#benzaldehyde structure
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Hello again Mr. Apollo! I’m submitting my fun fact early today because I’m probably gonna be preoccupied with birthday shenanigans later! 🥳 You don’t gotta answer until later if you don’t want, I mean technically you don’t gotta answer at all but like. You get what I mean. Anywho!
Your cool bug fact today is that there’s exactly one oxygen atom separating pseudoephedrine (the active ingredient in Sudafed) from methamphetamine (…meth). The molecular structures of the two are EXTREMELY similar. On a somewhat related note, many organic molecules can be transformed into seemingly unrelated compounds, such as toluene (paint thinner) and benzaldehyde (artificial cherry flavor), in which two hydrogen atoms are swapped out for one oxygen. Yay chemistry! :D
~🐢
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"...'yay, chemistry' is right. It's, I mean... It sure is complicated, I'll give it that."
(And I'm happy people much smarter than me are dealing with actually figuring it out...)
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"But, uh... congrats, to whoever's having the birthday. I don't care too much for mine, but I know people really get into that stuff."
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i-should-have-studied · 1 month ago
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Chem Practical Viva Question
Give one example each for acidic, basic, and neutral organic compounds. - Acidic: Phenol - Basic: Aniline - Neutral: Benzaldehyde
What do you mean by 5% HCl solution? - 5ml HCl + 95ml distilled water
Which type of compounds are water soluble? - Polar compounds and organic compounds with low molecular weights.
Which type of compounds are ether soluble? - Non-polar compounds
A compound soluble in 5% HCl solution is ___ in nature. - Basic
A compound soluble in 5% NaOH and 5% NaHCO3 can be a ---. - Carboxylic acid
A compound which is soluble in 5% NaOH, but not 5% NaHCO3 can be a ___. - Phenol
A compound which does not dissolve in 5% HCl, 5% NaOH, and 5% NaHCO3 is a ___ compound. - Neutral
The compound which chars in concentrated H2SO4 is a ___. - Carbohydrate
Ether is a ___ solvent. - Non-polar.
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A compound in which -OH group is directly attached to a benzene ring - Phenol
Phenols are weakly ___ in nature - Acidic
Phenols are soluble in 5% ___ - NaOH
The characteristic identification test for phenols is ___ - Neutral FeCL3 Test
The product formed by the reaction of phenol with phthalimide is _ - Phenolphthalein
In the preparation of azo-dye, the reaction involved during the addition of phenol to benzene diazonium chloride is ___ - Coupling
The -OH group in phenol acts as an ___ directing group - o,p-
The brominating agent used in the preparation of bromo derivative is ___ - Br2/Acetic Acid
The product of bromo derivative from phenol is ___. - 2,4,6-Tribromophenol.
Structure of β-naphthol:
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Amines are ___ in nature - Basic
Amines are soluble in 5% ___ solution - HCl
Among amines, azo-dye test is given by ___ amines. - Primary aromatic
The two reactions involved in the azo-dye test are ___ and ___ - Diazotization and Coupling
The product formed when aniline undergoes acetylation is ___ - Acetanilide
The acetylating agen used in the preparation of acetyl derivative is ___. - Acetic anhydride.
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What are carbonyl compounds? - Compounds which have a carbonyl group.
Carbonyl compounds are ___ in nature - Neutral
The reagent used in the identification of carbonyl compounds is - 2,4-DNP
Expand 2,4-DNP. - 2,4-Dinitrophenyl hydrazine
Chemical name of Tollen's reagent is ___ - Ammonical silver nitrate.
Fehling's A is composed of ___ - CuSO4
Fehling's B is composed of ___ - Sodium potassium tartarate
Schiff's reagent is ___ - P-Rosaniline hydrochloride
Silver mirror is formed by ___ - Aldehyde
The red color precipitate formed during Fehling's test is ___ - Cuprous oxide (Cu2O)
Give an example of aliphatic aldehyde - Acetaldehyde
Give an example of aromatic aldehyde - Benzaldehyde
Acetophenone is an ___ - Aromatic ketone
Acetone is an example of ___ - Aliphatic ketone
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What are carbohydrates? - Polyhydroxy aldehydes and ketones.
What are reducing sugars? - Sugars which reduce Tollen's reagent and Fehling's solution.
Give an example of an aldohexose - glucose
Carbohydrates undergo ___ in the presence of sulphuric acid. - Charring
Glucose is soluble in water because ___ - of the hydrogen bonds that form between the water molecules and the OH groups.
Why are carbohydrates coluble in 5% HCl, 5% NaOH, and 5% NaHCO3 solutions? - Because these solutions contain 95% water.
Molisch's reagent is composed of ___ - 10% α-naphthol solution
Glucose does not restore the pink color of Schiff's reagent. - True
Fructose is a ketohexose, but still it can reduce Fehling's solution and Tollen's reagent. - True
The reagent used in osazone formation is ___ - Phenyl hydrozene
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What is acetylation? - The replacement of hydrogen with an acetyl group
Give two examples of acetylating agents - Acetic anhydride and acetyl chloride.
Which compounds can be acetylates? - The compounds having an active hydrogen atom such as alcohols, phenols, and amines (when a hydrogen atom is attacked to more electonegative atoms like oxygen or nitrogen.)
What is the use of acetylation in this reaction? - Acetylation is done to protect the amino groups, when aniline has to be treated with strong acids.
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Define oxidation - The addition of oxygen, the removal of hydrogen, and or the loss of electrons.
What is the starting material used in this preparation? - Benzaldehyde.
Mention two oxidizing agents? - KMnO4 and K2Cr2O7.
What is the role of a water condenser? - It condenses the vapors and prevents the wastage of starting materials.
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Define esterification - The reaction between a carboxylic acid and an alcohol in the presence of Conc. H2SO4 to give ester is called esterification.
What is the role of sulphuric acid in this reaction? - Catalyst and dehydrating agent.
How is a liquid separated from the liquid reaction mixture? - By using a separation funnel.
Why does the ester form the upper later during separation? - Due to its lower density.
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credenceresearchdotblog · 4 months ago
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The global market for 3-hydroxybenzaldehyde reagents is projected to expand at a compound annual growth rate (CAGR) of 3.93% over the next five years. The 3-Hydroxybenzaldehyde reagent market has experienced significant growth in recent years, driven by its increasing applications across various industries. This organic compound, characterized by the presence of a hydroxyl group attached to a benzaldehyde structure, plays a crucial role in chemical synthesis, pharmaceuticals, and the fragrance industry. The market for 3-Hydroxybenzaldehyde reagents is poised for further expansion, fueled by advancements in chemical research and the growing demand for high-quality reagents in specialized applications.
Browse the full report at  https://www.credenceresearch.com/report/3-hydroxybenzaldehyde-reagent-market
Market Drivers and Trends
One of the primary drivers of the 3-Hydroxybenzaldehyde reagent market is its extensive use in the pharmaceutical industry. The compound serves as a key intermediate in the synthesis of various pharmaceuticals, including anti-inflammatory and antimicrobial agents. The rising prevalence of chronic diseases and the ongoing research and development activities in the pharmaceutical sector have led to an increased demand for 3-Hydroxybenzaldehyde reagents. Additionally, the compound's applications in the production of fragrances and flavorings have contributed to market growth. The growing consumer preference for natural and aromatic products has driven the demand for high-quality fragrances, where 3-Hydroxybenzaldehyde serves as a crucial ingredient.
Another significant trend in the market is the increasing focus on sustainable and environmentally friendly chemical processes. Manufacturers are investing in research and development to develop greener synthesis methods for 3-Hydroxybenzaldehyde. These eco-friendly approaches not only reduce the environmental impact but also enhance the overall efficiency and cost-effectiveness of production. The adoption of such sustainable practices is expected to drive market growth and attract environmentally conscious consumers and industries.
Geographical Analysis
The 3-Hydroxybenzaldehyde reagent market is geographically segmented into North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa. Among these regions, Asia Pacific holds the largest market share, driven by the presence of major chemical and pharmaceutical industries in countries like China, India, and Japan. The region's robust industrial infrastructure, coupled with favorable government policies supporting chemical manufacturing, has contributed to the growth of the market. Moreover, the increasing demand for pharmaceuticals and fragrances in Asia Pacific further fuels the market's expansion.
North America and Europe are also significant markets for 3-Hydroxybenzaldehyde reagents, owing to the well-established pharmaceutical and fragrance industries in these regions. The presence of key market players and continuous advancements in chemical research and development contribute to market growth in these regions. Additionally, the increasing adoption of sustainable practices and stringent environmental regulations in North America and Europe drive the demand for eco-friendly 3-Hydroxybenzaldehyde reagents.
Key Players and Competitive Landscape
The 3-Hydroxybenzaldehyde reagent market is highly competitive, with several key players actively engaged in research, development, and production. Prominent companies operating in the market include Sigma-Aldrich Corporation, Tokyo Chemical Industry Co., Ltd., Merck KGaA, Alfa Aesar, and Thermo Fisher Scientific Inc. These companies focus on product innovation, quality enhancement, and strategic collaborations to maintain their competitive edge in the market.
Sigma-Aldrich Corporation, a subsidiary of Merck KGaA, is a leading player in the market, offering a wide range of 3-Hydroxybenzaldehyde reagents with high purity and quality. The company's extensive distribution network and strong presence in key regions contribute to its market leadership. Tokyo Chemical Industry Co., Ltd. (TCI) is another major player known for its high-quality chemical reagents and comprehensive product portfolio. TCI's commitment to research and development and its customer-centric approach have positioned it as a trusted supplier in the market.
Future Outlook
The future of the 3-Hydroxybenzaldehyde reagent market looks promising, with several factors driving its growth. The increasing demand for pharmaceuticals, fragrances, and sustainable chemical processes is expected to propel market expansion. Moreover, ongoing research and development activities aimed at improving the synthesis and applications of 3-Hydroxybenzaldehyde reagents will create new opportunities for market players. The adoption of advanced technologies and innovative production methods will further enhance the efficiency and quality of the reagents, meeting the evolving needs of various industries.
Key Players
Sigma-Aldrich Corporation (now part of the Merck Group)
TCI Chemicals
Alfa Aesar (Thermo Fisher Scientific)
Oakwood Chemical
Toronto Research Chemicals (TRC)
Chemsky (Shanghai) International Co., Ltd.
Apollo Scientific
Others
Segmentation by End User Industry
Pharmaceuticals
Agrochemicals
Polymers and plastics
Dyes and Pigments
Food and Beverages
Segmentation by Resolution
Technical Grade 3-HBA
Pharmaceutical Grade 3-HBA
Electronic Grade 3-HBA
Food Grade 3-HBA
Segmentation by application
Pharmaceutical Intermediates
Agrochemical Intermediates
Polymer Additives
Fragrance Ingredients
Dye Intermediates
Chemical Reagent
Segmentation by Delivery Mode
Bulk shipments
Drums
Bags
Customized packaging:
Road/Rail transport
Air transport
Browse the full report at  https://www.credenceresearch.com/report/3-hydroxybenzaldehyde-reagent-market
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meddoctorfree · 7 months ago
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Unraveling Pseudoephedrine: Composition, Synthesis, and Flexibility
Pseudoephedrine, famous for its decongestant properties, has attracted attention for its chemical structure and adaptable applications. This article provides a concise overview of its composition, synthesis, and diverse uses beyond nasal relief.
Introduction: Pseudoephedrine, classified as a sympathomimetic amine, is renowned for its efficacy in alleviating nasal congestion. However, its chemical composition and wide-ranging applications extend beyond this primary function.
Chemical Composition and Structure: Pseudoephedrine, a chiral compound, shares structural similarities with ephedrine but possesses distinct pharmacological effects. Its stereochemistry, centered on a carbon atom adjacent to the amino group, yields two enantiomers, with the (+) form exhibiting pharmacological activity.
Synthesis and Production: Synthesis of pseudoephedrine involves chemical transformations starting from benzaldehyde or phenylacetic acid, although regulatory constraints have tightened due to concerns about illicit diversion.
Applications: Pseudoephedrine finds utility across pharmaceuticals, chemical intermediates, organic synthesis, and research. While primarily used as a decongestant, it also serves as chiral auxiliaries in asymmetric synthesis and is explored for potential therapeutic applications beyond nasal congestion.
Conclusion: Pseudoephedrine's versatility renders it a subject of enduring interest. As research unfolds, its pharmacological potential and industrial adaptability may expand further, opening up new avenues for scientific exploration and innovation.
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paulinakastro · 10 months ago
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Exploring p2np: Structure and Diverse Applications
This article delves into the versatility of p2np (1-Phenyl-2-Nitropropene), highlighting its chemical composition and wide-ranging uses. With significance in pharmaceuticals, organic synthesis, and industrial sectors, p2np stands as a catalyst for scientific advancement.
Introduction: p2np, with its molecular formula C9H9NO2, plays a pivotal role as an intermediate in synthesis processes. This article provides an overview of its structure, synthesis methods, and applications across scientific disciplines.
Chemical Composition and Structure: p2np, characterized by its yellowish appearance and distinct odor, consists of a phenyl group attached to a 2-nitropropene moiety, lending it versatility in chemical reactions.
Synthesis Methods: Synthesizing p2np involves various methods, commonly the condensation reaction between benzaldehyde and nitroethane under controlled conditions for optimal yield and purity.
Applications of p2np:
Pharmaceutical Synthesis: p2np serves as a vital precursor in pharmaceutical synthesis, enabling the creation of therapeutic compounds and psychoactive substances.
Organic Chemistry: Its reactivity makes p2np essential in organic synthesis, facilitating the production of diverse aromatic and nitrogen-containing compounds.
Industrial Applications: p2np finds utility in industries such as perfumery and dye synthesis, contributing to the development of fragrances and specialty chemicals.
Conclusion: In summary, p2np demonstrates versatility across pharmaceuticals, organic synthesis, and industries. Its unique properties fuel scientific exploration and innovation, promising further advancements in various fields. Continued research into synthesis techniques and applications will unleash the full potential of p2np.
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chemicalscience-crimson · 2 years ago
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Nimesulide Based 1,2,4,5-Tetra Substituted Imidazole Derivative: Synthesis and Characterisation_Crimson Publishers
Chemical Abstract
Nimesulide a preferential ‘‘cyclooxygenase-2 inhibitor’’ is one of the well-known non-steroidal antiinflammatory drugs that has been utilized to treat pain and other inflammatory diseases. Nimesulide was withdrawn from the market due to its hepatotoxicity which could be due to the presence of nitro group. Imidazoles represent an important class of bioactive molecules that shows a wide range of pharmacological activities besides anti-inflammatory activity. In our strategy to develop safer and potential anti-inflammatory molecules, we have decided to combine some of the structural features of nimesulide and imidazole in a single molecule. We have described the design and synthesis of nimesulide based 1,2,4,5-tetra substituted imidazole of potential biological significance via chemical modifications of a commonly used anti-inflammatory agent nimesulide. This derivative was prepared from nimesulide via a two-step process involving regio selective reduction of nimesulide followed by hetero cyclisation of reduced nimesulide in very 81 % yield. The title compound nimesulide based 1,2,4,5-tetra substituted imidazole was synthesized in very good yield by reaction of benzil, benzaldehyde, ammonium acetate, and N-(4-amino-2-phenoxy phenyl) methane sulphonamide in acetic acid using multi-component strategy and molecular modification. The structure of the synthesized compound was confirmed by IR and H1 NMR spectral analysis.
Read more about this article: https://crimsonpublishers.com/acsr/fulltext/ACSR.000547.php
For more articles in our journal: https://crimsonpublishers.com/acsr/
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lookchem · 2 years ago
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75-90-1 Hemiaminals of trifluoroacetaldehyde, as trifluoromethylating agents
Hemiaminals of trifluoroacetaldehyde are new trifluoromethylating agents. These reagents are synthesised from amines and gaseous trifluoroacetaldehyde. tBuONa is able to deprotonate the hemiaminals to form trifluoromethyl anion equivalents CF<sub>3</sub>CH(O<sup>-</sup>)NMe<sub>2</sub>. The trifluoromethyl anion has been transferred from such intermediates to benzaldehyde yielding phenyl (trifluoromethyl) methanol.
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ijtsrd · 3 years ago
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A Study of Newly Schiff Base as Corrosion Inhibitor for Metal Corrosion in Acidic Medium
by Sanjay Kumar | Dr. Yogesh Chahar | Dr. V. K. Swami "A Study of Newly Schiff Base as Corrosion Inhibitor for Metal Corrosion in Acidic Medium"
Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-5 | Issue-5 , August 2021,
URL: https://www.ijtsrd.com/papers/ijtsrd45226.pdf
Paper URL: https://www.ijtsrd.com/chemistry/physical-chemistry/45226/a-study-of-newly-schiff-base-as-corrosion-inhibitor-for-metal-corrosion-in-acidic-medium/sanjay-kumar
callforpaperphysics, physicsjournal
The Schiff base 2 3,4 dihydroxy 5 nitrophenyl methylidene hydrazine 1 carbothioamide DHNPMHC synthesized by condensation of 3,4 dihydroxcy 5 nitro benzaldehyde and thiosemicarbazide. The structure of Schiff base was characterized by elemental analysis, FT IR and UV – Vis methods. The inhibition efficiency of DHNPMHC towards the corrosion of iron in 0.5M HCl was investigated using weight loss measurement technique. Results showed that DHNPMHC is an effective inhibitor for iron corrosion in 0.5M HCl solution. The inhibition efficiency also increased with concentration of inhibitor increased. The maximum corrosion inhibition e ciency of inhibitor reported at 5 5X10 5M inhibitor concentration is 89.52 . Adsorption of the inhibitor on the iron surface followed Langmuir adsorption isotherm. 
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chemanalyst · 3 years ago
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Toluene Market Trends by Key Players, End User, Demand, Analysis Growth and Forecast, 2035 | ChemAnalyst
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According to ChemAnalyst report, “Toluene Market Analysis: Plant Capacity, Production, Operating Efficiency, Demand & Supply, End Use, Distribution Channel, Region, Competition, Trade, Customer & Price Intelligence Market Analysis, 2015-2035”, Toluene market has shown significant growth as its demand reached 27.5 million tonnes in 2021 and is anticipated to grow at a healthy CAGR of 4.80% in the forecast period until 2035. The growing demand for Toluene and its derivatives for solvent applications, along with the rising demand from various end-use industries, including building and construction, automotive, and others, is expected to boost the Toluene market in the upcoming years. The industrial production of Toluene is highly associated with the safety concerns on marine life and human health before it can be further manufactured and introduced in the market around the world.
Read Full Report Here @ https://www.chemanalyst.com/industry-report/toluene-market-665
Toluene also referred to as methylbenzene, is a seven-carbon aromatic hydrocarbon that is widely used in industrial settings as a solvent. It is basically a clear and colorless liquid with a distinctive sweet smell. Toluene also is an ingredient in various consumer products such as paints, glues, nail polish removers, resins, and plasticizers, etc. Toluene is exclusively used in the production of various chemical derivatives such as Toluene Diisocyanate (TDI), Benzoic Acid, and others. Since Toluene is regarded as a universal solvent, it can be directly used in disinfectants, foams, cleaning agents, adhesives, fuel additives, and others. In the automotive industry, Toluene is used as an octane booster for Gasoline with high RON. Toluene as a gasoline additive is used to improve octane ratings for fuel used in race cars and other automobiles. The higher the octane number, the greater the fuel’s resistance to knocking or pinging during combustion. The consistently rising demand for aromatics in the petrochemical industry to produce elastomers, agrochemicals, dyes, etc., is driving the Toluene market across the world as it is regarded as an aromatic compound due to the presence of benzene ring in its chemical structure.
Read Free Sample Report Online @ https://www.chemanalyst.com/ChemAnalyst/RequestForm
Industrially, Toluene is manufactured with the help of two methods. In the first method, it is extracted from the pyrolysis of Gasoline, which is produced from Naphtha cracking. In the second method, it is extracted from reformate, which is also derived from heavy Naphtha cracking. The demand for Toluene is likely to witness a decrement in some of the segments in the near term due to restrictions on its consumption as it has a significant level of toxicity. However, the toxicity of Toluene is way less than Benzene; that’s why it serves as a viable replacement for the latter in some applications. Exposure to Toluene in consumer products can be reduced by using the products in well-ventilated areas and closely following all label instructions and warnings.
Toluene Market is segmented on the basis of end-use, derivative type, sales channel, and region. On the basis of derivative type, the Toluene market is segmented into Benzene and Xylene, Solvents, Gasoline Additives, Toluene Diisocyanate, and others (TNT, Benzoic acid, Benzaldehyde). The Benzene and Xylene segment held the largest market share of 56.45% in 2021, followed by the increased usage of Benzene in textile industries and Xylene in chemical industries. After Benzene and Xylene, the Gasoline Additives segment accounted for the second-largest share of 17.62% in the toluene market owing to the increased demand from the automotive sector.
Based on various end-uses, the market is segregated into building and construction, automotive, oil and gas, pharmaceuticals, paints and coatings, and others. The paints and coatings segment dominated the Toluene market with a share of 24.78% and is likely to maintain its dominance in the next ten years as well. The oil and gas segment held the second-largest share of 23.45% in 2020.
In 2020, due to the unprecedented outbreak of COVID-19, the toluene market showcased a downward trend around the globe. Several businesses, end-use industries, and other facilities were negatively affected in the first half of 2020 due to the nationwide lockdowns and strict restrictions imposed by the government authorities. The disruption in the supply chain of the product resulted in reduced demand around the world. The market growth post-pandemic observed an upward trajectory due to an increment in demand for Toluene from downstream industries, including paint and coatings, oil and gas, and others.
Among different regions, the Asia Pacific region accounted for the largest share of 48.53% in the Toluene market in 2021 and is anticipated to maintain its dominance in the forecast period as well. The rising Toluene production rate in China due to its high demand in automotive, paints and coatings, and other downstream industries is driving the Toluene market across the Asia Pacific region. Followed by the APAC region, North America holds the second-largest share of Toluene in terms of demand.
Key Players:
Exxon Mobil
SK Global Corporation Limited.
Zhenhai Refining and Chemical
Marathon Petroleum US
Flint Hills Resources
Fermosa Chemical & Fibre Corporation
Sinopec Shanghai Petrochemical
Cepsa
Petrochina Qinzhou
Jinling Petrochemical, and others.
A leading player Exxon Mobil held the largest share of 6.90% in the Toluene market in 2021.
“Continuously increasing demand for Toluene from several end-use industries including building and construction, automotive, oil and gas, paints and coatings, and others is projected to boost the Toluene market in the span of the next ten years. The rising demand for gasoline additives in the automotive industry is driving the demand for Toluene further augmenting its market growth around the world.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based management consulting firm promoting ChemAnalyst worldwide.
Report Scope:
In this report, Toluene market has been segmented into following categories, in addition to the industry trends which have also been detailed below:
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kisamehoshikage · 3 years ago
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2-(4-CHLOROPHENYLTHIO)BENZALDEHYDE CAS 107572-07-6 Market Analysis and Forecast with Potential Impact of COVID-19 (2021-2027)
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The recently publised report titled 2-(4-CHLOROPHENYLTHIO)BENZALDEHYDE CAS 107572-07-6by Axel Reports offers a comprehensive picture of the market from the global viewpoint as well as a descriptive analysis with detailed segmentation, complete research and development history, latest news, offering a forecast and statistic in terms of revenue during the forecast period from 2021-2027. The report covers a comprehensive analysis of key segments, recent trends, competitive landscape, and key factors playing a substantial role in the market are detailed in the report. The report helps vendors and manufacturers to understand the change in the market dynamics over the years.
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meddoctorfree · 8 months ago
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Ephedrine: Composition and Varied Applications
Ephedrine, an alkaloid sourced from diverse botanical origins, has a rich history in traditional medicine. This article provides a succinct overview of its chemical composition, synthesis methods, physiological effects, and therapeutic uses. Despite its longstanding use, ongoing regulatory concerns regarding safety and potential misuse necessitate continuous research for informed guidelines.
Introduction: Ephedrine, a sympathomimetic amine found in plants like Ephedra, has been integral to traditional medicinal practices. However, its adoption has led to regulatory scrutiny, prompting a closer examination of its chemical properties and modern healthcare applications.
Chemical Composition and Synthesis: Ephedrine shares structural similarities with adrenaline and methamphetamine and exists as two enantiomers, d-ephedrine and l-ephedrine. Synthesis methods range from plant extraction to chemical processes involving benzaldehyde and nitroethane, impacting purity and pharmacological properties.
Physiological Effects and Pharmacological Mechanisms: Acting as a sympathomimetic agent, ephedrine stimulates adrenergic receptors, triggering the release of catecholamines and resulting in bronchodilation, vasoconstriction, increased heart rate, and central nervous system activation. These effects underpin its therapeutic efficacy in conditions such as asthma, hypotension, and as a central nervous system stimulant.
Therapeutic Applications: Ephedrine plays a crucial role in various pharmaceutical formulations targeting conditions like asthma, bronchitis, hypotension, and nasal congestion. However, concerns arise regarding its inclusion in over-the-counter products and weight loss supplements, raising questions about safety and efficacy.
Regulatory Considerations and Controversies: Despite its therapeutic potential, regulatory authorities have imposed restrictions on ephedrine due to safety concerns and reported adverse reactions. Its classification as a controlled substance in certain regions emphasizes the need for stringent regulation and ongoing monitoring.
Conclusion: The multifaceted nature of ephedrine, encompassing diverse pharmacological effects and therapeutic applications, highlights the importance of a comprehensive understanding to effectively navigate its complexities. Continuous research efforts are essential for establishing evidence-based guidelines and minimizing potential risks associated with its use.
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wenickjones · 4 years ago
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Benzaldehyde Market 2021 with Covid-19 Pandemic Analysis, Growth Rate, New Trend Analysis Forecast To 2027
Facto Market Insights as of late distributed statistical surveying report on the worldwide Benzaldehyde Market to its assortment of statistical surveying reports. The exploration report covers point by point examination of market measuring and anticipating of the market covering the market drivers, challenges, opportunity investigation, and patterns, alongside different key bits of knowledge in the worldwide market. The examination report additionally incorporates the investigation of territorial producers and new market players, covering all the data reasonable for the customers to settle on essential business choices in the business.
Free Sample Report + All Related Graphs & Charts @  
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The report covers PESTLE examination and watchman's five powers investigation which exhibits the five powers including purchasers bartering power, providers haggling power, the danger of new participants, the danger of substitutes, and level of rivalry in the worldwide benzaldehyde market. In the investigation, the system of watchman's five powers examination clarifies the technique for breaking down the opposition of the business covering the business structure and the degree of rivalry in the market. Along with this, the exploration report additionally covers current realities and figures identified with the macroeconomic patterns that are expected to affect the development of the general market.
Following are the Main Features of Global Benzaldehyde Market Report:
- Market Overview, Industry Development, Market Maturity, PESTLE Analysis, Value Chain Analysis
- Growth Drivers and Barriers, Market Trends & Market Opportunities
- Market Segments by Geographies and Countries
- Porter’s Five Forces Analysis & Trade Analysis
- Market Segment Trend and Forecast
- Market Forecast Analysis for 2021-2027
- Key Market Driving Factors
- Market Analysis and Recommendations
- Price Analysis
- Benzaldehyde Market Company Analysis: Company Market Share & Market Positioning, Company Profiling, Recent Industry Developments etc.
Obtain Report Details @
https://www.factomarketinsights.com/report/668/benzaldehyde-market
Market Segmentation:
The exploration offers an extensive investigation of worldwide benzaldehyde market concerning following sub-markets:
Benzaldehyde Market, by Grade:
FCC Grade
Technical Grade
Benzaldehyde Market, by Application:
Beverages
Food
Carbonated Soft Drinks
Fruit Juices & Other Soft Drinks
Alcoholic Beverages
Agrochemicals
Dye & Coatings
Others
Bakery Goods
Confectionary & Chewing Gums
Ice Creams
Gelatins
Puddings
Regional Insights:
The report investigations the market by geologies for example North America, Europe, Asia Pacific, Latin America and Middle East and Africa. Further, the regions are fragmented into the country and regional groupings:
- North America (U.S. & Canada)
- Europe (Germany, United Kingdom, France, Italy, Spain, Russia, and Rest of Europe)
- Asia Pacific (China, India, Japan, South Korea, Indonesia, Taiwan, Australia, New Zealand, and Rest of Asia Pacific)
- Latin America (Brazil, Mexico, and Rest of Latin America)
- Middle East & Africa (GCC (Saudi Arabia, UAE, Bahrain, Kuwait, Qatar, Oman), North Africa, South Africa, and Rest of Middle East & Africa)
Competitive Landscape
The report includes profiles of leading companies in the global benzaldehyde market. Some of the key players profiled include:
LANXESS
Emerald Performance Materials
Valtris Specialty Chemicals
Hubei Kelin Bolun New Materials
Gujarat Alkalies & Chemicals
Axxence Aromatic GmbH
Kadillac Chemicals
K L J Group
Shimmer Chemicals Pvt. Ltd.
Elan Chemical
Wuhan Dico Chemical
Reasons to purchase the report:
- Identify possible investment areas based on a comprehensive trend analysis of the global benzaldehyde Market over the next few years.
- Gain in-depth knowledge of the underlying factors that drive demand for benzaldehyde and recognize the opportunities provided by them.
- Identify the major channels that drive the demand for TUNNEL LIGHTING, offering a strong image of potential prospects that can be tapped, resulting in growth in revenue.
- Strengthen the business knowledge in terms of industry dynamics, demand drivers, and the latest technological advances among others.
- Channelize funds by concentrating on the ongoing initiatives pursued by the numerous countries in the global benzaldehyde market.
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sandlerresearch · 4 years ago
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Benzenoid Market by Type (Benzyl Acetate, Benzoate, Chloride, Salicylate, Benzaldehyde, Cinnamyl, Vanillin), Application (Soaps & Detergents, Food & Beverage, Household Products), and Region – Global forecast to 2025 published on
https://www.sandlerresearch.org/benzenoid-market-by-type-benzyl-acetate-benzoate-chloride-salicylate-benzaldehyde-cinnamyl-vanillin-application-soaps-detergents-food-beverage-household-products-and-region.html
Benzenoid Market by Type (Benzyl Acetate, Benzoate, Chloride, Salicylate, Benzaldehyde, Cinnamyl, Vanillin), Application (Soaps & Detergents, Food & Beverage, Household Products), and Region – Global forecast to 2025
The global Benzenoid chemicals market is estimated to be USD 651 million in 2020 and is projected to reach USD 857 million by 2025.
Benzenoids are a group of aromatic hydrocarbons containing at least one benzene ring their chemical structure and these compounds collectively come under the group of organic chemicals. This group of compounds is distinctively known for their aromatic nature, high stability and resonance structures. These chemicals majorly include compounds such as benzyl alcohol, benzyl acetate, benzyl chloride, benzyl salicylate, benzaldehyde, and cinnamyl. Conference, rising demand for petrochemicals in major end-use industries coupled with favorable operating conditions, primarily in the Middle East and Asia Pacific, is expected to drive the global market for petrochemicals from 2013 to 2030. These compounds are largely used in the all the end use industries that require flavor or fragrance in their end products.
By type, the benzyl alcohol subtype is projected to account for the largest market share in the benzenoid chemicals market during the forecast period.
Benzyl alcohol occurs widely in essential oils both as the free alcohol, and, more importantly from a fragrance standpoint, in the form of various esters. The largest proportion of benzyl alcohol is for use in the photographic and textile industries and has a Generally Recognized As Safe (GRAS) status indicated by the Flavor and Extract Manufacturers’ Association for use in flavors and by the Council of Europe. It is also primarily used in cosmetics as a fragrance component, preservative, solvent, and viscosity-decreasing agent.
By application, the soaps and detergents sub type is projected to be the fastest growing segment in the benzenoid chemicals market during the forecast period.
Synthetically produced fragrance oils are the most popular choices for scented liquid soaps. When compared to other fragrance options like essential oils, synthetic fragrances are inexpensive and relatively easy to produce. That makes them an economical and attractive choice for many companies. Most food-like fragrances (i.e. butter, coffee, chocolate) or fruity scents (i.e. apple, blackberry, cucumber, mango) are synthesized fragrance oils.
Break-up of Primaries
By Value Chain:Supply Side- 57%, Demand Side- 43%
By Designation: CXO’s – 29%, Managers – 21%, and Executives – 50%
By Region:North America – 34%, Europe – 37%, Asia Pacific – 16%, Rest of the World (RoW) * – 13%.
* RoW includes South America,  Africa, and Middle East.
Leading players profiled in this report
BASF (Germany)
Firmenich (Switzerland)
Emerald Kalama Chemical (US)
International Flavors & Fragrances, Inc. (US)
 Eternis Fine Chemicals (India)
Symrise (France)
Tennants Fine Chemicals Ltd. (England)
Jayshree Aromatics Pvt. Ltd. (India)
Valtris Specialty Chemicals (US)
Axxence Aromatic GmbH (US)
Kadillac Chemicals Pvt. Ltd. ( India)
Solvay (Belgium)
Indukern F&F Ingredients (Spain)
Lanxess (Germany)
Sigma-Aldrich (US)
Research Coverage
This report segments the benzenoid chemicals market on the basis of type, application and region. In terms of insights, this research report focuses on various levels of analyses—competitive landscape, end-use analysis, and company profiles—which together comprise and discuss the basic views on the emerging & high-growth segments of the benzenoid chemicals  market, the high-growth regions, countries, government initiatives, market disruption, drivers, restraints, opportunities, and challenges.
Reasons to buy this report
To get a comprehensive overview of the benzenoid chemicals  market
To gain wide-ranging information about the top players in this industry, their product portfolios, and key strategies adopted by them
To gain insights about the major countries/regions, in which the benzenoid chemicals  market is flourishing
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lookchem · 2 years ago
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73231-34-2 An efficient enantioselective synthesis of florfenicol based on sharpless asymmetric dihydroxylation
An efficient and highly enantioselective synthesis of florfenicol- via a new intermediate threo-dihydroxy ester, with a Sharpless asymmetric dihydroxylation as the key step, is reported. A ring-opening/reduction strategy avoids the formation of a chlorinated byproduct that occurs in Schumachers phenyloxazoline procedure. The overall yield of florfenicol by this new process is 23% based on 4-(methylsulfonyl)benzaldehyde. Georg Thieme Verlag Stuttgart · New York.
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chemanalyst · 3 years ago
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Toluene Market to Grow at a CAGR of 4.80% by 2035 - ChemAnalyst
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According to ChemAnalyst report, “Toluene Market Analysis: Plant Capacity, Production, Operating Efficiency, Demand & Supply, End Use, Distribution Channel, Region, Competition, Trade, Customer & Price Intelligence Market Analysis, 2015-2035”, Toluene market has shown significant growth as its demand reached 27.5 million tonnes in 2021 and is anticipated to grow at a healthy CAGR of 4.80% in the forecast period until 2035. The growing demand for Toluene and its derivatives for solvent applications, along with the rising demand from various end-use industries, including building and construction, automotive, and others, is expected to boost the Toluene market in the upcoming years. The industrial production of Toluene is highly associated with the safety concerns on marine life and human health before it can be further manufactured and introduced in the market around the world.
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Toluene also referred to as methylbenzene, is a seven-carbon aromatic hydrocarbon that is widely used in industrial settings as a solvent. It is basically a clear and colorless liquid with a distinctive sweet smell. Toluene also is an ingredient in various consumer products such as paints, glues, nail polish removers, resins, and plasticizers, etc. Toluene is exclusively used in the production of various chemical derivatives such as Toluene Diisocyanate (TDI), Benzoic Acid, and others. Since Toluene is regarded as a universal solvent, it can be directly used in disinfectants, foams, cleaning agents, adhesives, fuel additives, and others. In the automotive industry, Toluene is used as an octane booster for Gasoline with high RON. Toluene as a gasoline additive is used to improve octane ratings for fuel used in race cars and other automobiles. The higher the octane number, the greater the fuel’s resistance to knocking or pinging during combustion. The consistently rising demand for aromatics in the petrochemical industry to produce elastomers, agrochemicals, dyes, etc., is driving the Toluene market across the world as it is regarded as an aromatic compound due to the presence of benzene ring in its chemical structure.
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Industrially, Toluene is manufactured with the help of two methods. In the first method, it is extracted from the pyrolysis of Gasoline, which is produced from Naphtha cracking. In the second method, it is extracted from reformate, which is also derived from heavy Naphtha cracking. The demand for Toluene is likely to witness a decrement in some of the segments in the near term due to restrictions on its consumption as it has a significant level of toxicity. However, the toxicity of Toluene is way less than Benzene; that’s why it serves as a viable replacement for the latter in some applications. Exposure to Toluene in consumer products can be reduced by using the products in well-ventilated areas and closely following all label instructions and warnings.
Toluene Market is segmented on the basis of end-use, derivative type, sales channel, and region. On the basis of derivative type, the Toluene market is segmented into Benzene and Xylene, Solvents, Gasoline Additives, Toluene Diisocyanate, and others (TNT, Benzoic acid, Benzaldehyde). The Benzene and Xylene segment held the largest market share of 56.45% in 2021, followed by the increased usage of Benzene in textile industries and Xylene in chemical industries. After Benzene and Xylene, the Gasoline Additives segment accounted for the second-largest share of 17.62% in the toluene market owing to the increased demand from the automotive sector.
Based on various end-uses, the market is segregated into building and construction, automotive, oil and gas, pharmaceuticals, paints and coatings, and others. The paints and coatings segment dominated the Toluene market with a share of 24.78% and is likely to maintain its dominance in the next ten years as well. The oil and gas segment held the second-largest share of 23.45% in 2020.
In 2020, due to the unprecedented outbreak of COVID-19, the toluene market showcased a downward trend around the globe. Several businesses, end-use industries, and other facilities were negatively affected in the first half of 2020 due to the nationwide lockdowns and strict restrictions imposed by the government authorities. The disruption in the supply chain of the product resulted in reduced demand around the world. The market growth post-pandemic observed an upward trajectory due to an increment in demand for Toluene from downstream industries, including paint and coatings, oil and gas, and others.
Among different regions, the Asia Pacific region accounted for the largest share of 48.53% in the Toluene market in 2021 and is anticipated to maintain its dominance in the forecast period as well. The rising Toluene production rate in China due to its high demand in automotive, paints and coatings, and other downstream industries is driving the Toluene market across the Asia Pacific region. Followed by the APAC region, North America holds the second-largest share of Toluene in terms of demand.
Toluene  Market Analysis: Plant Capacity, Production, Operating Efficiency, Demand & Supply, Application, End Use, Distribution Channel, Region, Competition, Trade, Customer & Price Intelligence Market Analysis, 2015-2035”, some of the major players operating in Toluene market include Exxon Mobil, SK Global Corporation Limited., Zhenhai Refining and Chemical, Marathon Petroleum US, Flint Hills Resources, Fermosa Chemical & Fibre Corporation, Sinopec Shanghai Petrochemical, Cepsa, Petrochina Qinzhou, Jinling Petrochemical, and others. A leading player Exxon Mobil held the largest share of 6.90% in the Toluene market in 2021.
“Continuously increasing demand for Toluene from several end-use industries including building and construction, automotive, oil and gas, paints and coatings, and others is projected to boost the Toluene market in the span of the next ten years. The rising demand for gasoline additives in the automotive industry is driving the demand for Toluene further augmenting its market growth around the world.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based management consulting firm promoting ChemAnalyst worldwide.  
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https://www.chemanalyst.com/industry-report/nitrotoluene-market-617
Petrochemicals Market Analysis: By Type (C1 Derivatives, C2 Derivatives, C3 Derivatives, C4 Derivatives, Aromatics, Others), By End Use (Packaging and Construction, Fuel and Fuel Additives, Automotive and Consumer Durables, Pharmaceutical and Agrochemicals and Others), By Region, By Company Competition, Forecast & Opportunities, 2015-2030
https://www.chemanalyst.com/industry-report/global-petrochemical-market-308
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letsmarketresearchstore · 4 years ago
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Aldehyde Market Size, Industry Manufacturers, Share and 2024 Forecasts
Aldehyde Market Highlights:
Aldehyde is organic chemical compound containing formyl group. Aldehyde is classified as formaldehyde, acetaldehyde, butyraldehyde, benzaldehyde, propionaldehyde and others. Out of this, formaldehyde and acetaldehyde are two most important family members in aldehyde market. Rising applications of aldehyde across various industry is driving the aldehyde market demand. According to remainder of molecular apart, aldehyde possesses diverse and volatile nature. Each of these aldehydes are used for different applications according to various properties it possesses. Growing industrial applications, aldehydes are extensively used in medical and manufacturing of downstream chemicals. It acts as precursor to various chemical such as acids, alcohols and resins etc.
Global Aldehyde Market Players:
BASF SE (Germany), Huntsman Corporation (U.S), Celanese Corporation (U.S), Georgia Pacific Corporation (U.S), Gujarat Alkalies And Chemicals Limited (India), Simalin Chemicals Industries Limited (India), Eastman Chemical Company (U.S), Sinopec Corporation (China), China National Petroleum Corporation (China), Sumitomo Corporation (Japan) and others.
On basis of product type, aldehyde is segmented as formaldehyde, acetaldehyde, butyraldehyde, benzaldehyde, propionaldehyde and others. Formaldehyde consumes highest market share in aldehyde. Owing to use of formaldehyde in medical applications such as disinfectant as it kills microbes and bacteria is driving the aldehyde market demand growth in coming years. It is also used in producing resins such as urea, melamine and phenol.
Growing use of Urea resins in agrochemicals is expected to drive the aldehyde market over the forecasted period. Acetaldehyde is second largest segment in aldehyde market. The acetaldehyde market is driven by use in production of acetic acid which is extensively used in various end user industries. Also, acetaldehyde is used in plasticizer in plastic industry and as a paint binder in paints & coating industry. Owing to its growing applications, acetaldehyde is higher on demand in developing regions owing to growing paints & coating industry and pharmaceutical industry.
Segmentation:
Aldehyde Market is majorly segmented on the basis of product type and application. Based on product type, aldehyde market is segmented into formaldehyde, acetaldehyde, butyraldehyde, benzaldehyde, propionaldehyde and others. Based on application of aldehyde, the market is segmented into pharmaceuticals, soaps & detergents, medical disinfectants, plastic additives, agrochemicals, industrial applications.
Regional Analysis:
The Asia-Pacific Aldehyde market is expected to grow due to growing application industry. China consumes largest market share in global aldehyde market. The report estimates the size of the aldehyde market both in terms of volume and value. China, India, Brazil and Indonesia are expected to drive the market demand owing robust industry growth.
Rapid industrialization and huge demand from agriculture industry for urea and other agrochemicals is likely to drive the aldehyde market growth. Europe witnessed a positive growth owing to use of acetaldehyde for production of plasticizer in plastic industry is expected to drive the use in automobile industry. North America are expected to witnessed a steady growth owing to stringent regulation for producing synthetic Aldehyde. Major players in these are shifting towards eco-friendly products which is easily available and lower in cost.
Study Objectives of Aldehyde Market:
To provide detailed analysis of the market structure along with forecast for the next 7 years of the various segments and sub-segments of the Global Aldehyde Market
To understand the supply and demand dynamics including supply and consumption concentration mapping
To provide region level market analysis and future outlook for North America, Europe, Asia, and Rest of the World (ROW) and their countries
To provide competitor positioning of the market
To provide company profiling of major players in the market along with their production and capacity
To provide regional trade analysis
To evaluate historical market trends, patents and technologies, and current government regulatory requirements that are relevant to the market
Intended Audience:
Aldehyde manufacturers
Traders and distributors of Aldehyde
Production Process industries
Potential investors
Raw material suppliers
Nationalized laboratory
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