生物降解
生物高聚物
羟基烷酸
生物塑料
背景(考古学)
生物修复
生化工程
废物管理
环境科学
化学
聚合物
工程类
污染
有机化学
生态学
细菌
生物
古生物学
遗传学
作者
Sanjeev Kumar Awasthi,Manish Kumar,Vinay Kumar,Surendra Sarsaiya,Prathmesh Anerao,Pooja Ghosh,Lal Singh,Hong Liu,Zengqiang Zhang,Mukesh Kumar Awasthi
标识
DOI:10.1016/j.envpol.2022.119600
摘要
Recent years have seen upsurge in plastic manufacturing and its utilization in various fields, such as, packaging, household goods, medical applications, and beauty products. Due to various adverse impacts imposed by synthetic plastics on the health of living well-being and the environment, the biopolymers have been emerged out an alternative. Although, the biopolymers such as polyhydroxyalkanoates (PHA) are entirely degradable. However, the other polymers, such as poly (lactic acid) (PLA) are only partially degradable and often not biosynthesized. Biodegradation of the polymers using microorganisms is considered an effective bioremediation approach. Biodegradation can be performed in aerobic and anaerobic environments. In this context, the present review discusses the biopolymer production, their persistence in the environment, aerobic biodegradation, anaerobic biodegradation, challenges associated with biodegradation and future perspectives. In addition, this review discusses the advancement in the technologies associated with biopolymer production, biodegradation, and their biodegradation standard in different environmental settings. Furthermore, differences in the degradation condition in the laboratory as well as on-site are discussed. • Biopolymer biodegradability and its environmental persistence has been discussed. • Degradability of oxo-degradable plastics has been discoursed. • Biopolymers degradation in the complex environment have been emphasized. • Effective and efficient biodegradation standard test methods has been explored. • More significant and efficient biodegradation standard test methods are required.
科研通智能强力驱动
Strongly Powered by AbleSci AI