rubber chemicals-rubber antioxidant 4010na ippd
rubber chemicals-rubber antioxidant 4010na ippd
rubber chemicals-rubber antioxidant 4010na ippd
rubber chemicals-rubber antioxidant 4010na ippd
rubber chemicals-rubber antioxidant 4010na ippd
rubber antioxidant ippd(4010na)

Rubber Antioxidant IPPD(4010NA)

Rubber Antioxidant IPPD (4010NA) Chemical Name: N-isopropyl-N'-phenyl-p-phenylene Molecular Formula: C 15 H 18 N 2 Molecular Weight: 226.31 CAS No .: 101-72-4 Chemical Structure: Specification:

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rubber antioxidant 4010(ippd) ¨c ylsch-rbb

Rubber Antioxidant 4010(IPPD) ¨C ylsch-rbb

APPLICATION: It is an antioxidant with high efficiency and multi-functions, being used in a wide range of applications. It is applicable in natural rubber, many kinds of synthetic rubber products and their latexes. It can be used in airplane, car tyre, bicycle tyre, as well as rubber products and latexes in cable industry.

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rubber antioxidant ippd (4010na) - hisen chemical

Rubber Antioxidant IPPD (4010NA) - Hisen Chemical

Home Products Rubber Antioxidant Rubber Antioxidant IPPD (4010NA) Rubber Antioxidant IPPD (4010NA) Rubber Antioxidant Chemical Name: N-Isopropyl-N'-phenyl-p-phenylenediamine Molecular Formula: C15H18N2 Molecular Weight: 226.32 CAS No: 101-72-4 Properties: Purple to purple brown flaky or spherical particals.

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recent progress in the rubber antioxidants: a review

Recent progress in the rubber antioxidants: A review

The toxicity issues of rubber antioxidants has been discussed. ? The perspectives on the future trends of rubber antioxidants have been presented. Abstract

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rubber antioxidants and their transformation products: environmental

Rubber Antioxidants and Their Transformation Products: Environmental

Natural antioxidants are only found in NR, such as amino acids, tocotrienol, and betaines , whereas physical and chemical antioxidants are widely used in various synthetic rubber products. The rubber-aging process comprises three stages: initiation, reaction, and termination [ 15 , 16 ], and the physical antioxidants are usually used to address the initiation stage of rubber aging.

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n-isopropyl-n'-phenyl-1,4-phenylenediamine

N-Isopropyl-N'-phenyl-1,4-phenylenediamine

Infobox references. N-Isopropyl-N¡ä-phenyl-1,4-phenylenediamine (often abbreviated IPPD) is an organic compound commonly used as an antiozonant in rubbers. [1] Like other p-phenylenediamine -based antiozonants it works by virtue of its low ionization energy, which allows it to react with ozone faster than ozone will react with rubber. [2]

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rubber antioxidants and their transformation products

Rubber Antioxidants and Their Transformation Products

Natural antioxidants are only found in NR, such as amino acids, tocotrienol, and betaines , whereas physical and chemical antioxidants are widely used in various synthetic rubber products. The rubber-aging process comprises three stages: initiation, reaction, and termination [ 15 , 16 ], and the physical antioxidants are usually used to address the initiation stage of rubber aging.

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product

Product

Antioxidant 4010NA(IPPD) 101-72-4: Purity ¡Ý 95.0% Melting point ¡Ý 71¡æ Nanhua: 2: N-(1,3-Dimethylbutyl)-N¡¯- phenyl-p-phenylenediamine Antioxidant 4020(6PPD)* 793-24-8: Purity ¡Ý 96.0% Crystallizing point ¡Ý 46¡æ Nanhua: 3: Polymerized 2,2,4-trimethyl- 1,2-dihydroquinoline Antioxidant TMQ* 26780-96-1: Loss of heating ¡Ü 0.3% Softening

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4010na rubber antioxidant: enhancing durability and performance

4010NA Rubber Antioxidant: Enhancing Durability and Performance

4010NA, also known as IPPD (N-isopropyl-N'-phenyl-p-phenylenediamine), is a synthetic rubber antioxidant belonging to the class of amine antioxidants. It is an effective inhibitor of oxidation, preventing the degradation of rubber by oxidative processes. With its superior properties, 4010NA has become a popular choice in the rubber industry.

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occurrence and fate of substituted

Occurrence and Fate of Substituted

1. Introduction. Substituted para-phenylenediamines (PPDs) are synthetic antioxidants that are widely used in the rubber industry for the production of tires, hoses, belts, and shoe soles. 1?3 The widespread use of these chemicals has led to their massive production and consumption worldwide, and some of them have been listed as high production volume chemicals by the U.S. EPA in 2015, 4

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