微塑料
嗜热菌
生物降解
细菌
降级(电信)
胞外聚合物
拉伤
微生物
聚乙烯
聚合物
化学
废水
微生物学
材料科学
复合材料
生物
环境化学
环境工程
生物膜
环境科学
有机化学
遗传学
电信
计算机科学
解剖
作者
Ceyhun Akarsu,Sadin Özdemir,Yasin Özay,Ömer Acer,Nadir Dizge
标识
DOI:10.1080/09593330.2022.2071638
摘要
There are several studies stating that many types of microplastics cannot be retained completely by conventional wastewater treatment systems. Therefore, it is necessary to prevent the discharge of these microplastics to the ecological system. The objective of this study was to investigate the biodegradation ability of two different size of PE (50 and 150 µm) by using two Gram-positive, spore-forming, rod-shaped, and motile thermophilic bacteria, called strain Gecek4 and strain ST5, which can hydrolyse starch, were isolated from the soil’s samples of Gecek and Ömer hot-springs in Afyonkarahisar, Turkey, respectively. Phenotypic features and 16S rRNA analyzing of strains also studied. According to these results, Gecek4s and ST5 were identified as Anoxybacillus flavithermus Gecek4s and Bacillus firmus ST5, respectively. Results showed that A. flavithermus Gecek4s could colonise the polymer surface and cause surface damage whereas B. firmus ST5 could not degrade bigger-sized particles efficiently. In addition, morphological changes on microplastic surface were investigated by scanning electron microscopy (SEM) where dimensional changes, irregularities, crack, and/or holes were detected. This finding suggests that there is a high potential to develop an effective integrated method for plastic bags degradation by extracellular enzymes from bacteria.
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