recent progress in the rubber antioxidants Rubber Auxiliary Agent
- Classification:Chemical Auxiliary Agent
- Purity:96.9%
- Type:Rubber additive antioxidant
- Appearance:Amber to Brown Granulose
- Softening point:80-100℃
- Application:Used in Tires,Industrial Rubber Products
- Production Capacity:100000 Metric Ton per Year
- Package:25kg/bag, OEM
environmental impact of tire wear: the 6ppd-q Rubber Antioxidant,due to the low 6ppd-q lc 50 values determined for various aquatic organisms, this tire material reuse combined with typical wear and tear of tires on active roadways could lead to significant negative impacts (and potentially extinctions) of vital, culturally significant aquatic species.
the rubber antioxidant market is expected to expand significantly in the future due to the increasing demand for antioxidants in the manufacture of various rubber products used in the tire industry, automotive industry, and others.
rubber antioxidant ippd: enhancing competitiveness in the
rubber antioxidant ippd (n-isopropyl-n'-phenyl-p-phenylenediamine), as a key chemical additive, is widely used in the rubber industry, especially in the production of automobiles, tires and seals. improve aging resistance
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rubber antioxidant ippd 4010 Rubber Chemicals Additives
chemical auxiliary agent rubber antioxidant ippd cas no:101-72-4. highly active antioxidant 4010/n-cyclohexyl-n'-phenyl-p-phenylenediamine. free sample raw material rubber chemical additive 4010na ippd.
rubber antioxidant/additive ippd for rubber and tyre industry,buy low price rubber antioxidant/additive ippd for rubber and tyre industry by wpa chemicals limited, a leading supplier from china. 1899 similar products are also available from global exporters.
rubber additive rubber antioxidant ippd 4010na, rubber
classification : chemical auxiliary agent cas no. : 90-30-2 other names : ippd(4010na) mf : c16h13n einecs no. : 212-344-0 purity : 99.9% type : rubber antioxidant ippd(4010na) usage : rubber auxiliary agents brand name : joinedfortune model number : ra-ippd(4010na) product name : rubber antioxidant ippd(4010na) appearance : light brown or white powder or
q a: stage 1 alternatives analysis for 6ppd in tires,6ppd has been widely studied and used in tires as a highly effective antidegradant since the 1960’s. the recent concern regarding 6ppd in tires relates to a newly identified transformation product, 6ppd, and its potential impacts to certain salmonids.
ippd / rubber antioxidant 4010 na buy chemical auxiliary
ippd / rubber antioxidant 4010 na , find complete details about ippd / rubber antioxidant 4010 na,chemical auxiliary agent ippd in tire industry,rubber antioxidant 4010 na,n-isopropyl-n`-phenylenediamine from leather auxiliary agents supplier or manufacturer-qingdao weibao chemicals co., ltd.
the key to improving rubber performance introduction to the,this article will introduce the excellent antioxidant properties of rubber antioxidant ippd and its important role in improving the performance of rubber products, providing valuable information and insights for relevant practitioners in the industry.
- Can a rubber antioxidant enter the environment with tire-wear particles (Twps)?
- Recently, it was reported that the rubber antioxidant N - (1,3-dimethylbutyl)- N′ -phenyl- p -phenylenediamine (6PPD or antioxidant 4020), a typical tire rubber antioxidant, could enter the surrounding environment together with tire-wear particles (TWPs) [7, 8].
- Are tire wear compounds present in municipal wastewater and drinking water treatment plants?
- The occurrence of tire wear compounds and their transformation products in municipal wastewater and drinking water treatment plants. Environ. Monit. Assess. 2022, 194, 731. [Google Scholar] [CrossRef] [PubMed] Nedrich, S. Preliminary investigation of 6PPD-quinone in surface water and standing road water in Michigan.
- Are Tire-Rubber pollutants harmful to human health?
- 2. Future research will prioritize assessing the ecological and human health risks associated with tire-rubber related pollutants since it has been detected in human urine (Du et al., 2022). This includes going into the ecological repercussions on soil ecosystems, plant health, and terrestrial as well as aquatic food webs.