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[特刊前言:塑料废物降解与增值生物技术]

[Preface to the special issue: biotechnology of plastic waste degradation and valorization].

作者信息

Zhou Jie, Su Tianyuan, Jiang Min, Qi Qingsheng

机构信息

College of Biotechnology and Pharmaceutical Engineering, State Key Laboratory of Materials-oriented Chemical Engineering, Nanjing Tech University, Nanjing 211816, Jiangsu, China.

State Key Laboratory of Microbial Technology, Shandong University, Qingdao 266273, Shandong, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2023 May 25;39(5):1861-1866. doi: 10.13345/j.cjb.230299.

Abstract

Synthetic plastics have been widely used in various fields of the national economy and are the pillar industry. However, irregular production, plastic product use, and plastic waste piling have caused long-term accumulation in the environment, contributing considerably to the global solid waste stream and environmental plastic pollution, which has become a global problem to be solved. Biodegradation has recently emerged as a viable disposal method for a circular plastic economy and has become a thriving research area. In recent years, important breakthroughs have been made in the screening, isolation, and identification of plastic-degrading microorganisms/enzyme resources and their further engineering, which provide new ideas and solutions for treating microplastics in the environment and the closed-loop bio-recycling of waste plastics. On the other hand, the use of microorganisms (pure cultures or consortia) to further transform different plastic degradants into biodegradable plastics and other compounds with high added value is of great significance, promoting the development of a plastic recycling economy and reducing the carbon emission of plastics in their life cycle. We edited a Special Issue on the topic of "Biotechnology of Plastic Waste Degradation and Valorization", focusing on the researches progress in three aspects: Mining microbial and enzyme resources for plastic biodegradation, Design and engineering of plastic depolymerase, and biological high-value transformation of plastic degradants. In total, 16 papers have been collected in this issue including reviews, comments, and research articles, which provide reference and guidance for further development of plastic waste degradation and valorization biotechnology.

摘要

合成塑料已广泛应用于国民经济的各个领域,是支柱产业。然而,生产不规范、塑料制品使用不当以及塑料垃圾堆积导致其在环境中长期积累,极大地增加了全球固体废物流和环境塑料污染,这已成为一个亟待解决的全球性问题。生物降解最近已成为循环塑料经济中一种可行的处置方法,并已成为一个蓬勃发展的研究领域。近年来,在塑料降解微生物/酶资源的筛选、分离和鉴定及其进一步工程化方面取得了重要突破,为处理环境中的微塑料和废塑料的闭环生物回收提供了新的思路和解决方案。另一方面,利用微生物(纯培养物或菌群)将不同的塑料降解产物进一步转化为可生物降解的塑料和其他高附加值化合物具有重要意义,有助于促进塑料回收经济的发展,并减少塑料在其生命周期中的碳排放。我们编辑了一期关于“塑料废物降解与增值生物技术”主题的特刊,重点关注三个方面的研究进展:挖掘用于塑料生物降解的微生物和酶资源、塑料解聚酶的设计与工程以及塑料降解产物的生物高值转化。本期共收录了16篇论文,包括综述、评论和研究文章,为塑料废物降解与增值生物技术的进一步发展提供参考和指导。

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