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聚酯基可生物降解塑料:可持续发展的一种途径。

Polyester-based biodegradable plastics: an approach towards sustainable development.

机构信息

Department of Microbiology, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, Pakistan.

University Institute of Biochemistry and Biotechnology, PMAS Arid Agriculture University, Rawalpindi, Pakistan.

出版信息

Lett Appl Microbiol. 2020 Jun;70(6):413-430. doi: 10.1111/lam.13287. Epub 2020 Mar 18.

Abstract

Non-degradability of conventional plastics, filling of landfill sites, raising water and land pollution and rapid depletion of fossil resources have raised the environmental issues and global concerns. The current demand and production of plastics is putting immense pressure on fossil resources, consuming about 6% of the global oil and is expected to grow up to 20%. The polyester-based biodegradable plastics (BPs) are considered as a remedy to the issue of plastics waste in the environment. BPs appear to manage the overflow of plastics by providing new means of waste management system and help in securing the non-renewable resources of nature. This review comprehensively presents the environmental burdens due to conventional plastics as well as production of polyester-based BPs as an alternative to conventional commodity plastics. The diversity of micro-organisms and their enzymes that degrade various polyester-based BPs (PLA, PCL, PHB/PHBV and PET) has also been described in detail. Moreover, the impact of plastics degradation products on soil ecology and ecosystem functions has critically been discussed. The report ends with special focus on future recommendations for the development of sustainable waste management strategies to control pollution due to plastics waste. SIGNIFICANCE AND IMPACT OF THE STUDY: Polyester-based BPs considered as a solution to current plastic waste problem as well as leading polymers in terms of biodegradability and sustainability has been critically discussed. The role of microorganisms and their enzymes involved in the biodegradation of these polymers and ecotoxicological impact of degradation products of BPs on soil microbial community and biogeochemical cycles has also been described. This report will provide an insight on the key research areas to bridge the gap for development of simulated systems as an effective and emerging strategy to divert the overflow of plastic in the environment as well as for the greener solution to the plastic waste management problems.

摘要

传统塑料的不可降解性、填满垃圾填埋场、提高水和土地污染以及化石资源的快速枯竭,引发了环境问题和全球关注。目前对塑料的需求和生产给化石资源带来了巨大压力,消耗了全球石油的约 6%,预计还将增长 20%。基于聚酯的可生物降解塑料 (BPs) 被认为是解决环境中塑料废物问题的一种方法。BPs 似乎通过提供新的废物管理系统来管理塑料的过剩,并有助于保护自然的不可再生资源。

本综述全面介绍了传统塑料造成的环境负担,以及作为传统大宗商品塑料替代品的聚酯基 BPs 的生产。还详细描述了能够降解各种聚酯基 BPs(PLA、PCL、PHB/PHBV 和 PET)的微生物及其酶的多样性。此外,还批判性地讨论了塑料降解产物对土壤生态和生态系统功能的影响。报告最后特别关注未来的建议,以制定可持续的废物管理策略,控制塑料废物造成的污染。

研究的意义和影响

聚酯基 BPs 被认为是解决当前塑料废物问题的一种方法,同时也是可生物降解性和可持续性方面的主要聚合物,对此进行了批判性讨论。还描述了这些聚合物生物降解过程中涉及的微生物及其酶的作用,以及 BPs 降解产物对土壤微生物群落和生物地球化学循环的生态毒理学影响。本报告将提供有关关键研究领域的深入了解,以弥合发展模拟系统的差距,作为一种有效和新兴的策略,以转移环境中塑料的过剩,并为解决塑料废物管理问题提供更环保的解决方案。

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