生物降解
降级(电信)
商品化学品
生化工程
高分子科学
材料科学
废物管理
化学
有机化学
计算机科学
工程类
催化作用
电信
作者
Anne Ammala,Stuart Bateman,Katherine Dean,Eustathios Petinakis,Parveen Sangwan,Susan Wong,Qiang Yuan,Long Yu,Colin Patrick,Kok Hoong Leong
标识
DOI:10.1016/j.progpolymsci.2010.12.002
摘要
The use of engineering plastics, especially polyolefins has increased significantly in recent decades largely due to their low cost, good mechanical properties and light weight. However, this increase in usage has also created many challenges associated with disposal and their impact on the environment. This is because polyolefins do not easily degrade in the natural environment and hence the need for degradable polyolefins has become a major topic of research. Degradable polyolefins are designed to retain functionality as a commodity plastic for the required service life but degrade to non-toxic end products in a disposal environment. They are typically designed to oxo-degrade while undergoing changes in chemical structure as a result of oxidation in air, thus causing the breakdown of the molecules into small fragments that are then bioassimilated. This article presents (i) a comprehensive review of the chemistry of additives for the degradation of polyolefins, (ii) a patent and scientific literature summary of technologies including commercially available systems, (iii) the mechanisms of degradation and biodegradation, (iv) testing methods and (v) toxicity.
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