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一株聚乙烯塑料降解细菌菌株的分离、鉴定及降解特性研究

[Isolation, identification, and degradation characterization of a polyethylene plastic-degrading bacterial strain].

作者信息

Wang Yuwei, Zhang Liting, Xu Min, Cui Zhongli, Cao Hui

机构信息

Key Laboratory of Agricultural Environmental Microbiology of the Ministry of Agriculture and Rural Affairs, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2025 Jun 25;41(6):2405-2414. doi: 10.13345/j.cjb.240734.

Abstract

Polyethylene (PE) is widely used due to its excellent properties. However, the improper disposal of PE waste has led to serious environmental pollution. Microbial degradation of PE is a low-carbon, environmentally friendly, and highly efficient method of homogeneous recycling. The use of microbial degradation technology to treat polyethylene waste has become one of the current research hotspots. As a result, employing microbial degradation technology to address polyethylene waste has become a key focus of current research. A PE-degrading strain ETX1 was screened from waste plastics in a landfill by the enrichment culture method. The strain was identified as sp.. After incubating PE powder with the strain for 20 days, a weight loss of 29.41% was observed. Fourier transform infrared spectroscopy (FTIR) showed that special absorption peaks such as carbonyl and hydroxyl groups appeared, proving that ETX1 had the effect of degrading PE. The degradation effect of this strain was characterized by the weight loss of PE film, FTIR, scanning electron microscopy, and contact angle. The results showed that ETX1 reduced the PE film weight by up to 5.23% within 120 days. The film structure was damaged, with holes formed by erosion on the film surface, and the hydrophilicity was enhanced. Additionally, a stronger carbonyl absorption peak appeared. The discovery of the PE-degrading strain ETX1 not only enriches the resources of PE plastic-degrading strains but also lays a foundation for mining efficient PE-degrading elements, obtaining degrading enzymes, and deciphering related degradation pathways.

摘要

聚乙烯(PE)因其优异的性能而被广泛使用。然而,PE废料的不当处置导致了严重的环境污染。PE的微生物降解是一种低碳、环保且高效的均质回收方法。利用微生物降解技术处理聚乙烯废料已成为当前的研究热点之一。因此,采用微生物降解技术解决聚乙烯废料问题已成为当前研究的重点。通过富集培养法从垃圾填埋场的废塑料中筛选出一株PE降解菌株ETX1。该菌株被鉴定为 属。将PE粉末与该菌株培养20天后,观察到重量损失29.41%。傅里叶变换红外光谱(FTIR)表明出现了羰基和羟基等特殊吸收峰,证明ETX1具有降解PE的作用。该菌株的降解效果通过PE膜的重量损失、FTIR、扫描电子显微镜和接触角来表征。结果表明,ETX1在120天内使PE膜重量减少了5.23%。膜结构受损,膜表面因侵蚀形成孔洞,亲水性增强。此外,出现了更强的羰基吸收峰。PE降解菌株ETX1的发现不仅丰富了PE塑料降解菌株的资源,也为挖掘高效的PE降解元件、获得降解酶和破译相关降解途径奠定了基础。

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