• Commodity Chemicals Market Resurgence: Addressing Market Challenges with Resilience
    Commodity Chemicals Market is thriving on Surge in Industrialization


    The commodity chemicals market comprise of basic chemicals that serve as raw materials and intermediates for various end-use industries such as construction, automotive, healthcare, packaging, and others. Commodity chemicals find widespread applications in manufacturing plastics, synthetic rubbers, fibers, solvents, adhesives, agricultural chemicals, and numerous other products.

    The commodity chemicals are basic building blocks for a wide range of industrial and consumer goods. Ethanolamines, ethylene, propylene, butadiene, benzene, toluene, xylene,Methanol and formaldehyde are some of the major commodity chemicals. They are widely used as intermediates in various manufacturing processes and end products. The commodity chemicals market is driven by the fast-paced industrialization and infrastructure development activities worldwide. Rapid urbanization and rising disposable income are fueling the sales of end-use commodities like furniture, electronics, textiles, and packaging, thereby augmenting the market growth.

    The Global Commodity Chemicals Market is estimated to be valued at US$ 67.72 Bn in 2024 and is expected to exhibit a CAGR of 6.6% over the forecast period 2023 to 2030.

    Key Takeaways
    Key players operating in the commodity chemicals market are BASF SE, Dow Inc., SABIC, and LyondellBasell Industries. BASF SE is one of the leading producers of commodity chemicals globally. Dow Inc. offers a wide range of basic and intermediate chemicals.
    Commodity Chemicals Market Resurgence: Addressing Market Challenges with Resilience Commodity Chemicals Market is thriving on Surge in Industrialization The commodity chemicals market comprise of basic chemicals that serve as raw materials and intermediates for various end-use industries such as construction, automotive, healthcare, packaging, and others. Commodity chemicals find widespread applications in manufacturing plastics, synthetic rubbers, fibers, solvents, adhesives, agricultural chemicals, and numerous other products. The commodity chemicals are basic building blocks for a wide range of industrial and consumer goods. Ethanolamines, ethylene, propylene, butadiene, benzene, toluene, xylene,Methanol and formaldehyde are some of the major commodity chemicals. They are widely used as intermediates in various manufacturing processes and end products. The commodity chemicals market is driven by the fast-paced industrialization and infrastructure development activities worldwide. Rapid urbanization and rising disposable income are fueling the sales of end-use commodities like furniture, electronics, textiles, and packaging, thereby augmenting the market growth. The Global Commodity Chemicals Market is estimated to be valued at US$ 67.72 Bn in 2024 and is expected to exhibit a CAGR of 6.6% over the forecast period 2023 to 2030. Key Takeaways Key players operating in the commodity chemicals market are BASF SE, Dow Inc., SABIC, and LyondellBasell Industries. BASF SE is one of the leading producers of commodity chemicals globally. Dow Inc. offers a wide range of basic and intermediate chemicals.
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  • The rim of a wheel surrounds the ring-shaped tire, which helps the vehicle's weight be transferred to the ground and provides grip on the surface being travelled over. The Saudi Arabian automotive industry's quick development helps fuel the expansion of the KSA Tire Market. Tires’ rubber compound and other ingredients allow for efficient performance in a variety of situations. A tire is made up of many different parts, including the tread, sidewall, inner liner, belts, and body ply. The body ply provides the tyre its shape, and the belt strengthens and stabilises the tread region. Tiers are typically used in passenger automobiles, commercial vehicles, two-wheelers, and three-wheelers.

    Read More: Https://Blogmatrix15.Blogspot.Com/2023/07/Ksa-Tire-Market-Overview-Size-Trends.Html

    #KSATireMarket #CoherentMarketInsights #KSATireMarketInsights #KSATire#CarTires #CommercialVehicleTires #OffRoadTires #Bicycles #Motorcycles
    The rim of a wheel surrounds the ring-shaped tire, which helps the vehicle's weight be transferred to the ground and provides grip on the surface being travelled over. The Saudi Arabian automotive industry's quick development helps fuel the expansion of the KSA Tire Market. Tires’ rubber compound and other ingredients allow for efficient performance in a variety of situations. A tire is made up of many different parts, including the tread, sidewall, inner liner, belts, and body ply. The body ply provides the tyre its shape, and the belt strengthens and stabilises the tread region. Tiers are typically used in passenger automobiles, commercial vehicles, two-wheelers, and three-wheelers. Read More: Https://Blogmatrix15.Blogspot.Com/2023/07/Ksa-Tire-Market-Overview-Size-Trends.Html #KSATireMarket #CoherentMarketInsights #KSATireMarketInsights #KSATire#CarTires #CommercialVehicleTires #OffRoadTires #Bicycles #Motorcycles
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  • Methylcyclohexane CAS108-87-2
    Rm1104 ,No. 258, West SongXing Road, BaoShan District, Shanghai, China.
    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
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  • NT CAT PC-8 CAS No.:98-94-2 Synthesis method and application
    Rm1104 ,No. 258, West SongXing Road, BaoShan District, Shanghai, China.
    NT CAT PC-8 CAS No.:98-94-2 Synthesis method and application

    Brief introduction.
    Chemical Chinese name: N,N-dimethylcyclohexylamine
    Chemical English name: N,N-dimethylcyclohexylamine; dimethyl aminocy clohexane
    Chemical Alias: Dimethyl aminocyclohexane
    CAS No.: 98-94-2
    EC No.: 202-715-5
    Molecular formula: C8H17N

    Synthesis method.
    N,N-dimethylaniline catalytic chlorination method
    In 1904, Sabatier et al. carried out the gas-phase hydrogenation of N,N a dimethylamine at a temperature of 160-180°C and at atmospheric pressure to produce DMCHA.

    Phenol method
    This method uses Pd or Rh as the catalyst, and phenol dimethylamine and hydrogen as raw materials. For example, when Pd is the catalyst, the catalyst dosage is 0.2~0.5, and the process conditions are 60~150℃, hydrogen pressure 0.15~0.48MPa, reaction time 6h, and the yield is between 70~80%. The raw material is available, and the reaction conditions are mild, but the catalyst is made of precious metals, and the yield is low.

    Cyclohexylamine method
    The process also uses formaldehyde and formic acid to react with cyclohexylamine, or uses oxides of Bi, Sb, Mg, A1, Lu, etc. as catalysts to react cyclohexylamine with methanol to methylate cyclohexylamine to produce DMCHA. the disadvantage of this method is the low selectivity of the former reaction, and the yield of the later methylation is not high.

    Cyclohexanone method
    Among the methods for the synthesis of DMCHA, the reductive amination method using cyclohexanone as raw material has more advantages: high conversion, yield and selectivity. The processes using Pd/C catalyst or Cu-A1 catalyst have their own characteristics and are currently under development in China.

    Uses.
    [Use I] Mainly used as polyurethane hard foam catalyst
    [Use II] N,N-dimethylcyclohexylamine can be used in a wide range of rigid foams. N,N-Dimethylcyclohexylamine is also suitable for the manufacture of rigid foam furniture frames and decorative parts. It can be used as the main catalyst alone in rigid foam products without the addition of organotin, or it can be supplemented with JD series catalysts according to the process and product requirements. It is also used as intermediate of rubber accelerator and synthetic fiber.
    Use III】It is used as intermediate of dyestuff, used to make vanillin, azo dyestuff, triphenylmethane dyestuff, also can be used as solvent, stabilizer, analysis reagent, etc.. Also used as catalyst.

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

    Package: 200KG/drum
    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 packaging to prevent the mixing of other substances such as moisture and other substances 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/40458
    NT CAT PC-8 CAS No.:98-94-2 Synthesis method and application Brief introduction. Chemical Chinese name: N,N-dimethylcyclohexylamine Chemical English name: N,N-dimethylcyclohexylamine; dimethyl aminocy clohexane Chemical Alias: Dimethyl aminocyclohexane CAS No.: 98-94-2 EC No.: 202-715-5 Molecular formula: C8H17N Synthesis method. N,N-dimethylaniline catalytic chlorination method In 1904, Sabatier et al. carried out the gas-phase hydrogenation of N,N a dimethylamine at a temperature of 160-180°C and at atmospheric pressure to produce DMCHA. Phenol method This method uses Pd or Rh as the catalyst, and phenol dimethylamine and hydrogen as raw materials. For example, when Pd is the catalyst, the catalyst dosage is 0.2~0.5, and the process conditions are 60~150℃, hydrogen pressure 0.15~0.48MPa, reaction time 6h, and the yield is between 70~80%. The raw material is available, and the reaction conditions are mild, but the catalyst is made of precious metals, and the yield is low. Cyclohexylamine method The process also uses formaldehyde and formic acid to react with cyclohexylamine, or uses oxides of Bi, Sb, Mg, A1, Lu, etc. as catalysts to react cyclohexylamine with methanol to methylate cyclohexylamine to produce DMCHA. the disadvantage of this method is the low selectivity of the former reaction, and the yield of the later methylation is not high. Cyclohexanone method Among the methods for the synthesis of DMCHA, the reductive amination method using cyclohexanone as raw material has more advantages: high conversion, yield and selectivity. The processes using Pd/C catalyst or Cu-A1 catalyst have their own characteristics and are currently under development in China. Uses. [Use I] Mainly used as polyurethane hard foam catalyst [Use II] N,N-dimethylcyclohexylamine can be used in a wide range of rigid foams. N,N-Dimethylcyclohexylamine is also suitable for the manufacture of rigid foam furniture frames and decorative parts. It can be used as the main catalyst alone in rigid foam products without the addition of organotin, or it can be supplemented with JD series catalysts according to the process and product requirements. It is also used as intermediate of rubber accelerator and synthetic fiber. Use III】It is used as intermediate of dyestuff, used to make vanillin, azo dyestuff, triphenylmethane dyestuff, also can be used as solvent, stabilizer, analysis reagent, etc.. Also used as catalyst. Storage and transportation. Should be sealed and stored in a dry, cool and ventilated warehouse Package: 200KG/drum 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 packaging to prevent the mixing of other substances such as moisture and other substances 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/40458
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  • CAS: 90-72-2 2,4,6-Tris(dimethylaminomethyl)phenol Production Process and Method
    Rm1104 ,No. 258, West SongXing Road, BaoShan District, Shanghai, China.
    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.
    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. https://www.newtopchem.com/archives/39733
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  • N,N-dimethylcyclohexylamine CAS 98-94-2
    Jining High-tech Development Zone, Shandong, China/honda@ohans.com candy@ohans.com
    N,N-dimethylcyclohexylamine CAS 98-94-2

    Descriptions:
    Product:N,N-dimethylcyclohexylamine
    CAS: 98-94-2

    Physicochemical properties:
    Density 0.9±0.1 g/cm3
    Boiling point 162.0±8.0 °C at 760 mmHg
    Melting point -60 °C
    Molecular Formula C8H17N
    Molecular Weight 127.227
    Flash point 42.2±0.0 °C
    Accurate mass 127.136101
    PSA 3.24000
    LogP 2.12
    Appearance Transparent liquid
    Vapor pressure 2.2±0.3 mmHg at 25°C
    Refractive index 1.460
    Stability
    1.Stabilization
    2.Forbidden ligand strong oxidant, strong acid, acyl chloride, anhydride
    3.Avoid heat in contact conditions
    4.Hazardous Polymerization no polymerize
    Water solubility 10 g/L (20 ºC)
    Freezing point <-77℃
    Molecular structure
    1、Molar refraction index:40.89
    2、Molar volume(cm3/mol):149.3
    3、Parachor(90.2K):345.1
    4、Surface tension(dyne/cm):28.5
    5、Polarizability:16.21

    Application:
    【1】
    Mainly used as polyurethane rigid foam catalyst
    【2】
    N, N-dimethylcyclohexylamine can be used in a wide range of rigid foams. One of the main applications is for insulating foams, including sprays, plates, laminated sheets and refrigeration formulations. N, N- dimethylcyclohexylamine is also suitable for the manufacture of rigid foam furniture frames and decorative parts. The catalyst can be used as the main catalyst alone, without adding organic tin, or supplemented with JD series catalyst according to the process and product requirements. It is also used as a rubber accelerator and as an intermediate in synthetic fibers.
    【3】
    Used as dye intermediates, used for vanillin, azo dyes, triphenylmethane dyes, also can be used as solvents, stabilizers, analytical reagents and so on. Also used as a catalyst.

    Storage and transport information:
    1.Store in a cool and ventilated warehouse. Keep away from fire and heat source. The storage temperature should not exceed 30℃. Keep container sealed. Should be stored separately with oxidizer, acid, etc., do not mix storage. Explosion-proof lighting and ventilation facilities are adopted. Do not use mechanical equipment and tools that may cause sparks. The storage area shall be equipped with leakage emergency treatment equipment and suitable storage materials.
    2.Packed in iron drums, 50kg/ drum, 170kg/ drum. Flammable liquid <2>, sealed, stored in a cool place, away from fire source, fire transportation.

    Packaging:
    200KG/ drum storage: It is recommended to store in dry and cool areas and properly ventilated. After the original packaging, please fasten the packaging cover as soon as possible to prevent moisture and other substances from mixing and 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. Store contaminated clothes separately and reuse them after washing. Maintain good hygiene.



    Contact Us
    SHANGHAI OHANS CO., LTD.
    Factory Address :Jining High-tech Development Zone, Shandong, China
    Call Center :021-5161-9971
    Headquarters :Room a2110, building 55, No. 709, Lingshi Road, Zhabei District, Shanghai
    Email Us :honda@ohans.com candy@ohans.com

    More:https://www.ohans.com/nn-dimethylcyclohexylamine-cas-98-94-2-pdf/
    N,N-dimethylcyclohexylamine CAS 98-94-2 Descriptions: Product:N,N-dimethylcyclohexylamine CAS: 98-94-2 Physicochemical properties: Density 0.9±0.1 g/cm3 Boiling point 162.0±8.0 °C at 760 mmHg Melting point -60 °C Molecular Formula C8H17N Molecular Weight 127.227 Flash point 42.2±0.0 °C Accurate mass 127.136101 PSA 3.24000 LogP 2.12 Appearance Transparent liquid Vapor pressure 2.2±0.3 mmHg at 25°C Refractive index 1.460 Stability 1.Stabilization 2.Forbidden ligand strong oxidant, strong acid, acyl chloride, anhydride 3.Avoid heat in contact conditions 4.Hazardous Polymerization no polymerize Water solubility 10 g/L (20 ºC) Freezing point <-77℃ Molecular structure 1、Molar refraction index:40.89 2、Molar volume(cm3/mol):149.3 3、Parachor(90.2K):345.1 4、Surface tension(dyne/cm):28.5 5、Polarizability:16.21 Application: 【1】 Mainly used as polyurethane rigid foam catalyst 【2】 N, N-dimethylcyclohexylamine can be used in a wide range of rigid foams. One of the main applications is for insulating foams, including sprays, plates, laminated sheets and refrigeration formulations. N, N- dimethylcyclohexylamine is also suitable for the manufacture of rigid foam furniture frames and decorative parts. The catalyst can be used as the main catalyst alone, without adding organic tin, or supplemented with JD series catalyst according to the process and product requirements. It is also used as a rubber accelerator and as an intermediate in synthetic fibers. 【3】 Used as dye intermediates, used for vanillin, azo dyes, triphenylmethane dyes, also can be used as solvents, stabilizers, analytical reagents and so on. Also used as a catalyst. Storage and transport information: 1.Store in a cool and ventilated warehouse. Keep away from fire and heat source. The storage temperature should not exceed 30℃. Keep container sealed. Should be stored separately with oxidizer, acid, etc., do not mix storage. Explosion-proof lighting and ventilation facilities are adopted. Do not use mechanical equipment and tools that may cause sparks. The storage area shall be equipped with leakage emergency treatment equipment and suitable storage materials. 2.Packed in iron drums, 50kg/ drum, 170kg/ drum. Flammable liquid <2>, sealed, stored in a cool place, away from fire source, fire transportation. Packaging: 200KG/ drum storage: It is recommended to store in dry and cool areas and properly ventilated. After the original packaging, please fasten the packaging cover as soon as possible to prevent moisture and other substances from mixing and 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. Store contaminated clothes separately and reuse them after washing. Maintain good hygiene. Contact Us SHANGHAI OHANS CO., LTD. Factory Address :Jining High-tech Development Zone, Shandong, China Call Center :021-5161-9971 Headquarters :Room a2110, building 55, No. 709, Lingshi Road, Zhabei District, Shanghai Email Us :honda@ohans.com candy@ohans.com More:https://www.ohans.com/nn-dimethylcyclohexylamine-cas-98-94-2-pdf/
    النوع
    جديد
    السعر
    Rs.10 (PKR)
    الحالة
    In stock
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  • <a href="http://www.yahongpipe.com/pvc-pipe-fittings/cpvc-pipe-fitting/">CPVC Pipe Fitting suppliers</a> CPVC Pressure Pipe Fittings
    1. Product Introduction & Specification
    Item: CPVC pressure pipe fittingsApplication: CPVC Plumbing System
    Connect: Socket connection with rubber ring锛宲lain endMaterial: Poly (Vinyl Chloride)
    Size: OD 32mm up to OD630mmColor: White, grey, other colors available upon request
    PVC (polyvinyl chloride) that has been chlorinated via a free radical chlorination reaction. CPVC is produced by adding chlorine to PVC in a water slurry or fluidized bed chlorination process. The chlorination reaction is initiated by ultraviolet light. The chlorinated PVC is compounded with ingredients necessary for the desired properties for further processing. The chlorine added to PVC gives CPVC higher temperature performance and improved fire and corrosion resistance.
    Advantages
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    鈼?Fire protection
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    鈼?Chilled water piping
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    鈼?Suitable for many industrial and process piping applications
    2. Shipping and Packing
    Package Details
    鈼?Standard export carton, 20FT, 40 FT, 40HQ, 45HQ
    鈼?Port: Qingdao
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    3. About usCPVC Pipe Fitting suppliers
    website:http://www.yahongpipe.com/pvc-pipe-fittings/cpvc-pipe-fitting/
    <a href="http://www.yahongpipe.com/pvc-pipe-fittings/cpvc-pipe-fitting/">CPVC Pipe Fitting suppliers</a> CPVC Pressure Pipe Fittings 1. Product Introduction & Specification Item: CPVC pressure pipe fittingsApplication: CPVC Plumbing System Connect: Socket connection with rubber ring锛宲lain endMaterial: Poly (Vinyl Chloride) Size: OD 32mm up to OD630mmColor: White, grey, other colors available upon request PVC (polyvinyl chloride) that has been chlorinated via a free radical chlorination reaction. CPVC is produced by adding chlorine to PVC in a water slurry or fluidized bed chlorination process. The chlorination reaction is initiated by ultraviolet light. The chlorinated PVC is compounded with ingredients necessary for the desired properties for further processing. The chlorine added to PVC gives CPVC higher temperature performance and improved fire and corrosion resistance. Advantages 鈼?Safety of potable water and long-term reliability 鈼?Resistance to corrosion, tuberculation, deposits 鈼?Chlorine and chloramine resistance 鈼?Lightweight, easy to transport 鈼?Available in wide range of sizes 鈼?Noise and water hammer resistance 鈼?No scrap value, avoiding jobsite theft 鈼?Durability and toughness to survive jobsite installations 鈼?No flame used for joining, solvent cement joints 鈼?Universal compatibility of pipes/fittings 鈼?Professional installed appearance Applications 鈼?Hot and cold water plumbing distribution, residential and commercial 鈼?Plumbing work CPVC pressure pipe fittings 鈼?Fire protection 鈼?Reclaimed water piping 鈼?Chilled water piping 鈼?Hydronic piping and distribution (radiators, fan coils, etc.) 鈼?Suitable for many industrial and process piping applications 2. Shipping and Packing Package Details 鈼?Standard export carton, 20FT, 40 FT, 40HQ, 45HQ 鈼?Port: Qingdao 鈼?Lead Time: 15-20 days per container 3. About usCPVC Pipe Fitting suppliers website:http://www.yahongpipe.com/pvc-pipe-fittings/cpvc-pipe-fitting/
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  • <a href="http://www.lyringroup.com/silicone/catalyst/">Catalyst for sale</a> Product Description:
    DBPH is a low volatility, yellowish liquid , dialkyl peroxide for cross linking of elastomers (silicone rubber, EPDM, PE etc.).
    Mp 8 鈩? relative density 0.8650, refractive index 1.4185 (28 鈩?, flash point: closed / 36 鈩? open / 58 鈩?self-accelerating decomposition temperature /80鈩? not soluble in water, soluble in alcohols, esters, ethers, hydrocarbons and organic solvents, has a special smell. Active oxygen Content 11.02%.
    2,5-Dimethyl-2,5-Di(Tert-butyl peroxide)hexane basic information CAS NO.78-63-7:
    Chemical name2,5-Dimethyl-2,5-Di(Tert-butyl peroxide)hexane
    AliasDBPH
    CAS NO.78-63-7
    UN NO.3103
    Flash point149 掳F
    Water SolubilityImmiscible
    StabilityUnstable
    HS Code29012990
    Application:
    As cross-linking agent for many polymers, such as polyethylene(LDPE, HDPE), ethylene/vinylacetate copolymer(EAM),ethylene/propylene/(diene)rubber(EPM, EPDM),silicone rubber(VMQ)and fluor elastomers.Corsslinking temperature: above 170鈩?the amount of 1.2-2.5% (depending on different types of elastomers required).
    Packing & Storage & Shipment:
    CAS 78-63-7 Factory Supply Peroxide Silicone Curing Agent Dbph Vulcanizator Non Toxic Platinum Type Catalysts Packaging :
    20kg or 25kg, net, PE drum.
    10~30鈩?stored under shadow, good air circulation. Transportation, exposure and strenuous exercise should be avoided. Refrain from heat and acid, reducing agent such as during storage or shipment. Catalyst for sale
    website:http://www.lyringroup.com/silicone/catalyst/
    <a href="http://www.lyringroup.com/silicone/catalyst/">Catalyst for sale</a> Product Description: DBPH is a low volatility, yellowish liquid , dialkyl peroxide for cross linking of elastomers (silicone rubber, EPDM, PE etc.). Mp 8 鈩? relative density 0.8650, refractive index 1.4185 (28 鈩?, flash point: closed / 36 鈩? open / 58 鈩?self-accelerating decomposition temperature /80鈩? not soluble in water, soluble in alcohols, esters, ethers, hydrocarbons and organic solvents, has a special smell. Active oxygen Content 11.02%. 2,5-Dimethyl-2,5-Di(Tert-butyl peroxide)hexane basic information CAS NO.78-63-7: Chemical name2,5-Dimethyl-2,5-Di(Tert-butyl peroxide)hexane AliasDBPH CAS NO.78-63-7 UN NO.3103 Flash point149 掳F Water SolubilityImmiscible StabilityUnstable HS Code29012990 Application: As cross-linking agent for many polymers, such as polyethylene(LDPE, HDPE), ethylene/vinylacetate copolymer(EAM),ethylene/propylene/(diene)rubber(EPM, EPDM),silicone rubber(VMQ)and fluor elastomers.Corsslinking temperature: above 170鈩?the amount of 1.2-2.5% (depending on different types of elastomers required). Packing & Storage & Shipment: CAS 78-63-7 Factory Supply Peroxide Silicone Curing Agent Dbph Vulcanizator Non Toxic Platinum Type Catalysts Packaging : 20kg or 25kg, net, PE drum. 10~30鈩?stored under shadow, good air circulation. Transportation, exposure and strenuous exercise should be avoided. Refrain from heat and acid, reducing agent such as during storage or shipment. Catalyst for sale website:http://www.lyringroup.com/silicone/catalyst/
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  • Your timing belt is responsible for keeping your engine's various components working together in synchronization. Because it is made of rubber, it will stretch and crack overtime. A slipped timing belt can cause engine misfiring and a completely severed timing belt can cause a complete engine breakdown. Just like all the other belts in your vehicle that provide power to other major systems like your ac compressor and your power steering pump, the upkeep of these belts is extremely vital to your vehicle's systems running safely and efficiently.
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    Your timing belt is responsible for keeping your engine's various components working together in synchronization. Because it is made of rubber, it will stretch and crack overtime. A slipped timing belt can cause engine misfiring and a completely severed timing belt can cause a complete engine breakdown. Just like all the other belts in your vehicle that provide power to other major systems like your ac compressor and your power steering pump, the upkeep of these belts is extremely vital to your vehicle's systems running safely and efficiently. http://www.goodwillrubber.net/automotive-rubber-parts/
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  • Fenders are buffers between vessels and the wharf. The principal function of a fendering system is to provide protection for both wharf and vessel by absorbing the vessel's berthing energy thus reducing the forces on both the wharf structure and vessel. The used of fender allow a reduction of wharf construction costs and provides ship owners with a satisfactory system for ship protection.
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    Fenders are buffers between vessels and the wharf. The principal function of a fendering system is to provide protection for both wharf and vessel by absorbing the vessel's berthing energy thus reducing the forces on both the wharf structure and vessel. The used of fender allow a reduction of wharf construction costs and provides ship owners with a satisfactory system for ship protection. http://www.jsdymarine.com/rubber-fender/
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