Factory price 98% 99% Mixed xylene for Industrial and Agriculture Grade C8H10 CAS 1330-20-7
CAS No.: 1330-20-7
Chemical Formula: CH
Description:
Xylene is a colorless, transparent liquid with a pungent, characteristic odor. It is a flammable substance that can easily mix with ethanol, ether, and various other organic solvents, but is insoluble in water. Xylene is composed of three isomers: 45% to 70% m-xylene, 15% to 25% p-xylene, and 10% to 15% o-xylene. It has a boiling point range of 137140C and is commonly used in the production of petrochemicals, paints, coatings, and solvents.
Specifications:
CH Content:
Grade I: 99% min
Grade II: 99% min
Chroma:
Grade I: 10 max
Grade II: 20 max
Evaporation Residue:
Grade I: 0.001% max
Grade II: 0.002% max
Acidity (mmol/g):
Ortho Xylene also referred to as O-Xylene is an aromatic hydrocarbon and its formula is C6H4(CH3)2. It is one of the constituents of the three isomers of xylene, namely p-xylene and m-xylene.
ABC Dry Powder Fire Extinguishers utilize mono ammonium phosphate-based dry chemical powders, designed for multipurpose use on Class A, B, and C fires. Available in concentrations of 40% and 90%, these extinguishing agents are SABS approved, ensuring reliability and effectiveness.
Applications:
Class A Fires:
The dry chemical powder insulates Class A fires by melting at approximately 350-400 degrees Fahrenheit. Class A fires typically involve common combustible materials such as wood, paper, or trash.
Class B Fires:
For Class B fires, the powder effectively interrupts the chain reaction by forming a coating on the burning surface. Class B fires involve flammable liquids or gases, including gasoline, oil, propane, and natural gas.
Class C Fires:
ABC dry powder is safe and effective for Class C fires, as it is a non-conductor of electricity. Class C fires typically involve live electrical equipment, which requires extinguishing agents that do not conduct electricity, unlike water. It's important to note that electricity can also cause Class A and B fires.
Inappropriate Uses:
ABC dry chemical powder should not be used on chlorine or oxidizer fires, as the resulting chemical reaction can lead to explosions or the release of toxic gases. Water is recommended for these situations. Additionally, it is ineffective for certain metal fires (Class D) and cooking oil fires (Class K). Due to the corrosive nature of ABC dry chemical powder, it is not advisable to use it around aircraft or sensitive equipment.
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Raw Material: Dichloromethane (Methylene Chloride)
Dichloromethane, also known as DCM, methylene chloride, or methylene bichloride, is an organic compound commonly used as a solvent in various industrial applications.
Chemical Properties:
Chemical Formula: CHCl
CAS Number: 75-09-2
Appearance: Colorless, transparent liquid
Odor: Irritating ether-like odor with a sweet, chloroform-like scent
Solubility:
Dichloromethane is slightly soluble in water and fully soluble in ethanol and ether. It exhibits low polarity and is miscible with many organic solvents, making it versatile for various applications.
Physical Properties:
Under normal usage conditions, dichloromethane is a non-flammable, low-boiling solvent. It serves as an effective replacement for flammable solvents such as petroleum ether and ether, particularly in environments where safety is a concern. However, caution is advised when vapor concentrations become elevated, especially in high-temperature air.
HFC-245fa, or 1,1,1,3,3-pentafluoropropane, is a third-generation alternative blowing agent designed to replace chlorofluorocarbons (CFCs) and hydrochlorofluorocarbons (HCFCs) in various applications.
It is primarily utilized as a blowing agent for rigid polyurethane (PU) foam, which is extensively used in refrigerators, cold storage, and building boards.
Additionally, HFC-245fa serves as a refrigerant, effectively replacing R-123 and R-22 refrigerants in central air conditioning systems (chillers).
HFC-245fa's high purity and low moisture content make it suitable for a wide range of industrial applications, ensuring optimal performance and reliability.
Paraxylene (PX) is an important aromatic hydrocarbon with various industrial applications, primarily in the production of purified terephthalic acid (PTA), which is a key precursor for polyester fibers and polyethylene terephthalate (PET). Here are some of its notable properties and uses:
Properties of Paraxylene:
Melting Point: 12-13 C
Boiling Point: 138 C
Density: 0.861 g/mL at 20 C
Vapor Density: 3.7 (compared to air)
Vapor Pressure: 9 mm Hg at 20 C
Refractive Index: n20/D 1.495
Flash Point: 77 F
Storage Temperature: Recommended at +5C to +30C
Solubility: Slightly soluble in water (0.2 g/L)
Appearance: Colorless liquid
pKa: >15.
Applications:
PTA Production: Approximately 65% of PTA produced is used to manufacture polyester fibers, which are widely used in clothing and textiles.
PET Bottles: About 30% of PTA is converted into PET, commonly used for beverage bottles and packaging.
Plastic Products: The remaining 5% is utilized in various plastic products, including films and food containers
Purified Terephthalic Acid (PTA) is a key organic compound formed through the reaction of paraxylene (PX), a secondary petroleum product, with acetic acid. PTA is primarily used in the production of Polyethylene Terephthalate (PET), a widely utilized polyester. During polymerization, PTA is combined with other chemicals to produce PET, which appears as a white crystalline powder.
Key Characteristics:
Safety: PTA is considered to be non-toxic and is classified as flammable, with the potential to ignite in the presence of sufficient air.
Applications: As a crucial organic raw material, PTA finds extensive use in various industries, including:
Chemical Fiber Industry: Essential for producing synthetic fibers.
Light Industry: Used in a variety of consumer products.
Electronics Industry: Integral in the manufacturing of electronic components.
Construction Industry: Utilized in various construction materials and applications.
Naphthalene Dicarboxylate (NDC) is a specialized chemical compound utilized primarily in the production of advanced polyesters and resins. It plays a crucial role in manufacturing high-performance items such as:
LCD Flat Panel Displays: NDC enhances the properties of materials used in screens, contributing to better display quality and durability.
Ultra-Thin Data Storage Tapes: The compound is key in producing data storage solutions that require thin, flexible materials without compromising performance.
NDC is part of IVL's High-Value Added (HVA) product portfolio, highlighting its importance in innovative applications across various industries, including electronics and data storage.
Ethylene Glycol is an important organic compound with the chemical formula CHO, commonly known as ethane-1,2-diol. It is a colorless, odorless, and sweet-tasting viscous liquid. Due to its unique properties, ethylene glycol is widely utilized across various industries.
Key Properties:
Boiling Point: Approximately 197.3 C (388.1 F)
Melting Point: -12.9 C (8.8 F)
Density: About 1.11 g/cm
Applications:
Diethylene Glycol (DEG) is widely used in the manufacturing of plasticizers and serves as a key component in various industrial applications, including:
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Product Name Ethanolamine
CAS 141435
MW6108
MFC2H7NO
AppearanceColorless liquid
Purity99
Function of Ethanolamine
Ethanolamine is an important chemical raw material
Application of Ethanolamine
1 Ethanolamine is an important chemical raw material
2 Used for spices surfactants coatings emulsifiers
3 Also a leather softener
4 It can also be used for gas purification to remove carbon dioxide and hydrogen sulfide in gas
Diethylenetriamine (DETA) is a clear, colorless liquid with an ammonia-like odor. It is a low molecular weight product containing two primary amine groups and one secondary amine group, making it a versatile single-component chemical.
Applications:
Asphalt Additives
Chelating Agents
Corrosion Inhibitors
Drainage Aids
Epoxy Curing Agents
Fabric Softeners
Lube Oil & Fuel Additives
Mineral Processing Aids
Polyamide Resins
Surfactants
Textile Additives
Paper Wet-Strength Resins
Melamine Cyanurate used for V-0 grade nylon(PA66 and PA6) and glass fiber reinforced nylon flame retardancy
Category: Flame Retardant Powder
Tags: Film Grade, Masterbatch, Polyester Chips, Textile Grade
Classification:
Inorganic Flame Retardant
CAS No.: 68333-79-9
Product Description:
Melamine Cyanurate (MC) is a halogen-free flame retardant commonly used in unfilled polyamide (PA) products. It provides exceptional flame retardancy, achieving the UL 94 V0 flame retardant rating in materials such as nylon PA66 and PA6. MC is recognized for its unique crystal structure and excellent dispersibility, making it highly suitable for various polymer applications.
Key Applications:
Flame Retardancy:
PA6, PA66 (nylon)
PBT, PET
TPE, EVA, PE
Silicone Rubber, Epoxy Resin
Rubber Products
MC is an effective solution for enhancing the flame retardant properties of these materials, ensuring both safety and performance in a wide range of industrial applications.
CAS No 375724
Molecular Formula CFOS
Molecular Weight 30209 gmol
EINECS No 2067926
Purity 980 min
Model Number 98
Attributes
Appearance Colorless transparent liquid
Melting Point MP 110C
Boiling Point BP 64C lit
Type Dyestuff Intermediates Fine Chemical Intermediate
Other Names Nonafluoro1butanesulfonyl fluoride
Application
Fine chemical intermediate used in various industrial processes
Packaging and Delivery
Packaging Details 100 kg per barrel
Storage Store in a cool dry place away from heat and open flames
Chemical Formula CHCOH
Appearance White powder
Source Naturally found in wheat rye and barley
Functions of Azelaic Acid
Cosmetic Grade
Oil Control Azelaic acid helps to inhibit oil secretion making it beneficial for oily or acneprone skin
Prevents Hyperkeratosis It prevents skin hyperkeratosis helping to maintain smoother healthier skin
Industrial Grade
Polyester Flexibility Azelaic acid improves the flexibility of unsaturated polyester enhancing material properties
Synthetic Fiber Production It is used in the production of synthetic fibers
Electrolytic Capacitors Azelaic acid or its salts when added to the electrolyte of electrolytic capacitors can significantly increase their service life
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