for Sulfonic Acid Manufacturing
Delhi’s strategic location, robust infrastructure, and access to raw materials make it an ideal hub for chemical manufacturing. The city’s proximity to major industrial zones ensures a steady demand for sulfonic acid and related chemicals. Manufacturers in Delhi are well-equipped with modern facilities and are adopting green chemistry practices to meet the rising demand for sustainable products.
Conclusion
Sulfonic acid is an essential chemical with extensive industrial applications. When sourcing sulfonic acid in Delhi, it is crucial to partner with a reliable manufacturer that ensures quality, safety, and timely delivery. A trusted supplier not only meets your immediate needs but also supports your business's long-term growth by offering sustainable and customized solutions.
Delhi's chemical industry is evolving rapidly, with manufacturers striving to innovate and meet global standards. By choosing the right manufacturer, businesses can leverage the full potential of sulfonic acid while contributing to eco-friendly industrial practices.
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Linear Alkylbenzene Sulfonic Acid Prices Trend | Pricing | News | Database | Chart
Linear Alkylbenzene Sulfonic Acid (LABSA) Prices a crucial role in the global surfactant market, primarily due to its extensive applications in the production of detergents and cleaning agents. As one of the most widely used anionic surfactants, LABSA is highly valued for its strong cleaning, foaming, and emulsifying properties, making it indispensable in household and industrial cleaning products. Given its importance, monitoring the price trends of LABSA is essential for manufacturers, suppliers, and buyers who depend on this material for a variety of products. The pricing of LABSA is influenced by a complex interplay of factors, including fluctuations in raw material costs, global demand and supply dynamics, market competition, and regional economic conditions.
The raw material costs, especially linear alkylbenzene (LAB), form a significant portion of the production expenses for LABSA. Since LAB is derived from petroleum-based feedstocks, changes in crude oil prices directly impact LAB prices and, consequently, LABSA costs. Any volatility in the oil market—be it due to geopolitical tensions, production decisions by major oil-exporting countries, or supply disruptions—tends to ripple through the LABSA supply chain, affecting its overall market price. For instance, a spike in crude oil prices typically leads to increased production costs for LAB, which manufacturers pass on to buyers of LABSA. Conversely, periods of declining oil prices often offer a reprieve in terms of cost reductions, providing relief to end-users and boosting overall market competitiveness.
Get Real Time Prices for Linear Alkylbenzene Sulfonic Acid (LABSA): https://www.chemanalyst.com/Pricing-data/linear-alkylbenzene-sulfonic-acid-labsa-15
Market demand is another vital determinant of LABSA pricing. The demand for cleaning and personal care products remains a critical driver of LABSA consumption worldwide. Consumer preferences, economic growth, and regional hygiene and sanitation campaigns can all influence demand patterns. For example, in emerging markets, rising disposable incomes and increased awareness of hygiene standards have led to a surge in demand for detergents and cleaning agents containing LABSA. On the other hand, mature markets tend to experience stable demand, with innovation in formulations and eco-friendly alternatives offering growth opportunities. Any fluctuations in demand due to changing consumer preferences or economic slowdowns can have immediate effects on the pricing of LABSA, influencing how manufacturers adjust their production strategies.
Supply chain dynamics also shape LABSA prices. Factors such as production capacity expansions, technological advancements, and supply bottlenecks significantly affect the availability and pricing of this surfactant. When global or regional production capacity is constrained—due to issues such as plant shutdowns, maintenance work, or regulatory restrictions—supply shortages may occur. These constraints often lead to price increases, particularly when demand remains steady or rises unexpectedly. Conversely, when supply exceeds demand due to increased production or new entrants in the market, prices may experience downward pressure as producers seek to maintain market share through competitive pricing. Efficient supply chain management, therefore, plays a critical role in stabilizing LABSA prices.
Trade policies and regional regulations also influence LABSA market prices. Tariffs, import/export restrictions, and environmental regulations can affect the cost structure of LABSA production and its subsequent pricing. For example, stringent environmental regulations that demand lower emissions during production may drive up operational costs, translating to higher product prices. Similarly, any restrictions on the import or export of key raw materials or finished products may lead to regional pricing disparities, with manufacturers and suppliers adjusting their prices to compensate for such challenges. The impact of regulatory changes, therefore, can be both direct—through compliance costs—and indirect—through shifts in market competition.
The competitive landscape in the LABSA market further affects pricing trends. The industry features a mix of established global players and regional manufacturers, each with their pricing strategies and production capabilities. Price competition can be intense, especially in regions with numerous suppliers offering similar products. Companies may reduce prices to gain market share, particularly during periods of intense competition or when facing excess inventory. On the other hand, dominant market players with significant production capacity or proprietary technology may be able to maintain stable pricing even during turbulent market periods. The interplay between competition and pricing strategies ensures that market participants must continuously adapt to changing conditions to maintain profitability and market position.
Global economic conditions play a pivotal role in determining the pricing trajectory of LABSA. Economic downturns can suppress demand for consumer goods and industrial products, including those containing LABSA, leading to price reductions due to oversupply. Conversely, economic booms often spur demand across various sectors, driving up prices due to heightened consumption. Additionally, currency fluctuations can impact LABSA pricing in international markets. For example, a strengthening dollar may make exports more expensive for U.S.-based manufacturers, potentially reducing their competitiveness abroad, while importers may experience price volatility due to exchange rate shifts. Such macroeconomic factors underscore the interconnectedness of the LABSA market with broader economic trends.
Overall, the pricing of Linear Alkylbenzene Sulfonic Acid is influenced by a web of interconnected factors that create a dynamic and often unpredictable market landscape. Raw material costs, demand and supply dynamics, competition, regulatory influences, and global economic conditions all play critical roles in shaping LABSA prices. Market participants must continuously monitor these variables to make informed decisions, minimize risks, and capitalize on opportunities within this essential segment of the surfactant industry. As the global demand for detergents and cleaning agents remains robust, the strategic management of pricing trends will continue to be of utmost importance for stakeholders in the LABSA market.
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#Linear Alkylbenzene Sulfonic Acid#Linear Alkylbenzene Sulfonic Acid Price#benzene Sulfonic Acid News#LinLinear Alkylbenzene Sulfonic Acid Price Monitor
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Linear Alkyl Benzene Sulfonic Acid (LABSA) is an anionic surfactant commonly used in the production of household and industrial cleaning products. It is derived from linear alkylbenzene (LAB) through sulfonation.
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Indian Phosphate IPO 2024: Allotment, Listing, and GMP Updates
Indian Phosphate Ltd., a prominent SME founded in 1998, is set to launch its IPO with a book-built issue of Rs.67.36 crore. As a leading producer of Linear Alkyl Benzene Sulfonic Acid (LABSA 90%) and fortified fertilizers like Single Super Phosphate (SSP) and Granules Single Super Phosphate (GSSP), Indian Phosphate plays a crucial role in the Indian chemical and fertilizer industry. Their manufacturing facility, located in Girwa,indian phosphate ltd Udaipur, Rajasthan, is strategically positioned near essential raw materials, ensuring efficient production.
The Indian Phosphate IPO will be open from August 26 to August 29, 2024, offering a fresh issue of 68.04 lac shares. With a price band of Rs.94 to Rs.99 per share, the IPO aims to raise funds for a new manufacturing plant, working capital needs, and general corporate purposes.
Key Financial Highlights
Total Revenue: Rs.71,757.81 lac (FY 2024)
Net Worth: Rs.8,099.06 lac (FY 2024)
EBITDA: Rs.2,303.42 lac (FY 2024)
PAT: Rs.1,210.21 lac (FY 2024)
IPO Details
Issue Size: 6,804,000 Shares (Rs.67.36 Cr)
Price Band: Rs.94 to Rs.99 per Share
IPO Dates: August 26 - August 29, 2024
Lot Size: 1200 Shares
Listing: NSE, SME
Conclusion
The Indian Phosphate IPO presents a unique opportunity for investors to participate in a company with a strong presence in the chemical and fertilizer sectors. Despite challenges such as negative cash flow in recent years, the strategic use of IPO proceeds and the company’s strong market position could make this an interesting investment option.
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Indian Phosphate IPO GMP, Review, Price, Allotment
Indian Phosphate IPO description – The company is primarily engaged in the production of Linear Alkyl Benzene Sulfonic Acid LABSA 90%, an anionic surfactant used in the manufacture of all types of detergents, cakes, toilet cleaners, and liquid detergents. Single Superphosphate fertilizers are manufactured and supplied in the form of powder and granules enriched with zinc and boron as per the…
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Linear Alkyl Benzene (LAB) Price Trend and Forecast - ChemAnalyst
The cost of Linear Alkyl Benzene (LAB) price underwent a gradual recovery in the North American region during the quarter ending in September 2023. Contributing factors to this positive trend included a slow but steady increase in the downstream sector and a rise in export orders. At the onset of the quarter, high inflation dampened consumer sentiments, leading to tightened financial conditions and a reduction in consumer spending in the downstream market. In contrast, the LAB prices in the American market were influenced by high global crude oil values, particularly evident in September 2023. A substantial increase in LAB prices was noted, driven by heightened export inquiries and the elevated global crude oil value. The prices of the raw material benzene remained elevated, continuously rising throughout the latter half of the quarter, thereby increasing production costs for the commodity. Meanwhile, the country's downstream surfactant market maintained a moderate pace, with domestic inquiries showing a slight increase towards the end of the quarter. Consequently, buoyed by these market dynamics, LAB prices effectively rose in September, subsequently impacting the prices of downstream derivatives like LABSA.
During the quarter ending in September 2023, the European market experienced a significant uptick in the price of Linear Alkyl Benzene (LAB), primarily propelled by heightened demand and an increase in feedstock Benzene prices. Additionally, the elevated costs of upstream Naphtha and Crude oil exerted a considerable impact on LAB production expenses, reinforcing the overall upward price trend for the quarter. The demand from the regional downstream surfactant industry remained steady. Notably, prevailing inflation and high-interest rates in the European region led to delays in production run rates, prompting manufacturers to adjust commodity pricing to maintain profitability. Moreover, the supply of LAB from European countries, particularly the Netherlands and Belgium, faced constraints, visibly impacting the price dynamics of the product. Eurostat data indicated a decline in European industrial activities in the preceding month, with the Industrial Production output in the Euro Area experiencing a -1.1% change in August 2023 compared to the previous month. This sentiment appeared to persist into September in the current quarter.
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#linearalkylbenzene#linearalkylbenzeneprice#linearalkylbenzenemarket#linearalkylbenzenenews#linearalkylbenzenedemand#linearalkylbenzenesupply#demandoflinearalkylbenzene
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Linear Alkylbenzene Sulfonic Acid (LABSA) Manufacturing Plant Setup
Linear Alkylbenzene Sulfonic Acid (LABSA) is a crucial and widely used industrial chemical with a significant impact on various sectors. It is primarily valued for its exceptional surfactant properties, making it a key ingredient in the formulation of various cleaning agents and detergents.
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We are dealing in the supply of varieties of chemicals for both domestic and industrial uses. Check on our list below and place your order.
LABSA
SLES
Potassium cyanide
Hydrogen Peroxide
Copper Sulphate
Xanthates
Sodium cyanide
Vinyl Acetate Monomer
Hydrated Lime
Activated carbon
Isopropyl Alcohol
Ethyl Alcohol
Soda ash
Caustic Soda
Hydrochloric Acid
Sodium bicarbonate
Sodium fluoride
Sucrose
Aluminium chlorohydrate
Sulfuric acid
Nitric acid
Ammonia
Methanol
Phosphoric acid
Propylene
Chlorine
Benzene
Ethylene
Nitrogen
Phenol
Sodium hydroxide
Acetone
Ammonium nitrate
Urea
Acrylonitrile
Silica
Sodium carbonate
Acetic anhydride.
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QAZI ENGINEERING PRIVATE LIMITED has come a long way since its inception as a National Engineering Company in 1985 in Kanpur. Over the years, we have been committed to serving the Soap and Detergent Industry in India and abroad, and our expertise has made us a trusted name in the industry. In 2008, we restructured our business as QAZI ENGINEERING PRIVATE LIMITED, and since then, we have been known for our exceptional quality and reliability in providing plant and machinery OEM and spare parts for Detergent Cake & Powder, Laundry & Toilet Soap, LABSA (Acid Slurry), Home & Personal Care products, and Pilot Plants.
Our success is based on our commitment to providing exceptional quality and reliability in every product and service we offer. We understand the importance of building strong relationships with our clients, and we are dedicated to customising our services to meet their specific requirements. Our expertise in plant and machinery OEM and spare parts for Detergent Cake Plant Detergent Powder Plant, Laundry & Toilet Soap, LABSA (Acid Slurry), Home & Personal Care products, and Pilot Plants has made us a trusted name in the industry, and we are committed to maintaining our reputation for excellence in the years to come.
We are dedicated to customising client requirements to create appropriate commercial value. Our focus is on reducing procurement and operating costs to build strong end-user relationships. We understand the importance of using state-of-the-art technology and equipment to produce high-quality products, and we specialise in Detergent Powder Plant, Detergent Powder Machine, Detergent Cake Machines, Beauty Soap Making Machines, Dish Wash Bar Machines, and Soap Plants.
Our Detergent Powder Plant is designed to produce high-quality detergent powder efficiently. The plant is equipped with the latest technology and advanced machinery to ensure a smooth and seamless production process. Our team of experts ensures that every step of the manufacturing process is closely monitored to maintain the highest quality standards.
Our Detergent Powder Machine is designed to offer efficient and cost-effective production of detergent powder. The machine is easy to operate and maintain, and it is designed to produce high-quality detergent powder that meets the specific requirements of our clients. The machine is equipped with advanced features that allow for automatic dosing, mixing, and packaging, making it an ideal choice for large-scale production.
We also specialise in Detergent Cake Machines. Our Detergent Cake Machines are designed to produce high-quality detergent cakes efficiently. The machines are easy to operate and maintain, and they are equipped with the latest technology to ensure a smooth and seamless production process.
We also offer Beauty Soap Machines that are designed to produce high-quality beauty soap. Our machines are equipped with the latest technology and advanced features that allow for the production of high-quality beauty soap efficiently. Our team of experts ensures that every step of the production process is closely monitored to maintain the highest quality standards.
Our Dish Wash Bar Machines are designed to produce high-quality dishwashing bars efficiently. The machines are easy to operate and maintain, and they are equipped with advanced features that allow for automatic dosing, mixing, and packaging. Our team of experts ensures that every step of the production process is closely monitored to maintain the highest quality standards.
Finally, our Soap Plants are designed to produce high-quality soap efficiently. Our Soap Plants are equipped with the latest technology and advanced features that allow for the production of high-quality soap efficiently. Our team of experts ensures that every step of the production process is closely monitored to maintain the highest quality standards.
#Detergent cake and powder plants#Detergent powder and cake plants#Soap and detergent plants#Toilet/laundry soap & washing detergent powder plants#Soap and detergent plants and machines#Qazi Engineering Pvt. Ltd
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LABSA 96 suppliers | LABSA | Chemstock
Choose the best Labsa 96 suppliers for your manufacturing industry:
LABSA 96 (Linear Alkylbenzene Sulfonic Acid) is the most significant and consumable component in a powder formulation and pure liquids. It is a surfactant used in washing detergents and liquid soaps. A surfactant tends to lower the liquid’s surface tension when dissolved in a liquid. LABSA, or Linear Alkyl Benzene Sulphonic Acid, is a popular surfactant due to its low cost, high performance, and environmental friendliness. Linear alkyl, Benzene, oxygen, sulphur, and citric acid comprise its constituent parts (LABSA).
Chemstock offers a varied list of chemical products that suffices the required percentage of chemicals for specific applications. The buyer must ensure the following properties and conditions before purchasing the Labsa 96 from the Chemical Suppliers. It includes properties, hazardous measures, and other general specifications of the product. To know about the detailed product specifications, visit the Chemstock website.
Properties:
LABSA is utilised as emulsifiers, additives, and lubricating oils and is water-soluble, non-volatile, and adsorbent.
Physical Properties
Appearance: White crystal powder, fine powder, white powder, colourless liquid, light yellow liquid, and yellow powder. Color- Brown liquid Melting Point- 10 degrees Celsius Boiling Point- 315 degree Celsius Specific Gravity- 1.2 Dissolubility- Solubility in water NFPA Ratings: Partially soluble; Reactivity: 0; Flammability: 0; Stability: Stable in ordinary conditions Buy Linear Alkyl Benzene Sulphonic Acid (LABSA) from the best Labsa 96 suppliers:
Chemstock is a significant provider of detergent and cleaning chemicals. Our supplies include Soda Ash, Caustic Soda, Hydrochloric Acid, SLES and LABSA 96. We want our customers to experience the best quality chemical and delivery service, thereby maintaining the quality of our operations.
Place the order from Chemstock products and avail the best from Labsa 96 suppliers.
Chemstock LABSA 96 Services:
If you are in the liquid soap manufacturing industry and looking for the best Labsa 96 suppliers, check out Chemstock products. The primary functions of LABSA 96 involve the following:
It serves as the raw material for:
Various detergents
Emulsions
Laundry powder
Dish wash cleaner in the daily chemical industry.
Cleaner agent
Detergent in the textile industry
Degrease agent in electroplate and leather manufacture.
De-inking agent in paper making
It produces alkyl benzene sulfonic acid sodium (LAS), which has decontamination, emulsification, dispersion, wetting, and foaming properties.
Purchase Laboratory Chemical Products from Chemstock– one of the leading Labsa 96 suppliers:
Chemstock is a well-known name in the chemical industry. They began the operation in Dammam, Saudi Arabia, in 1988, as with all new things. Since then, they have steadily and confidently expanded the business into new markets. They offer vivid range of products that includes:
Laboratory Chemicals
Laboratory Equipments
Glassware
Chemical Warehousing and Logistics
BOROSIL Laboratory
Laboratory Furnishings and Turnkey Solutions
ADVANTEC Filter Paper
Industrial Equipments and Chemicals
Reach us at our email and contact us at +971 4 5787667.
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List of Blorbos
A list of madcom blorbos that i’ve made so far as of 6/24/22
Update 7/14/22:
added Sushi, Preminger, Kaya, RadioA, Cosmo, Spica, and The Light
updated Sullivan and Reynolds
blorbo count: 41
AAHW
Maw
any pronouns, they/them preferred
a grunt mimic (forest cryptid that hunts grunts by pretending to be one) that tried to lure an agent into the forest only to be recruited by said agent.
Patchwork
they/them, he/him
a fused mag created in a magnification accident when a scientist and a rebel fell into a magnification chamber together. currently coming to terms with his existence and sorting through two sets of memories.
Tiger (Ashby “Ash” Hawkins)
she/her
a mag agent who trains new mags. before being magnified, she trained new recruits. very good at bending the rules and is friends with several civilians (and a few dissenters). explorer’s first friend in nevada.
Bandit Trio
Basil Marquez
he/him
one of the original fluffy grunts created by the nexus core. basil and his teammates work together to raid supply convoys and smuggle contraband into nexus city.
Mothra Sharpe
he/him, she/her
rejected the idea of joining the nexus core with his father. a skilled thief. he and basil are basically siblings.
Sunshine
sun/suns, they/them
a half-mag created by the aahw and released thanks to tiger. after joining (and being separated from) one of the weather agency’s cleanup crews, sunshine joined the bandit trio. sun crafts weapons for the trio.
Explorer Squad
Andy
he/him
an escaped asylum patient who joined explorer early on in her story. formed the explorer squad along with his boyfriend, double-o.
Buttercup
he/him, it/its
an edge abomination (void-tainted creature from the edge, which is basically a hole in reality) that explorer befriended. some time after they met she brought buttercup home to the explorer squad.
Double-O
he/him
a former aahw agent who dissented after andy and explorer saved his life. later on he was captured by the same scientists who brought explorer to nevada; they subjected double-o to experiments that turned him into a void creature like explorer.
Explorer
she/her
a void creature that originated from rain world. she was brought to nevada by a bunch of scientists led by dr anders; after escaping she eventually became a void creature. now travels all over nevada and is well-known as a cryptid.
Larissa
they/them
a romp who joined the explorer squad in search of textbooks and stuff so they could teach their younger siblings.
“Splora Babies”
Brownie (she/her), Ducky (she/her), Ember (he/him), Otto (he/him), Smokey (he/him)
prototypes created by the aahw to be soldiers with the same agility and lethality as explorer. after the babies were accidentally freed, they were found and adopted by explorer.
Kitt’s Labs
a science organization that basically gets commissioned to do genetics modifications.
Dr Athena Kitt
they/them, masc terms
one of the founders of "kitt’s labs.” kitt is basically a mad scientist and they love to create weird creatures.
Possum
(pronouns undecided)
a weird, fuzzy lizard child with a prehensile tail. they were created by kitt and are usually seen with them.
Ramona
she/her
a bug-cat-thing that can spit fire. was named and adopted by one of kitt’s assistants.
Sushi
(pronouns undecided)
one of kitt’s earlier experiments. they turned out unexpectedly long and have three pairs of hands.
Nexus Core
All of these characters are from the reign of void au.
Preminger
xe/xer
one of the scientists working on prototype. xe was exposed to too much void (ppe can only do so much) and became a void creature as a result.
Prototype
any pronouns, he/him preferred
one of sinclair’s (corntort oc) mag experiments. after outliving his original purpose he was used for experiments with void.
Roots
(pronouns undecided)
an agent that was tricked into becoming one of sinclair’s mag experiments. their magnification process was intentionally disrupted to cause mutations.
Runner A-17
he/him, it/its, they/them
a failed experiment; created to track, chase down, and kill dissenters. runner was discarded for being “too friendly” and they are currently kept in the basement of the science tower.
Slimeball
it/its
a failed experiment; a grunt made of slime that ended up being the wrong consistency. it is basically a sentient puddle of slime.
Vortex
fae/faer
formerly a scientist named Dr Jasmine who became one of sinclair’s mag experiments. right now fae is basically an oversized bat that can barely fly.
Reality Repair Agency
the reality repair agency (aka the “rra”) is an organization dedicated to maintaining the integrity of nevada’s reality. its members track down and repair rifts in reality as well as fight off anomalies.
Bezoar
(pronouns undecided)
a former aahw agent who survived being attacked and glitched by an anomaly.
The Regulator
he/him, they/them
an employer whose job is to regulate the effects that the improbability drives have on nevada. regulator established and runs the rra.
SQ
Kaya
she/her
a werewolf and radi’s partner.
RadioA
xe/xem
a vampire and kaya’s partner.
The Forest
the forest (created by myself and @wanderer-of-the-wastelands) is a very spooky, mazelike forest that basically turns people into cryptids.
Centaur Grunt??
(pronouns undecided)
i havent figured out much about this one aside from how they are some sort of centaur and they were turned into a cryptid by the forest. also they can spit acid
Ferro
it/its
a void creature (not the same species as explorer) that inhabits the forest. it splits itself into pieces and uses those pieces to hunt its prey.
Slopes
he/him, it/its
a former aahw agent who became a cryptid after getting lost in the forest. basically nevada’s version of the chesire cat.
Unaffiliated/Unsorted
Avalanche
they/them, it/its
an attempt by the aahw to create an immortal mag that heals using ice. avalanche was released after they ended up being too much of a hassle to care for. now they wander the frozen parts of nevada.
Cosmo
ne/nem/nir, star/stars
a moth grunt who lives in an underground city. ne goes to the surface to sell homemade lamps and decorations.
Dr Tybalt Anders
he/him
stinky. runs a highly illegal lab that uses stolen equipment. he’s responsible for bringing explorer to nevada. even after his lab was busted, he is still at large.
Horus
he/him
a former atp engineer who dissented after surviving a raid. he lives on his own with his adopted child, tabby. still friends with tiger after all these years.
Kronos
(pronouns undecided)
an atp engineer who was captured (by anders?) and, long story short, turned into a rain world lizard and abandoned. i’m still figuring out his story.
David Reynolds
they/them
a former doctor and sullivan’s partner.
Spica
(pronouns undecided)
a moth grunt based on pseudodirphia moths. one of cosmo’s family members.
Sullivan
he/him
a bounty hunter and reynolds’ partner. currently struggling to fend off a strange shadow disease.
Tabby
they/them
a very rambunctious baby fluffy grunt. they were adopted by horus.
The Light
(pronouns undecided)
a headless ghost that eats souls.
Weather Agency
an agency dedicated to protecting nevada’s residents from extreme weather. its jobs include: researching weather patterns, warning citizens, search-and-rescue, and providing aid.
Current
she/her, scale/scales
a catfish-like aquatic grunt who was created to help with search-and-rescue. she isn’t old enough to go on missions yet.
Robert “Bobert” Elmo
he/him
a ham radio operator who has his own radio show. he broadcasts emergency alerts for the weather agency. formerly involved in nevada’s space program.
#raintailed rambles#madness combat#madcom#madness combat oc#i am not gonna tag all of these guys#long post
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#labsa suppliers#Use of Labsa#Use of Acid Slurry#Labsa in detergent manufacturing#Acid Slurry in detergent manufacturing
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Linear Alkylbenzene Sulfonic Acid Price | Prices | Pricing | News | Database | Chart
Linear Alkylbenzene Sulfonic Acid (LABSA) is a key ingredient in the manufacturing of a wide range of cleaning and detergent products, making its pricing an essential factor in various industries. LABSA is primarily used as a surfactant, and its price can be influenced by numerous factors, such as raw material costs, supply and demand dynamics, market trends, and global economic conditions. Given its extensive application in the production of household and industrial cleaning agents, any fluctuation in the price of LABSA can have far-reaching consequences for manufacturers and consumers alike.
One of the primary determinants of LABSA pricing is the cost of its raw materials. LABSA is derived from linear alkylbenzene (LAB), which, in turn, is produced from benzene and linear paraffins. The prices of these petrochemical derivatives can be quite volatile, as they are tied to the global oil market. Crude oil prices are subject to a variety of factors, including geopolitical tensions, OPEC decisions, and changes in production levels from major oil-producing countries. When oil prices rise, the cost of producing LAB increases, leading to a corresponding increase in LABSA prices. Conversely, a decline in oil prices can lead to a decrease in LABSA prices. Therefore, understanding the fluctuations in the crude oil market is crucial for predicting trends in LABSA pricing.
Get Real Time Prices for Linear Alkylbenzene Sulfonic Acid: https://www.chemanalyst.com/Pricing-data/linear-alkylbenzene-sulfonic-acid-labsa-15
In addition to raw material costs, the supply and demand balance for LABSA plays a significant role in determining its market price. LABSA is widely used in the production of detergents, which are essential in both household and industrial cleaning. As demand for cleaning products increases, particularly during times of heightened hygiene awareness, such as during the COVID-19 pandemic, LABSA prices tend to rise due to the heightened demand. Conversely, when demand for detergents falls, for instance, during economic downturns or recessions, LABSA prices may decrease. The supply chain for LABSA is also critical; disruptions caused by logistical issues, natural disasters, or political instability can lead to reduced availability, further driving up prices.
Geographical factors can also influence the price of LABSA. Different regions have varying levels of access to the raw materials needed for LAB production, as well as different production capacities for LABSA itself. Regions with abundant resources and well-established production infrastructure may experience lower LABSA prices due to reduced production costs and greater economies of scale. On the other hand, regions that rely heavily on imported raw materials or face supply chain challenges may see higher prices for LABSA. Additionally, tariffs and trade policies can impact the cost of importing LABSA, further influencing regional price variations.
Another factor contributing to LABSA pricing is the regulatory environment. Environmental regulations can affect the production process of LABSA, as well as its raw materials. For example, stringent regulations on emissions from petrochemical plants or restrictions on the use of certain chemicals can increase the cost of production, leading to higher LABSA prices. Conversely, deregulation or the introduction of more efficient production technologies can lower production costs, thus reducing LABSA prices. Regulatory changes in major producing countries, such as China, India, or the United States, can have a particularly significant impact on global prices.
Global economic conditions also have a considerable effect on LABSA prices. During periods of economic growth, industrial production tends to increase, which boosts the demand for detergents and, consequently, LABSA. On the other hand, during economic slowdowns or recessions, industrial activity declines, reducing demand for detergents and lowering LABSA prices. Currency exchange rates can also affect LABSA prices, particularly in countries that rely on imports for either LABSA or its raw materials. A weaker currency can make imports more expensive, driving up local prices for LABSA, while a stronger currency can have the opposite effect.
Technological advancements in the production of LABSA can also influence its price. Innovations that lead to more efficient production methods can lower the overall cost of manufacturing LABSA, which can result in lower prices for end users. For instance, improvements in catalyst technologies or the development of more energy-efficient processes can reduce energy consumption and raw material waste, thereby lowering production costs. As companies invest in research and development to optimize their production processes, these cost savings may eventually be passed on to consumers in the form of lower LABSA prices.
Competition within the LABSA market is another important consideration when analyzing price trends. The presence of multiple manufacturers in the market can lead to price competition, which may drive down prices as companies seek to gain market share. However, if there are only a few major producers dominating the market, they may have greater control over pricing, potentially leading to higher prices. Mergers and acquisitions within the industry can also impact competition and pricing, as consolidation can reduce the number of competitors and increase the market power of the remaining players.
Finally, it is essential to consider the role of seasonal demand in influencing LABSA prices. Demand for cleaning products, and by extension LABSA, often fluctuates depending on the time of year. For example, the demand for household cleaning products typically rises during the spring cleaning season and around major holidays, leading to temporary increases in LABSA prices. Similarly, demand for industrial cleaning agents may be higher during certain periods, such as during peak production seasons in industries like agriculture or manufacturing. These seasonal fluctuations can contribute to short-term price volatility in the LABSA market.
In summary, LABSA prices are influenced by a complex interplay of factors, including raw material costs, supply and demand dynamics, geographical considerations, regulatory changes, global economic conditions, technological advancements, competition, and seasonal demand patterns. Manufacturers, distributors, and consumers of LABSA must closely monitor these factors to anticipate price movements and make informed decisions. As the global economy continues to evolve and the demand for cleaning products remains robust, LABSA prices are likely to experience ongoing fluctuations, reflecting the ever-changing conditions in the global marketplace. Understanding the key drivers behind these price changes is crucial for anyone involved in the production, distribution, or consumption of LABSA-based products.
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New Post has been published on https://primorcoin.com/350-new-scam-tokens-were-created-every-day-this-year-solidus-labs/
350 new 'scam tokens' were created every day this year: Solidus Labs
More than 350 fraudulent cryptocurrency tokens were created per day this year, defrauding millions of investors, according to blockchain risk monitoring firm Solidus Labs.
From the start of the year to Dec. 1, 117,629 “scam tokens” were deployed, according to Solidus’ 2022 “Rug Pull Report.” That’s a 41% increase from the nearly 83,400 scam tokens that Solidus detected in 2021.
The report claims that BNB Chain harbors the greatest number of scam tokens, with 12% of all BEP-20 tokens being fraudulent.
The Ethereum network was second, with a purported 8% of ERC-20 tokens alleged to be scams.
Solidus claims that 2022 is the biggest year on record for fraudulent crypto-tokens. Image: Solidus Labs
A rug pull is a type of crypto exit scam where an individual or team creates a token and pumps up its price before extracting all the value from the project, abandoning it as the token price plummets to zero.
Almost 2 million investors have lost money to these scams since September 2020, a greater numberthan the estimated 1.8 million combined creditors affected by the bankruptcies of crypto exchanges and lending platforms FTX, Celsius, and Voyager.
FTX, Celsius, BlockFi and Voyager bankruptcies are estimated to affect over 2.3 million users combined. Image: Solidus Labs
The most popular type of scam token was a “honeypot,” which is a token smart contract that doesn’t allow buyers to resell.
Solidus said the most prolific “honeypot” successfully executed in 2022 was the $3.3 million Squid Game (SQUID) token scam, which grew 45,000% in a few days as investors bought the hype but were unable to sell, ending with the anonymous founders apparently running off with investor funds.
Centralized exchanges (CEXs) are also affected by rug pulls as many behind these malicious tokens use them to fund their fraudulent project and cash out the ill-gotten gains.
Solidus claims around $11 billion worth of Ether (ETH) pilfered from scam tokens flowed through 153 CEXs since September 2020, with the majority of the exchanges being overseen by United States regulators.
Related: 5 key takeaways from Huobi 2022 crypto industry report
Nearly $4 billion dollars flowed to U.S. CEXs in the analyzed time frame which was nearly double that of the second-most exposed CEX jurisdiction: The Bahamas.
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#CryptoExchange #DEFI #DEFINews #Huobi #NFT #NFTNews
#CryptoExchange#DEFI#DEFINews#Huobi#NFT#NFTNews#Crypto Exchange#Cryptocurrency Exchange#CryptoPress#decentralized exchange#NFT News
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Agricultural Herbicides LABSA Market Market Size, Market Industry, Market Share, Market Growth, Market Segmentation Market Revenue Market Forecast 2030
Agricultural Herbicides LABSA Market 2022-2030
The Agricultural Herbicides LABSA Market report is latest report published by Fusion Market Research which provides comprehensive information, overview of the demands and describe Impact of Covid-19 on the market during the forecast period 2022–2030.
At the beginning of a recently published report on the global Agricultural Herbicides LABSA Market, extensive analysis of the industry has been done with an insightful explanation. The overview has explained the potential of the market and the role of key players that have been portrayed in the information that revealed the applications and manufacturing technology required for the growth of the global Agricultural Herbicides LABSA Market.
Request Free Sample Report @ https://www.fusionmarketresearch.com/sample_request/Agricultural-Herbicides-LABSA-Market/22731
The report offers detailed coverage of Agricultural Herbicides LABSA industry and main market trends with impact of coronavirus. The market research includes historical and forecast market data, demand, application details, price trends, and company shares of the leading Agricultural Herbicides LABSA by geography. The report splits the market size, by volume and value, on the basis of application type and geography.
At the same time, we classify Agricultural Herbicides LABSA according to the type, application by geography. More importantly, the report includes major countries market based on the type and application. Finally, the report provides detailed profile and data information analysis of leading Agricultural Herbicides LABSA company.
Impact of COVID-19 on
With the starting of year 2022, it has witnessed that governments of various nations have taken number of measures to relax covid restrictions which is resulting a positive impact on the for agricultural adjuvants and is anticipated to witness a significant increment in the upcoming years till 2030
Leading players of Agricultural Herbicides LABSA including: Stepan CEPSA Sasol KAPACHIM SKÂ
Agricultural Herbicides LABSA Market split by Type, can be divided into: .96Â .9Â
Agricultural Herbicides LABSA Market split by Application, can be divided into: Crops Grassland�� OthersÂ
Market segment by Region/Country including: North America (United States, Canada and Mexico) Europe (Germany, UK, France, Italy, Russia and Spain etc.) Asia-Pacific (China, Japan, Korea, India, Australia and Southeast Asia etc.) South America (Brazil, Argentina and Colombia etc.) Middle East & Africa (South Africa, UAE and Saudi Arabia etc.)
Further key aspects of the report indicate that: Chapter 1: Research Scope: Product Definition, Type, End-Use & Methodology Chapter 2: Global Industry Summary Chapter 3: Market Dynamics Chapter 4: Global Market Segmentation by region, type and End-Use Chapter 5: North America Market Segmentation by region, type and End-Use Chapter 6: Europe Market Segmentation by region, type and End-Use Chapter 7: Asia-Pacific Market Segmentation by region, type and End-Use Chapter 8: South America Market Segmentation by region, type and End-Use Chapter 9: Middle East and Africa Market Segmentation by region, type and End-Use. Chapter 10: Market Competition by Companies Chapter 11: Market forecast and environment forecast. Chapter 12: Industry Summary.
What our report offers: – Market share assessments for the regional and country-level segments – Strategic recommendations for the new entrants – Covers Market data for the years 2020, 2021, 2022, 2025, and 2030 – Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations) – Strategic recommendations in key business segments based on the market estimations – Competitive landscaping mapping the key common trends – Company profiling with detailed strategies, financials, and recent developments – Supply chain trends mapping the latest technological advancements
Free Customization Offerings: All the customers of this report will be entitled to receive one of the following free customization options: • Company Profiling o Comprehensive profiling of additional market players (up to 3) o SWOT Analysis of key players (up to 3) • Regional Segmentation o Market estimations, Forecasts and CAGR of any prominent country as per the client’s interest (Note: Depends on feasibility check) • Competitive Benchmarking o Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances
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SULPHURIC ACID PLANT AUTOMATION WITH MESSUNG'S NX-ERA SERIES
Sulfuric acid is the largest-volume industrial chemical produced in the world. Concentrated sulfuric acid (93-98 %) is used in the manufacture of fertilizers, explosives, dyes, metal and petroleum products.
The production of sulphuric acid is a delicate process that must be completed in a safe and efficient manner. Automation needs to be carefully designed to control the different stages of the process as per stringent parameters, and to provide continuous monitoring for better management of the plant.
THE CUSTOMER:
Our customer is an agri-input Company focused on manufacturing, distribution and retailing of a wide range of crop yield enhancing and protection products.Their product portfolio includes crop protection, crop nutrients, seeds, veterinary feed supplements. Further, in order to secure supply of sulphuric acid, one of their key ingredients, they ventured into manufacturing of sulphuric acid. They produce sulphuric acid as well as other sulphuric acid-based chemicals like LABSA, DMS and Oleum that have wider applications across industries like agrochemicals, veterinary feed supplements, pharmaceuticals, synthetic detergents, etc.
KEY FEATURES OF THE SULPHURIC ACID MANUFACTURING PLANT:
The raw material for sulphuric acid manufacture is clean SO2 gas. It comes from (i) burning molten by-product sulphur; (ii) roasting or smelting metal sulphide concentrates, and (iii) decomposing contaminated organic chemical process sulphuric acid catalyst.
KEY SOLUTION GOALS:
1. To produce Sulphuric Acid by controlling the boiler pressure, steam flow and acid level in the process tanks using
· NX-ERA NX3004 PLC
· NX-ERA JET I/O Modules
· 1500 Tags SCADA
2. To develop a logic to measure Pressures, Temperatures, Levels, Flow and SO2 Analysers at various stages of process.
3. To control the pumps and monitor the RUN/TRIP status
4. Also, to control the Steam pressure and drum level of a boiler PLC, SO2 concentration and Tank temperature using PID controllers in PLC.
5. To measure flow and calculate the inlet and outlet steam flow
6. To develop a logic to raise alarms, generate reports and trends in SCADA.
THE SOLUTION:
Messung engineers studied the plant and its requirements, and came up with a cost-efficient solution consisting of:
· 2 nos. of SCADA system
· MODBUS RTU communication for Thermocouple Sensors
· PID controllers 10 nos.
POWERING THE SYSTEM: NX-ERA JET PLC
The Programmable Logic Controller utilised for this sulphuric acid plant was the NX-ERA JET PLC. It is a high-performance CPU for medium-to-small-size Machine and Process applications. JET can be also combined with the main products of the series, such as CPUs, backplane racks, communication and fieldbus modules.
Powerful Features
NX-ERA Jet turns into a selection of input and output modules where requirements such as hot swapping and advanced functionalities such as OTD (One Touch Diag) and EPS (Easy Plug System) are no longer necessary. The result is a group of compact and economical modules capable of providing highly competitive solutions, with no loss of electrical characteristics such as isolation, performance and accuracy.
· Integrated power supply & I/O points
· Reliable and compact I/O modules
· Embedded I/Os - 14 DI/10 DO
· Encoder interface
· Stepper motor interface
· Multiprotocol support
· Expandable up to 184 I/O points
· For more flexibility and agility in the development of applications, NX-ERA Jet counts on WEBSERVER
· Offers high speed counters and PTO for simple motion applications
BENEFITS FOR THE CUSTOMER
SCADA systems (2 nos): enables the customer to obtain information leading to better process traceability, and storage of performance data which is essential to correct quality and process issues. SCADA is programmed to raise alarms, generate reports and trends.
PID Controllers (10 nos): automatically regulate process parameters such as boiler pressure, steam flow and acid level, etc., and keep the actual output as close to the target/setpoint output as possible.
MODBUS RTU Communication for Thermocouple Sensors:
· Standard Modbus-RTU protocol with high-speed RS-485 communication
· Thermocouple linearization and sensor break detection ensure reliable measurements
· Self-calibration lowers maintenance costs by reducing periodic manual calibration checks
· Software Watchdog timers provide a configurable failsafe output state for use when host I/O communication is lost
· Self-diagnostics monitor microcontroller activity to detect operational failures (lock-up) and execute a reset to restore communication.
Programming and configuration environment based on IEC 61131-3 standard: the global standard in programming languages for programmable controllers. The software has resources for all stages of the life cycle of an automation and process control project, ensuring efficiency throughout the development, commissioning and maintenance.
System supplied at affordable price
THE OUTCOME:
Production of sulphuric acid has increased since the automation system was installed. The client is able to produce high-quality sulphuric acid with almost negligible impurities. Also, the client is able to access the status of different parts and processes of the plant on a single screen so he can view and monitor the whole process easily. The client can also view the history and trends of all parameters so as to make improvements, pre-empt problems, and ensure safe, smooth, reliable and profitable operations consistently.
If you're looking for best-in-class PLCs and automation system components to build a future-ready system, who better than Messung, leading Top PLC manufacturer in India. Messung Industrial Automation & Control division also offers PLC panels for remote control, SCADA applications, VFD drives and servo drives.
Messung’s programmable controllers, Remote I/Os, HMIs and SCADA solutions have enabled industries, OEMs and automation system integrators achieve top-of-the-line performance and efficiencies. Messung’s Process Automation, Servo & Motion Control Automation, and General Purpose Automation solutions have proven themselves across the gamut of industries with their flexibility, efficiency and long service life.
#SCADA system#Programmable Logic Controller#NX-ERA JET PLC#IEC 61131-3 standard#PLCs#PLC manufacturer in India#PLC panels#remote control#scada applications#vfd drives#servo drives#programmable controllers#Remote I/Os#SCADA solutions#Process Automation#Servo & Motion Control Automation#General Purpose Automation solutions
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