生物降解
塑料废料
生物可分解塑胶
生化工程
生物塑料
废物管理
环境科学
分类
利用
生物技术
生物
计算机科学
工程类
生态学
计算机安全
人工智能
作者
EdwardA. Gates,Nathan Crook
标识
DOI:10.1093/femsre/fuae027
摘要
Abstract Since the invention of the first synthetic plastic, an estimated 12 billion metric tons of plastics have been manufactured, 70% of which was produced in the last 20 years. Plastic waste is placing new selective pressures on humans and the organisms we depend on, yet it also places new pressures on microorganisms as they compete to exploit this new and growing source of carbon. The limited efficacy of traditional recycling methods on plastic waste, which can leach into the environment at low purity and concentration, indicates the utility of this evolving metabolic activity. This review will categorize and discuss the probable metabolic routes for each industrially-relevant plastic, rank the most effective biodegraders for each plastic by harmonizing and re-interpreting prior literature, and explain the experimental techniques most often used in plastic biodegradation research, thus providing a comprehensive resource for researchers investigating and engineering plastic biodegradation.
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