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Adipic Acid
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ELRASA-ADA

Adipic Acid

ELRASATM – ADA

Adipic Acid is a white crystalline compound primarily used in the production of nylon, as well as in the manufacture of polyurethane foams, plasticizers, and as a food additive. It is known for its role in improving the durability and flexibility of materials.

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CAS Number

124-04-9

HS Code

29171200

Molecular Formula

C6H10O4

INCI Name

-

Home/Products/Adipic Acid

Adipic Acid

ELRASATM – ADA

Adipic Acid is a white crystalline compound primarily used in the production of nylon, as well as in the manufacture of polyurethane foams, plasticizers, and as a food additive. It is known for its role in improving the durability and flexibility of materials.

CAS Number

124-04-9

INCI Name

-

HS Code

29171200

Molecular Formula

C6H10O4

Get Pricing for This Product

Need pricing? Request a quote for this product and we'll get back to you shortly.

Speed Up Your Sample Testing Process

We deliver domestic samples within 24 - 48 hours, helping you evaluate products and move to procurement without delays.

Adipic Acid
Bags

ELRASA-ADA

About Adipic Acid

Adipic Acid, also known as hexanedioic acid, is a crucial industrial chemical used extensively in the production of nylon, polyurethane foams, and plasticizers. As a key component in nylon manufacturing, it contributes to the creation of strong, durable fibers essential for textiles and engineering plastics. Adipic Acid manufacturers focus on producing high-purity compounds to meet the stringent demands of these industries. The production process is carefully controlled to ensure consistency and stability, which are vital for the compound's effectiveness in various applications. Sustainability is an increasing focus for Adipic Acid manufacturers, with many adopting greener practices to minimize their environmental impact. These efforts include optimizing energy use during production and reducing waste emissions. The trend toward eco-friendly manufacturing aligns with the growing demand for sustainable raw materials in the chemical industry. Beyond its role in nylon and polyurethane production, Adipic Acid is also used as a food additive, where it acts as an acidity regulator and gelling aid, particularly in gelatin desserts. Its versatility and effectiveness make it a fundamental compound in modern industry.

About Adipic Acid

Adipic Acid, also known as hexanedioic acid, is a crucial industrial chemical used extensively in the production of nylon, polyurethane foams, and plasticizers. As a key component in nylon manufacturing, it contributes to the creation of strong, durable fibers essential for textiles and engineering plastics. Adipic Acid manufacturers focus on producing high-purity compounds to meet the stringent demands of these industries. The production process is carefully controlled to ensure consistency and stability, which are vital for the compound's effectiveness in various applications. Sustainability is an increasing focus for Adipic Acid manufacturers, with many adopting greener practices to minimize their environmental impact. These efforts include optimizing energy use during production and reducing waste emissions. The trend toward eco-friendly manufacturing aligns with the growing demand for sustainable raw materials in the chemical industry. Beyond its role in nylon and polyurethane production, Adipic Acid is also used as a food additive, where it acts as an acidity regulator and gelling aid, particularly in gelatin desserts. Its versatility and effectiveness make it a fundamental compound in modern industry.

FAQs - Adipic Acid

What is Adipic Acid used for?
Adipic Acid is primarily used in the production of nylon, polyurethane foams, and as a plasticizer. It is also used as a food additive.
Is Adipic Acid safe in food?
Yes, Adipic Acid is approved for use as a food additive and is considered safe when used in accordance with good manufacturing practices.
What are the physical properties of Adipic Acid?
Adipic Acid is a white crystalline powder with a melting point of 151-154 °C and a density of 1.36 g/cm³.

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