• CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method New
    $10
    In stock
    Rm1104 ,No. 258, West SongXing Road, BaoShan District, Shanghai, China.
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    CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method

    Brief introduction.
    2,4,6-tris(dimethylaminomethyl)phenol, an organic chemical substance, molecular formula: C15H27N3O.
    Chinese name: 2,4,6-tris(dimethylaminomethyl)phenol
    Foreign name: 2,4,6-Tris(dimethylaminomethyl)phenol
    English alias: 2,4,6-tris[(dimethylamino)methyl]phenol
    Alias: Epoxy accelerator DMP-30; Tris(dimethylaminomethyl)phenol
    Appearance: transparent liquid
    Chemical formula: C15H27N3O
    Molecular weight: 271.4314
    CAS No.: 90-72-2
    EINECS number: 202-013-9
    Boiling point: 320.50 ℃
    Density: 1.054 g/cm³
    Flash point: 116.63 ℃
    Refractive index: 1.517

    Epoxy resin curing accelerator DMP-30 is 2,4,6 tris(dimethylaminomethyl)phenol, which is a tertiary amine curing agent. It can be used as an epoxy resin curing agent at room temperature, and also as an efficient accelerator for acid anhydride, polyvinylamine and aliphatic polyamine curing agents.
    This product contains phenolic hydroxyl group in its molecular structure, so the activity is increased and it can be used for fast curing, mainly for thermosetting epoxy resin curing agent and adhesive, and it can be used as accelerator of acid anhydride curing agent and amide curing agent for casting and pressure layer products, the amount of this product as curing agent is generally about 3-13%, and the amount as accelerator is generally 0.1-3%. This product can be used as a catalyst in rubber anti-ozone agent and rigid polyurethane foam raw material combination polyether.

    Production process.
    2000L reaction kettle, 200kg of phenol, 720kg of dimethylamine, 520kg of formaldehyde added dropwise below 50 degrees.
    kg, after drop addition, raise the temperature to 70 degrees, keep warm for 2 hours, lower the temperature to 50 degrees, add 100 kg of sodium chloride
    Sodium chloride, stir, let stand, stratify, and dehydrate the crude product under pressure.

    Method of preparation.
    After the reaction of phenol with dimethylamine and formaldehyde, the reaction products are stratified, dehydrated under vacuum and filtered to obtain the finished product.

    Theoretical unit consumption: (one ton of product)
    Phenol: 400 kg
    Dimethylamine (40% aqueous solution) 1440kg
    Formaldehyde (37% aqueous solution) 1040kg
    Produce waste water about 1.8 tons, mainly containing a small amount of formaldehyde

    Dosage:
    As accelerator dosage is about 1~5%
    As a curing agent dosage of about 10%

    Application areas.
    Use one
    Used as curing agent for thermosetting epoxy resin, adhesive, binder for laminate material and flooring, acid neutralizer and catalyst in polyurethane production
    Application 2
    Used as antioxidant, also used in dye preparation
    Application 3
    Used as curing agent for thermosetting epoxy resin, adhesive, sealant for laminate materials and flooring, acid neutralizer and catalyst in polyurethane production.

    Numbering system.
    CAS No.: 90-72-2
    MDL No.: MFCD00008330
    EINECS No.: 202-013-9
    RTECS No.: SN3500000
    BRN No.: 795751
    PubChem No.: 24900319

    Safety information.
    Package Class: III
    Hazard Class: 8
    Customs Code: 29222900
    Dangerous Goods Transport Code: UN 2735 8/PG 3
    WGK Germany: 1
    Hazardous category code: R22; R36/38
    Safety instructions: S26-S28-S2
    RTECS number: SN3500000
    Dangerous Goods Marking: Xn

    Safety terminology.
    S26 - Immediately after inadvertent contact with eyes, flush with plenty of water and seek medical advice.
    S28 - Immediately after inadvertent contact with skin, flush with plenty of soapy water.
    S2 - Avoid contact with children.
    S61 - Avoid release into the environment. Refer to special instructions/safety data sheet.
    S45 - In case of accident or discomfort, seek immediate medical attention (if possible, show its label).
    S36/37/39 - Wear appropriate protective clothing, gloves and goggles or mask.

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

    Packaging.
    200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. After the original packaging, please fasten the lid as soon as possible to prevent the mixing of other substances such as moisture to affect the performance of the product. 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.

    More:https://www.newtopchem.com/archives/39733
    CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method Brief introduction. 2,4,6-tris(dimethylaminomethyl)phenol, an organic chemical substance, molecular formula: C15H27N3O. Chinese name: 2,4,6-tris(dimethylaminomethyl)phenol Foreign name: 2,4,6-Tris(dimethylaminomethyl)phenol English alias: 2,4,6-tris[(dimethylamino)methyl]phenol Alias: Epoxy accelerator DMP-30; Tris(dimethylaminomethyl)phenol Appearance: transparent liquid Chemical formula: C15H27N3O Molecular weight: 271.4314 CAS No.: 90-72-2 EINECS number: 202-013-9 Boiling point: 320.50 ℃ Density: 1.054 g/cm³ Flash point: 116.63 ℃ Refractive index: 1.517 Epoxy resin curing accelerator DMP-30 is 2,4,6 tris(dimethylaminomethyl)phenol, which is a tertiary amine curing agent. It can be used as an epoxy resin curing agent at room temperature, and also as an efficient accelerator for acid anhydride, polyvinylamine and aliphatic polyamine curing agents. This product contains phenolic hydroxyl group in its molecular structure, so the activity is increased and it can be used for fast curing, mainly for thermosetting epoxy resin curing agent and adhesive, and it can be used as accelerator of acid anhydride curing agent and amide curing agent for casting and pressure layer products, the amount of this product as curing agent is generally about 3-13%, and the amount as accelerator is generally 0.1-3%. This product can be used as a catalyst in rubber anti-ozone agent and rigid polyurethane foam raw material combination polyether. Production process. 2000L reaction kettle, 200kg of phenol, 720kg of dimethylamine, 520kg of formaldehyde added dropwise below 50 degrees. kg, after drop addition, raise the temperature to 70 degrees, keep warm for 2 hours, lower the temperature to 50 degrees, add 100 kg of sodium chloride Sodium chloride, stir, let stand, stratify, and dehydrate the crude product under pressure. Method of preparation. After the reaction of phenol with dimethylamine and formaldehyde, the reaction products are stratified, dehydrated under vacuum and filtered to obtain the finished product. Theoretical unit consumption: (one ton of product) Phenol: 400 kg Dimethylamine (40% aqueous solution) 1440kg Formaldehyde (37% aqueous solution) 1040kg Produce waste water about 1.8 tons, mainly containing a small amount of formaldehyde Dosage: As accelerator dosage is about 1~5% As a curing agent dosage of about 10% Application areas. Use one Used as curing agent for thermosetting epoxy resin, adhesive, binder for laminate material and flooring, acid neutralizer and catalyst in polyurethane production Application 2 Used as antioxidant, also used in dye preparation Application 3 Used as curing agent for thermosetting epoxy resin, adhesive, sealant for laminate materials and flooring, acid neutralizer and catalyst in polyurethane production. Numbering system. CAS No.: 90-72-2 MDL No.: MFCD00008330 EINECS No.: 202-013-9 RTECS No.: SN3500000 BRN No.: 795751 PubChem No.: 24900319 Safety information. Package Class: III Hazard Class: 8 Customs Code: 29222900 Dangerous Goods Transport Code: UN 2735 8/PG 3 WGK Germany: 1 Hazardous category code: R22; R36/38 Safety instructions: S26-S28-S2 RTECS number: SN3500000 Dangerous Goods Marking: Xn Safety terminology. S26 - Immediately after inadvertent contact with eyes, flush with plenty of water and seek medical advice. S28 - Immediately after inadvertent contact with skin, flush with plenty of soapy water. S2 - Avoid contact with children. S61 - Avoid release into the environment. Refer to special instructions/safety data sheet. S45 - In case of accident or discomfort, seek immediate medical attention (if possible, show its label). S36/37/39 - Wear appropriate protective clothing, gloves and goggles or mask. Storage and transportation. Should be kept sealed and stored in a dry, cool and ventilated warehouse Packaging. 200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. After the original packaging, please fasten the lid as soon as possible to prevent the mixing of other substances such as moisture to affect the performance of the product. 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. More:https://www.newtopchem.com/archives/39733
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  • CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method New
    $10
    In stock
    Rm1104 ,No. 258, West SongXing Road, BaoShan District, Shanghai, China.
    0 Reviews
    CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method

    Brief introduction.
    2,4,6-tris(dimethylaminomethyl)phenol, an organic chemical substance, molecular formula: C15H27N3O.
    Chinese name: 2,4,6-tris(dimethylaminomethyl)phenol
    Foreign name: 2,4,6-Tris(dimethylaminomethyl)phenol
    English alias: 2,4,6-tris[(dimethylamino)methyl]phenol
    Alias: Epoxy accelerator DMP-30; Tris(dimethylaminomethyl)phenol
    Appearance: transparent liquid
    Chemical formula: C15H27N3O
    Molecular weight: 271.4314
    CAS No.: 90-72-2
    EINECS number: 202-013-9
    Boiling point: 320.50 ℃
    Density: 1.054 g/cm³
    Flash point: 116.63 ℃
    Refractive index: 1.517

    Epoxy resin curing accelerator DMP-30 is 2,4,6 tris(dimethylaminomethyl)phenol, which is a tertiary amine curing agent. It can be used as an epoxy resin curing agent at room temperature, and also as an efficient accelerator for acid anhydride, polyvinylamine and aliphatic polyamine curing agents.
    This product contains phenolic hydroxyl group in its molecular structure, so the activity is increased and it can be used for fast curing, mainly for thermosetting epoxy resin curing agent and adhesive, and it can be used as accelerator of acid anhydride curing agent and amide curing agent for casting and pressure layer products, the amount of this product as curing agent is generally about 3-13%, and the amount as accelerator is generally 0.1-3%. This product can be used as a catalyst in rubber anti-ozone agent and rigid polyurethane foam raw material combination polyether.

    Production process.
    2000L reaction kettle, 200kg of phenol, 720kg of dimethylamine, 520kg of formaldehyde added dropwise below 50 degrees.
    kg, after drop addition, raise the temperature to 70 degrees, keep warm for 2 hours, lower the temperature to 50 degrees, add 100 kg of sodium chloride
    Sodium chloride, stir, let stand, stratify, and dehydrate the crude product under pressure.

    Method of preparation.
    After the reaction of phenol with dimethylamine and formaldehyde, the reaction products are stratified, dehydrated under vacuum and filtered to obtain the finished product.

    Theoretical unit consumption: (one ton of product)
    Phenol: 400 kg
    Dimethylamine (40% aqueous solution) 1440kg
    Formaldehyde (37% aqueous solution) 1040kg
    Produce waste water about 1.8 tons, mainly containing a small amount of formaldehyde

    Dosage:
    As accelerator dosage is about 1~5%
    As a curing agent dosage of about 10%

    Application areas.
    Use one
    Used as curing agent for thermosetting epoxy resin, adhesive, binder for laminate material and flooring, acid neutralizer and catalyst in polyurethane production
    Application 2
    Used as antioxidant, also used in dye preparation
    Application 3
    Used as curing agent for thermosetting epoxy resin, adhesive, sealant for laminate materials and flooring, acid neutralizer and catalyst in polyurethane production.

    Numbering system.
    CAS No.: 90-72-2
    MDL No.: MFCD00008330
    EINECS No.: 202-013-9
    RTECS No.: SN3500000
    BRN No.: 795751
    PubChem No.: 24900319

    Safety information.
    Package Class: III
    Hazard Class: 8
    Customs Code: 29222900
    Dangerous Goods Transport Code: UN 2735 8/PG 3
    WGK Germany: 1
    Hazardous category code: R22; R36/38
    Safety instructions: S26-S28-S2
    RTECS number: SN3500000
    Dangerous Goods Marking: Xn

    Safety terminology.
    S26 - Immediately after inadvertent contact with eyes, flush with plenty of water and seek medical advice.
    S28 - Immediately after inadvertent contact with skin, flush with plenty of soapy water.
    S2 - Avoid contact with children.
    S61 - Avoid release into the environment. Refer to special instructions/safety data sheet.
    S45 - In case of accident or discomfort, seek immediate medical attention (if possible, show its label).
    S36/37/39 - Wear appropriate protective clothing, gloves and goggles or mask.

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

    Packaging.
    200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. After the original packaging, please fasten the lid as soon as possible to prevent the mixing of other substances such as moisture to affect the performance of the product. 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.

    More:https://www.newtopchem.com/archives/39733
    CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method Brief introduction. 2,4,6-tris(dimethylaminomethyl)phenol, an organic chemical substance, molecular formula: C15H27N3O. Chinese name: 2,4,6-tris(dimethylaminomethyl)phenol Foreign name: 2,4,6-Tris(dimethylaminomethyl)phenol English alias: 2,4,6-tris[(dimethylamino)methyl]phenol Alias: Epoxy accelerator DMP-30; Tris(dimethylaminomethyl)phenol Appearance: transparent liquid Chemical formula: C15H27N3O Molecular weight: 271.4314 CAS No.: 90-72-2 EINECS number: 202-013-9 Boiling point: 320.50 ℃ Density: 1.054 g/cm³ Flash point: 116.63 ℃ Refractive index: 1.517 Epoxy resin curing accelerator DMP-30 is 2,4,6 tris(dimethylaminomethyl)phenol, which is a tertiary amine curing agent. It can be used as an epoxy resin curing agent at room temperature, and also as an efficient accelerator for acid anhydride, polyvinylamine and aliphatic polyamine curing agents. This product contains phenolic hydroxyl group in its molecular structure, so the activity is increased and it can be used for fast curing, mainly for thermosetting epoxy resin curing agent and adhesive, and it can be used as accelerator of acid anhydride curing agent and amide curing agent for casting and pressure layer products, the amount of this product as curing agent is generally about 3-13%, and the amount as accelerator is generally 0.1-3%. This product can be used as a catalyst in rubber anti-ozone agent and rigid polyurethane foam raw material combination polyether. Production process. 2000L reaction kettle, 200kg of phenol, 720kg of dimethylamine, 520kg of formaldehyde added dropwise below 50 degrees. kg, after drop addition, raise the temperature to 70 degrees, keep warm for 2 hours, lower the temperature to 50 degrees, add 100 kg of sodium chloride Sodium chloride, stir, let stand, stratify, and dehydrate the crude product under pressure. Method of preparation. After the reaction of phenol with dimethylamine and formaldehyde, the reaction products are stratified, dehydrated under vacuum and filtered to obtain the finished product. Theoretical unit consumption: (one ton of product) Phenol: 400 kg Dimethylamine (40% aqueous solution) 1440kg Formaldehyde (37% aqueous solution) 1040kg Produce waste water about 1.8 tons, mainly containing a small amount of formaldehyde Dosage: As accelerator dosage is about 1~5% As a curing agent dosage of about 10% Application areas. Use one Used as curing agent for thermosetting epoxy resin, adhesive, binder for laminate material and flooring, acid neutralizer and catalyst in polyurethane production Application 2 Used as antioxidant, also used in dye preparation Application 3 Used as curing agent for thermosetting epoxy resin, adhesive, sealant for laminate materials and flooring, acid neutralizer and catalyst in polyurethane production. Numbering system. CAS No.: 90-72-2 MDL No.: MFCD00008330 EINECS No.: 202-013-9 RTECS No.: SN3500000 BRN No.: 795751 PubChem No.: 24900319 Safety information. Package Class: III Hazard Class: 8 Customs Code: 29222900 Dangerous Goods Transport Code: UN 2735 8/PG 3 WGK Germany: 1 Hazardous category code: R22; R36/38 Safety instructions: S26-S28-S2 RTECS number: SN3500000 Dangerous Goods Marking: Xn Safety terminology. S26 - Immediately after inadvertent contact with eyes, flush with plenty of water and seek medical advice. S28 - Immediately after inadvertent contact with skin, flush with plenty of soapy water. S2 - Avoid contact with children. S61 - Avoid release into the environment. Refer to special instructions/safety data sheet. S45 - In case of accident or discomfort, seek immediate medical attention (if possible, show its label). S36/37/39 - Wear appropriate protective clothing, gloves and goggles or mask. Storage and transportation. Should be kept sealed and stored in a dry, cool and ventilated warehouse Packaging. 200KG/drum Storage: It is recommended to store in dry and cool area with proper ventilation. After the original packaging, please fasten the lid as soon as possible to prevent the mixing of other substances such as moisture to affect the performance of the product. 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. More:https://www.newtopchem.com/archives/39733
    0 Comments 0 Shares 396 Views 0 Reviews
  • Feed Mycotoxin Binders Market Size, Share And Outlook 2023

    The global Feed Mycotoxin Binders Market Size was valued at $144.6 million in 2021 and is projected to reach $393.9 million by 2031, growing at a CAGR of 10.2% from 2022 to 2031. Feed mycotoxin binders are an ingredient that is used in animal feed to trap mycotoxins, preventing them to enter the bloodstream. Mycotoxin can cause serious damage to animals.

    Request For Free Sample: https://www.alliedmarketresearch.com/request-sample/17326

    The key players operating in the global Feed Mycotoxin Binders Market include Alltech, Inc., BASF SE, Bentoli, Inc., BERTOL COMPANY s.r.o, Cargill, Incorporated, Clariant Ltd, Koninklijke DSM N.V., EW Nutrition GmbH, GLOBAL NUTRITECH, Impextraco N.V., Norel, S.A, SVH Holding N.V., Olmix S.A., Perstorp Holding AB, Simfa Labs Pvt. Ltd., Virbac S.A., and Kemin Industries, Inc.

    Key Benefits For Stakeholders

    This report provides a quantitative analysis of the market segments, current trends, estimations, and dynamics of the feed mycotoxin binders market analysis from 2021 to 2031 to identify the prevailing feed mycotoxin binders market opportunities.
    The market research is offered along with information related to key drivers, restraints, and opportunities.
    Porter's five forces analysis highlights the potency of buyers and suppliers to enable stakeholders make profit-oriented business decisions and strengthen their supplier-buyer network.
    In-depth analysis of the feed mycotoxin binders market segmentation assists to determine the prevailing market opportunities.
    Major countries in each region are mapped according to their revenue contribution to the global market.
    Market player positioning facilitates benchmarking and provides a clear understanding of the present position of the market players.
    Buy Now & Get Exclusive Discount on this Report : https://www.alliedmarketresearch.com/checkout-final/c7cc1aa54a4917e9586266e0fbd64933

    Browse Other Trending Reports:

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    Feed Mycotoxin Binders Market Size, Share And Outlook 2023 The global Feed Mycotoxin Binders Market Size was valued at $144.6 million in 2021 and is projected to reach $393.9 million by 2031, growing at a CAGR of 10.2% from 2022 to 2031. Feed mycotoxin binders are an ingredient that is used in animal feed to trap mycotoxins, preventing them to enter the bloodstream. Mycotoxin can cause serious damage to animals. Request For Free Sample: https://www.alliedmarketresearch.com/request-sample/17326 The key players operating in the global Feed Mycotoxin Binders Market include Alltech, Inc., BASF SE, Bentoli, Inc., BERTOL COMPANY s.r.o, Cargill, Incorporated, Clariant Ltd, Koninklijke DSM N.V., EW Nutrition GmbH, GLOBAL NUTRITECH, Impextraco N.V., Norel, S.A, SVH Holding N.V., Olmix S.A., Perstorp Holding AB, Simfa Labs Pvt. Ltd., Virbac S.A., and Kemin Industries, Inc. Key Benefits For Stakeholders This report provides a quantitative analysis of the market segments, current trends, estimations, and dynamics of the feed mycotoxin binders market analysis from 2021 to 2031 to identify the prevailing feed mycotoxin binders market opportunities. The market research is offered along with information related to key drivers, restraints, and opportunities. Porter's five forces analysis highlights the potency of buyers and suppliers to enable stakeholders make profit-oriented business decisions and strengthen their supplier-buyer network. In-depth analysis of the feed mycotoxin binders market segmentation assists to determine the prevailing market opportunities. Major countries in each region are mapped according to their revenue contribution to the global market. Market player positioning facilitates benchmarking and provides a clear understanding of the present position of the market players. Buy Now & Get Exclusive Discount on this Report : https://www.alliedmarketresearch.com/checkout-final/c7cc1aa54a4917e9586266e0fbd64933 Browse Other Trending Reports: Gluten free snacks market Edible animal fat market Body Dryer Market Post-Op shoe Market Wok Market Derma Rollers Market Womens Activewear Market
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  • Industrial Coatings Market Share, Demand, Analysis, Growth, Size and Forecast 2028
    The global industrial coatings industry is set to impetus from the increasing focus of manufacturers towards developing greener processes. These processes would help in creating fewer emissions and wastes, as well as use lesser energy. This information is given by Fortune Business Insights™ in a new report, titled, “Industrial Coatings Market Size, Share & COVID-19 Impact Analysis, By Resin (Acrylic, Alkyd, Polyurethane, Epoxy, Polyester, and Others), By Technology (Solvent-borne, Water-borne, Powder, and Others), By End-use (General Industrial, Powder, Automotive OEM, Automotive Refinish, Protective, Wood, Marine, Coil, Packaging, and Others), and Regional Forecast, 2020-2027.” The report further states that this market size was USD 86.81 billion in 2019 and is projected to reach USD 119.54 billion by 2027, exhibiting a CAGR of 4.4% during the forecast period.

    Drivers & Restraints-

    Rising Environmental Concerns to Bolster Growth

    The manufacturing process of industrial coatings releases volatile organic compounds (VOCs) that must be eliminated effectively. These organic chemicals turn to gases once they are kept at room temperature. VOC is the main cause of ground-level air pollution. Hence, nowadays several manufacturers are rapidly inclining towards powder-based or water-borne coatings to maintain sustainability. This factor is set to propel the industrial coatings market growth in the coming years. However, these coatings are prone to drying quickly, which, in turn, may hamper growth.

    Segment-

    Acrylic Segment to Hold Major Share Backed by High Demand from Biomedicine Industry

    Based on resin, the acrylic segment held the major industrial coatings market share in 2019. This growth is attributable to the increasing demand for ceramic from the biomedicine industry. Binders or resins are capable of holding every component of coatings together. The alky segment would showcase considerable growth in the near future because of its cost-effective and versatile nature.

    Regional Analysis-

    Asia Pacific to Remain at the Forefront Fueled by Rising Production of Automotive

    Geographically, Asia Pacific procured USD 36.5 billion in terms of revenue in 2019. The region is set to retain its dominant position in the market throughout the forthcoming years. This growth is attributable to increasing consumer spending and rising automotive production. Additionally, the rising government subsidies, interest rates, general industrial production, and construction activities in this region would spur demand.

    Europe, on the other hand, is expected to show significant growth stoked by the ongoing developments in the oil & gas sector. At the same time, the rising usage of powder coatings owing to the rapid technological advancements in this sector would drive growth.


    Browse Link:

    https://www.fortunebusinessinsights.com/industry-reports/industrial-coatings-market-101741
    Industrial Coatings Market Share, Demand, Analysis, Growth, Size and Forecast 2028 The global industrial coatings industry is set to impetus from the increasing focus of manufacturers towards developing greener processes. These processes would help in creating fewer emissions and wastes, as well as use lesser energy. This information is given by Fortune Business Insights™ in a new report, titled, “Industrial Coatings Market Size, Share & COVID-19 Impact Analysis, By Resin (Acrylic, Alkyd, Polyurethane, Epoxy, Polyester, and Others), By Technology (Solvent-borne, Water-borne, Powder, and Others), By End-use (General Industrial, Powder, Automotive OEM, Automotive Refinish, Protective, Wood, Marine, Coil, Packaging, and Others), and Regional Forecast, 2020-2027.” The report further states that this market size was USD 86.81 billion in 2019 and is projected to reach USD 119.54 billion by 2027, exhibiting a CAGR of 4.4% during the forecast period. Drivers & Restraints- Rising Environmental Concerns to Bolster Growth The manufacturing process of industrial coatings releases volatile organic compounds (VOCs) that must be eliminated effectively. These organic chemicals turn to gases once they are kept at room temperature. VOC is the main cause of ground-level air pollution. Hence, nowadays several manufacturers are rapidly inclining towards powder-based or water-borne coatings to maintain sustainability. This factor is set to propel the industrial coatings market growth in the coming years. However, these coatings are prone to drying quickly, which, in turn, may hamper growth. Segment- Acrylic Segment to Hold Major Share Backed by High Demand from Biomedicine Industry Based on resin, the acrylic segment held the major industrial coatings market share in 2019. This growth is attributable to the increasing demand for ceramic from the biomedicine industry. Binders or resins are capable of holding every component of coatings together. The alky segment would showcase considerable growth in the near future because of its cost-effective and versatile nature. Regional Analysis- Asia Pacific to Remain at the Forefront Fueled by Rising Production of Automotive Geographically, Asia Pacific procured USD 36.5 billion in terms of revenue in 2019. The region is set to retain its dominant position in the market throughout the forthcoming years. This growth is attributable to increasing consumer spending and rising automotive production. Additionally, the rising government subsidies, interest rates, general industrial production, and construction activities in this region would spur demand. Europe, on the other hand, is expected to show significant growth stoked by the ongoing developments in the oil & gas sector. At the same time, the rising usage of powder coatings owing to the rapid technological advancements in this sector would drive growth. Browse Link: https://www.fortunebusinessinsights.com/industry-reports/industrial-coatings-market-101741
    WWW.FORTUNEBUSINESSINSIGHTS.COM
    Industrial Coatings Market Size, Segments | Report [2028]
    The global industrial coatings market is projected to grow from $137.1 billion in 2021 to $183.2 billion in 2028 at a CAGR of 4.2% in forecast period, 2021-2028
    0 Comments 0 Shares 654 Views 0 Reviews
  • The global industrial coatings market is set to impetus from the increasing focus of manufacturers towards developing greener processes. These processes would help in creating fewer emissions and wastes, as well as use lesser energy. This information is given by Fortune Business Insights™ in a new report, titled, “Industrial Coatings Market Size, Share & COVID-19 Impact Analysis, By Resin (Acrylic, Alkyd, Polyurethane, Epoxy, Polyester, and Others), By Technology (Solvent-borne, Water-borne, Powder, and Others), By End-use (General Industrial, Powder, Automotive OEM, Automotive Refinish, Protective, Wood, Marine, Coil, Packaging, and Others), and Regional Forecast, 2020-2027.” The report further states that this market size was USD 86.81 billion in 2019 and is projected to reach USD 119.54 billion by 2027, exhibiting a CAGR of 4.4% during the forecast period.


    Segment-

    Acrylic Segment to Hold Major Share Backed by High Demand from Biomedicine Industry

    Based on resin, the acrylic segment held the major industrial coatings market share in 2019. This growth is attributable to the increasing demand for ceramic from the biomedicine industry. Binders or resins are capable of holding every component of coatings together. The alky segment would showcase considerable growth in the near future because of its cost-effective and versatile nature.

    Regional Analysis-

    Asia Pacific to Remain at the Forefront Fueled by Rising Production of Automotive

    Geographically, Asia Pacific procured USD 36.5 billion in terms of revenue in 2019. The region is set to retain its dominant position in the market throughout the forthcoming years. This growth is attributable to increasing consumer spending and rising automotive production. Additionally, the rising government subsidies, interest rates, general industrial production, and construction activities in this region would spur demand.

    Europe, on the other hand, is expected to show significant growth stoked by the ongoing developments in the oil & gas sector. At the same time, the rising usage of powder coatings owing to the rapid technological advancements in this sector would drive growth.

    Competitive Landscape-

    Key Players Focus on Launching Novel Industrial Coatings to Strengthen Their Positions

    The market is highly fragmented in nature backed by the presence of multiple prominent domestic and international companies. Most of them are focusing on launching state-of-the-art products to cater to the high demand from various end-use industries. Below are the two latest industry developments:

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    https://www.fortunebusinessinsights.com/industry-reports/industrial-coatings-market-101741
    The global industrial coatings market is set to impetus from the increasing focus of manufacturers towards developing greener processes. These processes would help in creating fewer emissions and wastes, as well as use lesser energy. This information is given by Fortune Business Insights™ in a new report, titled, “Industrial Coatings Market Size, Share & COVID-19 Impact Analysis, By Resin (Acrylic, Alkyd, Polyurethane, Epoxy, Polyester, and Others), By Technology (Solvent-borne, Water-borne, Powder, and Others), By End-use (General Industrial, Powder, Automotive OEM, Automotive Refinish, Protective, Wood, Marine, Coil, Packaging, and Others), and Regional Forecast, 2020-2027.” The report further states that this market size was USD 86.81 billion in 2019 and is projected to reach USD 119.54 billion by 2027, exhibiting a CAGR of 4.4% during the forecast period. Segment- Acrylic Segment to Hold Major Share Backed by High Demand from Biomedicine Industry Based on resin, the acrylic segment held the major industrial coatings market share in 2019. This growth is attributable to the increasing demand for ceramic from the biomedicine industry. Binders or resins are capable of holding every component of coatings together. The alky segment would showcase considerable growth in the near future because of its cost-effective and versatile nature. Regional Analysis- Asia Pacific to Remain at the Forefront Fueled by Rising Production of Automotive Geographically, Asia Pacific procured USD 36.5 billion in terms of revenue in 2019. The region is set to retain its dominant position in the market throughout the forthcoming years. This growth is attributable to increasing consumer spending and rising automotive production. Additionally, the rising government subsidies, interest rates, general industrial production, and construction activities in this region would spur demand. Europe, on the other hand, is expected to show significant growth stoked by the ongoing developments in the oil & gas sector. At the same time, the rising usage of powder coatings owing to the rapid technological advancements in this sector would drive growth. Competitive Landscape- Key Players Focus on Launching Novel Industrial Coatings to Strengthen Their Positions The market is highly fragmented in nature backed by the presence of multiple prominent domestic and international companies. Most of them are focusing on launching state-of-the-art products to cater to the high demand from various end-use industries. Below are the two latest industry developments: Browse Link: https://www.fortunebusinessinsights.com/industry-reports/industrial-coatings-market-101741
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    Industrial Coatings Market Size, Segments | Report [2028]
    The global industrial coatings market is projected to grow from $137.1 billion in 2021 to $183.2 billion in 2028 at a CAGR of 4.2% in forecast period, 2021-2028
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