• Using Renewable Energy Source: An Introduction to Biogas

    Biogas is a renewable source of energy produced from organic waste such as food waste, agricultural waste, sewage,etc through a process of anaerobic digestion. In the anaerobic digestion, microorganisms breakdown biodegradable material in the absence of oxygen to produce biogas. Biogas mainly contains methane (CH4) and carbon dioxide (CO2) along with small amounts of other gases.

    Anaerobic Digestion Process

    The anaerobic digestion occurs in four stages to produce Biogas from organic waste. In the first stage, hydrolysis, enzymes excreted by bacteria breaks down insoluble organic polymers such as carbohydrates, fats and proteins into soluble components.

    Biogas - https://www.coherentmarketinsights.com/market-insight/biogas-market-3015
    Using Renewable Energy Source: An Introduction to Biogas Biogas is a renewable source of energy produced from organic waste such as food waste, agricultural waste, sewage,etc through a process of anaerobic digestion. In the anaerobic digestion, microorganisms breakdown biodegradable material in the absence of oxygen to produce biogas. Biogas mainly contains methane (CH4) and carbon dioxide (CO2) along with small amounts of other gases. Anaerobic Digestion Process The anaerobic digestion occurs in four stages to produce Biogas from organic waste. In the first stage, hydrolysis, enzymes excreted by bacteria breaks down insoluble organic polymers such as carbohydrates, fats and proteins into soluble components. Biogas - https://www.coherentmarketinsights.com/market-insight/biogas-market-3015
    WWW.COHERENTMARKETINSIGHTS.COM
    Biogas Market - Companies, Size, Share & Research Analysis
    Biogas Market is segmented By Application (Electricity & Heat Generation, Vehicle Fuel, Domestic Cooking, and Others)
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  • 1,3 Propanediol : Global 1,3-Propanediol Witnesses Robust Growth Insights and Key Trends


    The Global Production of 1,3 Propanediol,, also known as trimethylene glycol or propane-1,3-diol, is a clear, colorless, and odorous liquid with wide applications in the polyester fibers, engineering plastics, and polyurethane industries. Traditionally, 1,3 dihydroxypropane has been produced from fossil fuel-derived raw materials such as ethylene oxide or glycerol.

    Some of the key companies that have commercialized bio-based 1,3 dihydroxypropane production include DuPont Tate & Lyle Bio Products, Zeus Industrial Products Inc, Genomatica, Global Bio-Chem, and Glory Biomaterial. These companies utilize proprietary fermentation technologies where carefully selected microorganisms such as Clostridium butylicum or Klebsiella pneumoniae are fed with sugars to produce 1,3 dihydroxypropane under controlled conditions.

    Get more insights: Global 1, 3 Propanediol (https://www.newswirestats.com/global-13-propanediol-market-analysis/)

    #CoherentMarketInsights, #Global13Propanediol, #Coventional, #Biobased, #PolytrimethyleneTerephthalate, #Polyurethane, #PersonalCare, #Detergents



    1,3 Propanediol : Global 1,3-Propanediol Witnesses Robust Growth Insights and Key Trends The Global Production of 1,3 Propanediol,, also known as trimethylene glycol or propane-1,3-diol, is a clear, colorless, and odorous liquid with wide applications in the polyester fibers, engineering plastics, and polyurethane industries. Traditionally, 1,3 dihydroxypropane has been produced from fossil fuel-derived raw materials such as ethylene oxide or glycerol. Some of the key companies that have commercialized bio-based 1,3 dihydroxypropane production include DuPont Tate & Lyle Bio Products, Zeus Industrial Products Inc, Genomatica, Global Bio-Chem, and Glory Biomaterial. These companies utilize proprietary fermentation technologies where carefully selected microorganisms such as Clostridium butylicum or Klebsiella pneumoniae are fed with sugars to produce 1,3 dihydroxypropane under controlled conditions. Get more insights: Global 1, 3 Propanediol (https://www.newswirestats.com/global-13-propanediol-market-analysis/) #CoherentMarketInsights, #Global13Propanediol, #Coventional, #Biobased, #PolytrimethyleneTerephthalate, #Polyurethane, #PersonalCare, #Detergents
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  • Polyurethane Market Overview:

    Maximize Market Research is a Business Consultancy Firm that has published a detailed analysis of the “Polyurethane Market”. The report includes key business insights, demand analysis, pricing analysis, and competitive landscape. The report provides the current state of the Polyurethane market by thorough analysis, and projections are made up to 2030.

    Expected Expansion of Polyurethane Market

    The Polyurethane Market size was valued at USD 80.23 Bn in 2023 and market revenue is growing at a CAGR of 5.2% from 2024 to 2030, reaching nearly USD 114.41Bn by 2030.

    Get your sample copy of this report now: https://www.maximizemarketresearch.com/request-sample/70607/

    Polyurethane Market Report Scope and Research Methodology:

    The scope of the Polyurethane market analysis encompasses diverse factors, including geographical regions, industry segments, traveller types, and travel service offerings. Research methodologies integrate primary and secondary data collection, employing surveys, interviews, and analysis of industry reports and databases. Assessing the Polyurethane market scope involves examining the volume and value of business travel transactions, covering expenditures on transportation, accommodation, dining, and ancillary services. Methodologies aim to identify key trends, challenges, and opportunities influencing the market landscape. This comprehensive approach provides valuable insights for strategic decision-making, aiding businesses in navigating the complexities of the Polyurethane sector and capitalizing on growth prospects.
    Polyurethane Market Overview: Maximize Market Research is a Business Consultancy Firm that has published a detailed analysis of the “Polyurethane Market”. The report includes key business insights, demand analysis, pricing analysis, and competitive landscape. The report provides the current state of the Polyurethane market by thorough analysis, and projections are made up to 2030. Expected Expansion of Polyurethane Market The Polyurethane Market size was valued at USD 80.23 Bn in 2023 and market revenue is growing at a CAGR of 5.2% from 2024 to 2030, reaching nearly USD 114.41Bn by 2030. Get your sample copy of this report now: https://www.maximizemarketresearch.com/request-sample/70607/ Polyurethane Market Report Scope and Research Methodology: The scope of the Polyurethane market analysis encompasses diverse factors, including geographical regions, industry segments, traveller types, and travel service offerings. Research methodologies integrate primary and secondary data collection, employing surveys, interviews, and analysis of industry reports and databases. Assessing the Polyurethane market scope involves examining the volume and value of business travel transactions, covering expenditures on transportation, accommodation, dining, and ancillary services. Methodologies aim to identify key trends, challenges, and opportunities influencing the market landscape. This comprehensive approach provides valuable insights for strategic decision-making, aiding businesses in navigating the complexities of the Polyurethane sector and capitalizing on growth prospects.
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  • https://www.maximizemarketresearch.com/market-report/polyurethane-market/70607/
    https://www.maximizemarketresearch.com/market-report/polyurethane-market/70607/
    Polyurethane Market: Global Industry Analysis and Forecast (2024-2030) Trends, Statistics, Dynamics, Segmentation by Raw Material, Product, End-User, Sales Channel and Regions
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  • https://www.maximizemarketresearch.com/market-report/polyurethane-market/70607/
    https://www.maximizemarketresearch.com/market-report/polyurethane-market/70607/
    Polyurethane Market: Global Industry Analysis and Forecast (2024-2030) Trends, Statistics, Dynamics, Segmentation by Raw Material, Product, End-User, Sales Channel and Regions
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  • Steel Faced Sandwich Panels Market Analysis, Size, Share, Growth, Trends Forecasts 2023-2030
    The Global Steel Faced Sandwich Panels market offers a robust solution that transcends conventional options. These panels, characterized by their innovative composition and structural efficiency, have garnered significant attention in the construction industry.
    Get Free Sample Report: https://www.metastatinsight.com/request-sample/2531
    Top Companies /Key players Wet Wire Drawing Lubricants Industry
    • Kingspan Group plc
    • Metecno Group
    • Romakowski GmbH & Co. KG
    • Nucor Corporation
    • Tata Steel Limited
    • ArcelorMittal S.A.
    • Lattonedil S.p.a. Milano
    • NAV-System Group
    • Italpannelli Srl
    • Fischer Profil GmbH
    • Isomec Group
    • Multicolor Steels (India) Pvt. Ltd.
    • TECSEDO S.A.
    • Isopan S.p.A.
    Browse Complete Report @ https://www.metastatinsight.com/report/steel-faced-sandwich-panels-market
    Steel Faced Sandwich Panels, at their core, represent a paradigm shift in construction methodology. Unlike traditional building materials, these panels integrate steel facing on both sides, creating a composite structure that combines the strength of steel with the insulating properties of a core material, often comprised of materials like polyurethane or mineral wool.

    The market for Global Steel Faced Sandwich Panels has witnessed remarkable growth, owing to the unparalleled advantages they bring to the table. Architects and builders are increasingly turning to these panels for their versatility and high-performance attributes. One of the key drivers of their popularity is their exceptional thermal insulation capabilities, enhancing energy efficiency in buildings and reducing overall operational costs.
    Drop us an email at:
    Leone.Santilli@mitbusinessresearch.com
    Call us on:
    +1 214 613 5758
    +91 73850 57479
    #SteelFacedSandwichPanelsMarket,# SteelFacedSandwichPanelsMarketIndustry, #SteelFacedSandwichPanelsMarketsize,# SteelFacedSandwichPanelsMarketshare, #SteelFacedSandwichPanelsTrend,

    Steel Faced Sandwich Panels Market Analysis, Size, Share, Growth, Trends Forecasts 2023-2030 The Global Steel Faced Sandwich Panels market offers a robust solution that transcends conventional options. These panels, characterized by their innovative composition and structural efficiency, have garnered significant attention in the construction industry. Get Free Sample Report: https://www.metastatinsight.com/request-sample/2531 Top Companies /Key players Wet Wire Drawing Lubricants Industry • Kingspan Group plc • Metecno Group • Romakowski GmbH & Co. KG • Nucor Corporation • Tata Steel Limited • ArcelorMittal S.A. • Lattonedil S.p.a. Milano • NAV-System Group • Italpannelli Srl • Fischer Profil GmbH • Isomec Group • Multicolor Steels (India) Pvt. Ltd. • TECSEDO S.A. • Isopan S.p.A. Browse Complete Report @ https://www.metastatinsight.com/report/steel-faced-sandwich-panels-market Steel Faced Sandwich Panels, at their core, represent a paradigm shift in construction methodology. Unlike traditional building materials, these panels integrate steel facing on both sides, creating a composite structure that combines the strength of steel with the insulating properties of a core material, often comprised of materials like polyurethane or mineral wool. The market for Global Steel Faced Sandwich Panels has witnessed remarkable growth, owing to the unparalleled advantages they bring to the table. Architects and builders are increasingly turning to these panels for their versatility and high-performance attributes. One of the key drivers of their popularity is their exceptional thermal insulation capabilities, enhancing energy efficiency in buildings and reducing overall operational costs. Drop us an email at: Leone.Santilli@mitbusinessresearch.com Call us on: +1 214 613 5758 +91 73850 57479 #SteelFacedSandwichPanelsMarket,# SteelFacedSandwichPanelsMarketIndustry, #SteelFacedSandwichPanelsMarketsize,# SteelFacedSandwichPanelsMarketshare, #SteelFacedSandwichPanelsTrend,
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  • A Deep Dive into the Non-Dispersive Infrared (NDIR) Market: Growth, Trends, and Forecast

    The Non-Dispersive Infrared (NDIR) Market is projected to experience steady growth, with an estimated valuation of USD 681 million in 2024, reaching USD 965 million by 2029. This represents a compound annual growth rate (CAGR) of 7.2%. The market expansion is primarily driven by the increasing adoption of NDIR sensors across various applications, including environmental monitoring, industrial safety, and HVAC systems. NDIR technology's ability to provide precise and reliable gas detection for CO2, methane, and other hydrocarbons positions it as a critical component in these sectors. Additionally, advancements in sensor technology, including miniaturization and integration with IoT platforms, are further enhancing its market appeal, ensuring robust growth over the forecast period.

    Download PDF Brochure: https://www.marketsandmarkets.com/pdfdownloadNew.asp?id=90187624

    The increasing demand for Non-Dispersive Infrared (NDIR) gas sensors across industries such as automotive and transportation, industrial and manufacturing, and food and beverages is significantly driving the growth of the NDIR market. These sensors are essential for monitoring and controlling emissions, ensuring safety, and maintaining quality standards. However, the market faces challenges due to intense pricing pressure, which leads to a decreased average selling price and can hinder overall market profitability. Despite these restraints, the growing adoption of gas sensors in consumer electronics presents lucrative opportunities for market players. As the integration of NDIR technology into smart devices and home automation systems becomes more prevalent, manufacturers can capitalize on this expanding segment to sustain and enhance market growth in the coming years.

    Based on application type, the NDIR market for monitoring applications is expected to hold the highest market share during the forecast period.

    Air pollution is a global environmental threat that commands significant attention from governments worldwide. Simultaneously, anesthesia monitoring is crucial for ensuring patient safety during healthcare procedures, necessitating real-time tracking of gases like carbon dioxide, nitrous oxide, and potent anesthetic agents such as isoflurane, sevoflurane, and desflurane. The need for precise gas monitoring in these critical applications is driving the growth of the Non-Dispersive Infrared (NDIR) market. Furthermore, the monitoring of refrigerant gases and the use of capnography in medical settings are also likely to boost the demand for NDIR sensors. These applications underscore the versatility and importance of NDIR technology in addressing both environmental and healthcare challenges, ensuring its market expansion in the coming years.

    Inquiry Before Buying: https://www.marketsandmarkets.com/Enquiry_Before_BuyingNew.asp?id=90187624

    NDIR market for VOCs to hold high market share during the forecast period.

    Given the widespread presence of volatile organic compounds (VOCs) in manufacturing processes across industries such as textiles, plastics, and pharmaceuticals, the demand for VOC sensors is on the rise. VOCs are prevalent in various household, industrial, and commercial products, but their accumulation in the air and water has drawn significant concern due to potential health and environmental impacts. VOC sensors are crucial in maintaining safe working environments and preserving air quality in urban areas by detecting and monitoring harmful emissions. As awareness of the dangers associated with VOC exposure increases, driven by regulatory standards and public health initiatives, the market for VOC sensors is anticipated to expand significantly in the coming years. This growth will be fueled by the continuous need to ensure compliance with environmental regulations and the adoption of proactive measures to protect both human health and the environment.
    A Deep Dive into the Non-Dispersive Infrared (NDIR) Market: Growth, Trends, and Forecast The Non-Dispersive Infrared (NDIR) Market is projected to experience steady growth, with an estimated valuation of USD 681 million in 2024, reaching USD 965 million by 2029. This represents a compound annual growth rate (CAGR) of 7.2%. The market expansion is primarily driven by the increasing adoption of NDIR sensors across various applications, including environmental monitoring, industrial safety, and HVAC systems. NDIR technology's ability to provide precise and reliable gas detection for CO2, methane, and other hydrocarbons positions it as a critical component in these sectors. Additionally, advancements in sensor technology, including miniaturization and integration with IoT platforms, are further enhancing its market appeal, ensuring robust growth over the forecast period. Download PDF Brochure: https://www.marketsandmarkets.com/pdfdownloadNew.asp?id=90187624 The increasing demand for Non-Dispersive Infrared (NDIR) gas sensors across industries such as automotive and transportation, industrial and manufacturing, and food and beverages is significantly driving the growth of the NDIR market. These sensors are essential for monitoring and controlling emissions, ensuring safety, and maintaining quality standards. However, the market faces challenges due to intense pricing pressure, which leads to a decreased average selling price and can hinder overall market profitability. Despite these restraints, the growing adoption of gas sensors in consumer electronics presents lucrative opportunities for market players. As the integration of NDIR technology into smart devices and home automation systems becomes more prevalent, manufacturers can capitalize on this expanding segment to sustain and enhance market growth in the coming years. Based on application type, the NDIR market for monitoring applications is expected to hold the highest market share during the forecast period. Air pollution is a global environmental threat that commands significant attention from governments worldwide. Simultaneously, anesthesia monitoring is crucial for ensuring patient safety during healthcare procedures, necessitating real-time tracking of gases like carbon dioxide, nitrous oxide, and potent anesthetic agents such as isoflurane, sevoflurane, and desflurane. The need for precise gas monitoring in these critical applications is driving the growth of the Non-Dispersive Infrared (NDIR) market. Furthermore, the monitoring of refrigerant gases and the use of capnography in medical settings are also likely to boost the demand for NDIR sensors. These applications underscore the versatility and importance of NDIR technology in addressing both environmental and healthcare challenges, ensuring its market expansion in the coming years. Inquiry Before Buying: https://www.marketsandmarkets.com/Enquiry_Before_BuyingNew.asp?id=90187624 NDIR market for VOCs to hold high market share during the forecast period. Given the widespread presence of volatile organic compounds (VOCs) in manufacturing processes across industries such as textiles, plastics, and pharmaceuticals, the demand for VOC sensors is on the rise. VOCs are prevalent in various household, industrial, and commercial products, but their accumulation in the air and water has drawn significant concern due to potential health and environmental impacts. VOC sensors are crucial in maintaining safe working environments and preserving air quality in urban areas by detecting and monitoring harmful emissions. As awareness of the dangers associated with VOC exposure increases, driven by regulatory standards and public health initiatives, the market for VOC sensors is anticipated to expand significantly in the coming years. This growth will be fueled by the continuous need to ensure compliance with environmental regulations and the adoption of proactive measures to protect both human health and the environment.
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  • The Environmental Revolution and Performance Excellence in the Refrigeration Industry
    Difluoromethane R-32(https://www.liminchemical.com/product/refrigerant-products/difluoromethane-r32.html) is a colorless, odorless and non-toxic gas with high chemical stability and safety. Compared to many conventional refrigerants, Difluoromethane R-32 has a lower Global Warming Potential (GWP) and zero Ozone Depletion Potential (ODP), making it an ideal environmentally friendly alternative. As governments continue to raise environmental requirements for refrigerants, Difluoromethane R-32 will have an increasingly broader application outlook.
    ifluoromethane R-32 has good refrigeration performance, thanks to its unique physical and chemical properties.The refrigeration capacity of Difluoromethane R-32 is about three times that of traditional R-22 refrigerant, which means that the charge of Difluoromethane R-32 can be reduced to one-third of the original amount for the same refrigeration demand.
    The Environmental Revolution and Performance Excellence in the Refrigeration Industry Difluoromethane R-32(https://www.liminchemical.com/product/refrigerant-products/difluoromethane-r32.html) is a colorless, odorless and non-toxic gas with high chemical stability and safety. Compared to many conventional refrigerants, Difluoromethane R-32 has a lower Global Warming Potential (GWP) and zero Ozone Depletion Potential (ODP), making it an ideal environmentally friendly alternative. As governments continue to raise environmental requirements for refrigerants, Difluoromethane R-32 will have an increasingly broader application outlook. ifluoromethane R-32 has good refrigeration performance, thanks to its unique physical and chemical properties.The refrigeration capacity of Difluoromethane R-32 is about three times that of traditional R-22 refrigerant, which means that the charge of Difluoromethane R-32 can be reduced to one-third of the original amount for the same refrigeration demand.
    WWW.LIMINCHEMICAL.COM
    Refrigerant Manufacturers, Suppliers, China Factory
    Limin refrigerant manufacturer recommended high quality refrigerant, which is used in a heat cycle to transfer heat from one area and remove it to another. Welcome to view our website to know different types of refrigerants and contact us at any time.
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  • Methylcyclohexane CAS108-87-2
    Methylcyclohexane CAS108-87-2
    Cyclohxylmethane;
    heptanaphthene;
    methyl-cyclohexan;
    methylecyclohexane;
    Metylocykloheksan

    RTECS No. GV6125000
    Molecular Formula C7H14
    CAS No. 108-87-2
    EINECS No. 203-624-3
    UN Dangerous Goods Code (UN No.): 2296
    Shipping name: Methylcyclohexane
    Hazardous classification :3
    Packing Group II
    Customs code 2902 19 00
    grade anhydrous
    Quality Level 100
    vapor density 3.4 (vs air)
    vapor pressure 37 mmHg ( 20 °C)
    83.2 mmHg ( 37.7 °C)
    Assay ≥99%
    form liquid
    autoignition temp. 545 °F
    impurities <0.002% water
    <0.005% water (100 mL pkg)
    evapn. residue <0.0005%
    refractive index n20/D 1.422 (lit.)
    bp 101 °C (lit.)
    mp −126 °C (lit.)
    density 0.77 g/mL at 25 °C (lit.)
    SMILES string CC1CCCCC1
    InChI 1S/C7H14/c1-7-5-3-2-4-6-7/h7H,2-6H2,1H3
    InChI key UAEPNZWRGJTJPN-UHFFFAOYSA-N


    Application
    Methylcyclohexane may be used as a solvent for the synthesis of unsolvated n-butylmagnesium chloride by the reaction of 1-chlorobutane with magnesium powder. It may also be used as the starting material to synthesize 1-methylcyclohexanecarboxylic acid.
    Pharmaceutical intermediates. Methylcyclohexane is an important organic solvent and extractant, which can be used as a solvent for rubber, paint, varnish (some paint solvents also use methylcyclohexane), and can be used as oil extractant. Methylcyclohexane can be used in organic synthesis as solvent and analytical reagent. In addition, methylcyclohexane can also be used as a standard for thermometer calibration. The correction solution is usually made of methylcyclohexane as the main component.



    Description
    Catalogue Number 806147
    Description Methylcyclohexane
    Product Information
    CAS number 108-87-2
    EC index number 601-018-00-7
    EC number 203-624-3
    Hill Formula C₇H₁₄
    Chemical formula C₆H₁₁CH₃
    Molar Mass 98.19 g/mol
    HS Code 2902 19 00
    Structure formula Image
    Quality Level MQ200
    Physicochemical Information
    Appearance Form:
    liquid
    Color: colorless
    Explosion limit 1.1 - 6.7 %(V)
    Flash point -4 °C
    Ignition temperature 260 °C
    Melting Point -126.6 °C
    Solubility 0.014 g/l
    Initial boiling point and boiling range 101 °C 214 °F - lit.
    Upper/lower flammability or explosive limits Upper explosion limit: 6.7 %(V) Lower explosion limit: 1.1 %(V)
    Toxicological Information
    LD 50 dermal LD50 Rabbit > 86000 mg/kg
    Safety Information according to GHS
    Hazard Pictogram(s)

    Hazard Statement(s) H225: Highly flammable liquid and vapour.
    H304: May be fatal if swallowed and enters airways.
    H315: Causes skin irritation.
    H336: May cause drowsiness or dizziness.
    H410: Very toxic to aquatic life with long lasting effects.
    Precautionary Statement(s) P210: Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking.
    P233: Keep container tightly closed.
    P273: Avoid release to the environment.
    P301 + P310: IF SWALLOWED: Immediately call a POISON CENTER/doctor.
    P303 + P361 + P353: IF ON SKIN (or hair): Take off immediately all contaminated clothing. Rinse skin with water.
    P331: Do NOT induce vomiting.
    P403 + P233: Store in a well-ventilated place. Keep container tightly closed.
    Signal Word Danger
    RTECS GV6125000
    Storage class 3 Flammable liquids
    WGK WGK 2 obviously hazardous to water
    Safety Information
    Categories of danger highly flammable, irritant, harmful, dangerous for the environment
    Storage and Shipping Information
    Storage Store below +30°C.
    Transport Information
    Declaration (railroad and road) ADR, RID UN 2296 , 3, II
    Declaration (transport by air) IATA-DGR UN 2296 , 3, II
    Declaration (transport by sea) IMDG-Code UN 2296 , 3, II
    Specifications
    Assay (GC, area%) ≥ 99 %
    Density (d 20 °C/ 4 °C) 0.769 - 0.770
    Identity (IR) passes test

    Storage and transportation:
    Should be sealed and stored in a dry, cool and ventilated warehouse

    Package:
    200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. Please fasten the lid as soon as possible after original packing to prevent the mixing of other substances such as moisture from affecting the product performance. Do not inhale dust and avoid skin and mucous membrane contact. Smoking, eating and drinking are prohibited in the workplace. After work, shower and change clothes. Store contaminated clothes separately and wash them before use. Maintain good hygiene habits.
    https://www.newtopchem.com/archives/43090
    Email us: info@newtopchem.com
    Methylcyclohexane CAS108-87-2 Cyclohxylmethane; heptanaphthene; methyl-cyclohexan; methylecyclohexane; Metylocykloheksan RTECS No. GV6125000 Molecular Formula C7H14 CAS No. 108-87-2 EINECS No. 203-624-3 UN Dangerous Goods Code (UN No.): 2296 Shipping name: Methylcyclohexane Hazardous classification :3 Packing Group II Customs code 2902 19 00 grade anhydrous Quality Level 100 vapor density 3.4 (vs air) vapor pressure 37 mmHg ( 20 °C) 83.2 mmHg ( 37.7 °C) Assay ≥99% form liquid autoignition temp. 545 °F impurities <0.002% water <0.005% water (100 mL pkg) evapn. residue <0.0005% refractive index n20/D 1.422 (lit.) bp 101 °C (lit.) mp −126 °C (lit.) density 0.77 g/mL at 25 °C (lit.) SMILES string CC1CCCCC1 InChI 1S/C7H14/c1-7-5-3-2-4-6-7/h7H,2-6H2,1H3 InChI key UAEPNZWRGJTJPN-UHFFFAOYSA-N Application Methylcyclohexane may be used as a solvent for the synthesis of unsolvated n-butylmagnesium chloride by the reaction of 1-chlorobutane with magnesium powder. It may also be used as the starting material to synthesize 1-methylcyclohexanecarboxylic acid. Pharmaceutical intermediates. Methylcyclohexane is an important organic solvent and extractant, which can be used as a solvent for rubber, paint, varnish (some paint solvents also use methylcyclohexane), and can be used as oil extractant. Methylcyclohexane can be used in organic synthesis as solvent and analytical reagent. In addition, methylcyclohexane can also be used as a standard for thermometer calibration. The correction solution is usually made of methylcyclohexane as the main component. Description Catalogue Number 806147 Description Methylcyclohexane Product Information CAS number 108-87-2 EC index number 601-018-00-7 EC number 203-624-3 Hill Formula C₇H₁₄ Chemical formula C₆H₁₁CH₃ Molar Mass 98.19 g/mol HS Code 2902 19 00 Structure formula Image Quality Level MQ200 Physicochemical Information Appearance Form: liquid Color: colorless Explosion limit 1.1 - 6.7 %(V) Flash point -4 °C Ignition temperature 260 °C Melting Point -126.6 °C Solubility 0.014 g/l Initial boiling point and boiling range 101 °C 214 °F - lit. Upper/lower flammability or explosive limits Upper explosion limit: 6.7 %(V) Lower explosion limit: 1.1 %(V) Toxicological Information LD 50 dermal LD50 Rabbit > 86000 mg/kg Safety Information according to GHS Hazard Pictogram(s) Hazard Statement(s) H225: Highly flammable liquid and vapour. H304: May be fatal if swallowed and enters airways. H315: Causes skin irritation. H336: May cause drowsiness or dizziness. H410: Very toxic to aquatic life with long lasting effects. Precautionary Statement(s) P210: Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking. P233: Keep container tightly closed. P273: Avoid release to the environment. P301 + P310: IF SWALLOWED: Immediately call a POISON CENTER/doctor. P303 + P361 + P353: IF ON SKIN (or hair): Take off immediately all contaminated clothing. Rinse skin with water. P331: Do NOT induce vomiting. P403 + P233: Store in a well-ventilated place. Keep container tightly closed. Signal Word Danger RTECS GV6125000 Storage class 3 Flammable liquids WGK WGK 2 obviously hazardous to water Safety Information Categories of danger highly flammable, irritant, harmful, dangerous for the environment Storage and Shipping Information Storage Store below +30°C. Transport Information Declaration (railroad and road) ADR, RID UN 2296 , 3, II Declaration (transport by air) IATA-DGR UN 2296 , 3, II Declaration (transport by sea) IMDG-Code UN 2296 , 3, II Specifications Assay (GC, area%) ≥ 99 % Density (d 20 °C/ 4 °C) 0.769 - 0.770 Identity (IR) passes test Storage and transportation: Should be sealed and stored in a dry, cool and ventilated warehouse Package: 200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. Please fasten the lid as soon as possible after original packing to prevent the mixing of other substances such as moisture from affecting the product performance. Do not inhale dust and avoid skin and mucous membrane contact. Smoking, eating and drinking are prohibited in the workplace. After work, shower and change clothes. Store contaminated clothes separately and wash them before use. Maintain good hygiene habits. https://www.newtopchem.com/archives/43090 Email us: info@newtopchem.com
    Type
    New
    Price
    $10 (USD)
    Status
    In stock
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  • TMG N,N,N,N-Tetramethylguanidine CAS No.: 80-70-6
    TMG N,N,N,N-Tetramethylguanidine CAS No.: 80-70-6

    N,N,N,N-Tetramethylguanidine
    CAS No.: 80-70-6

    Overview:
    Common Name: N,N,N,N-Tetramethylguanidine
    Other Chemical Names:
    N,N-Tetramethylguanidine;1,1,3,3-TetramethylGuanidine(TMG);1,1,3,3-Tetramethylgyanidine, 1,1,3,3-TetrChemicalbookamethylguanidine, ;N,N,N,N-Tetramethy1Guanidine; 1,1,3,3-Tetramethylguanidin; TMG; 1,1,3tetramethylguanidine
    MF:C5H13N3
    MW:115.18
    CAS:80-70-6

    Typical Properties

    Appearance Form: liquid
    Colour: light yellow
    PH 12.7 at 10 g/l at 25 °C
    Melting point/freezing point Melting point/range: -80 °C at 1,013 hPa
    Initial boiling point
    and boiling range 162 - 163 °C - lit.
    162 °C at 1,013 hPa
    Flash point 50 °C - closed cup
    Density 0.916g/cm3 at 20℃
    Vapour pressure 2.9 hPa at 20 °C


    Description
    In organic synthesis, 1,1,3,3-tetramethylguanidine is used as a strong, non-nucleophilic base. 1,1,3,3-tetramethylguanidine is an efficient and selective catalyst for alcohol benzoylation.
    Physical and chemical properties tetramethylguanidine is a colorless oily liquid, boiling point 160-162℃, density 0.918, refractive index 1.4692, is a strong organic base, soluble in toluene, cyclohexanone, ethanol, etc., also Chemicalbook soluble in water, easily hydrolyzed to tetramethyl urea in alkaline aqueous solution, corrosive, generally packed in galvanized iron drums.
    Applications
    NT CAT TMG can also be used as a catalyst for polyurethane foam and for even dyeing of nylon, wool and other proteins to improve the durability of wool, etc. It is mainly used in the synthesis of cefradine and other drugs.

    Storage Information
    NEWTOP Chemical recommends that our catalysts be stored in a dry and cool area under appropriate ventilation conditions. Each container should be closed tightly to avoid contamination with moisture or other negative influences that could change the products performance in the end use. The optimum storage temperature is between 10 °C and 30° C. Lower and higher storage temperatures are not preferable and should be avoided.

    Shelf Life:
    24 Months

    Standard Packaging:
    180KG Steel Drum
    900KG IBC Drum

    Sample contact:info@newtopchem.com
    More:https://www.newtopchem.com/archives/42570
    Technical support and business contacts E-mail:info@newtopchem.com
    TMG N,N,N,N-Tetramethylguanidine CAS No.: 80-70-6 N,N,N,N-Tetramethylguanidine CAS No.: 80-70-6 Overview: Common Name: N,N,N,N-Tetramethylguanidine Other Chemical Names: N,N-Tetramethylguanidine;1,1,3,3-TetramethylGuanidine(TMG);1,1,3,3-Tetramethylgyanidine, 1,1,3,3-TetrChemicalbookamethylguanidine, ;N,N,N,N-Tetramethy1Guanidine; 1,1,3,3-Tetramethylguanidin; TMG; 1,1,3tetramethylguanidine MF:C5H13N3 MW:115.18 CAS:80-70-6 Typical Properties Appearance Form: liquid Colour: light yellow PH 12.7 at 10 g/l at 25 °C Melting point/freezing point Melting point/range: -80 °C at 1,013 hPa Initial boiling point and boiling range 162 - 163 °C - lit. 162 °C at 1,013 hPa Flash point 50 °C - closed cup Density 0.916g/cm3 at 20℃ Vapour pressure 2.9 hPa at 20 °C Description In organic synthesis, 1,1,3,3-tetramethylguanidine is used as a strong, non-nucleophilic base. 1,1,3,3-tetramethylguanidine is an efficient and selective catalyst for alcohol benzoylation. Physical and chemical properties tetramethylguanidine is a colorless oily liquid, boiling point 160-162℃, density 0.918, refractive index 1.4692, is a strong organic base, soluble in toluene, cyclohexanone, ethanol, etc., also Chemicalbook soluble in water, easily hydrolyzed to tetramethyl urea in alkaline aqueous solution, corrosive, generally packed in galvanized iron drums. Applications NT CAT TMG can also be used as a catalyst for polyurethane foam and for even dyeing of nylon, wool and other proteins to improve the durability of wool, etc. It is mainly used in the synthesis of cefradine and other drugs. Storage Information NEWTOP Chemical recommends that our catalysts be stored in a dry and cool area under appropriate ventilation conditions. Each container should be closed tightly to avoid contamination with moisture or other negative influences that could change the products performance in the end use. The optimum storage temperature is between 10 °C and 30° C. Lower and higher storage temperatures are not preferable and should be avoided. Shelf Life: 24 Months Standard Packaging: 180KG Steel Drum 900KG IBC Drum Sample contact:info@newtopchem.com More:https://www.newtopchem.com/archives/42570 Technical support and business contacts E-mail:info@newtopchem.com
    Type
    New
    Price
    $10 (USD)
    Status
    In stock
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