Improvement of biodegradation of PET microplastics with whole-cell biocatalyst by interface activation reinforcement

微塑料 生物降解 聚对苯二甲酸乙二醇酯 水解 聚乙烯 化学工程 材料科学 结晶度 化学 聚合物 有机化学 环境化学 复合材料 工程类
作者
Xin Li,Haodong Wu,Jixian Gong,Qiujin Li,Zheng Li,Jianfei Zhang
出处
期刊:Environmental Technology [Taylor & Francis]
卷期号:44 (20): 3121-3130 被引量:14
标识
DOI:10.1080/09593330.2022.2052359
摘要

Polyethylene terephthalate (PET) is an important basic polymer, which was used widely in variety of fields. Due to its high crystallinity, compact structure and strong surface hydrophobicity, PET has prominent resistance to biodegradation. In recent years, microplastics, especially polyethylene terephthalate (PET) microplastics, was considered as serious threaten to ecosystems. In this study, alkali-resistant bacteria were used as whole-cell catalysts to try to improve the biodegradation of PET microplastics by increasing the bio-interfacial activity of the polymer substrate. Surfactants were applicated to enhance interfacial activation of enzyme and PET interactions. And an integrated strategy was constructed based on alkali resistant bacteria to catalysis the hydrolysis of PET. The results showed that Tween 20 had the most obvious promoting effect among the four interfacial biocatalysts on biological-chemical combined hydrolysis of PET microplastics with whole-cell biocatalysts in alkaline environment. Obvious etching and fracture were observed on the PET fibre surface after biodegradation in presence of surfactant. The weight loss rate of PET substrate can reach 11.04% after 5 days of biodegradation. Thus, this research provides a promising method for efficient degradation of PET microplastics.
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