聚对苯二甲酸乙二醇酯
光催化
降级(电信)
结晶度
材料科学
化学工程
微塑料
吸附
污染
核化学
催化作用
化学
环境化学
复合材料
计算机科学
有机化学
工程类
生物
电信
生态学
作者
Dawang Zhou,Li Wang,Fangzhou Zhang,Jing Wu,Huaping Wang,Jianping Yang
标识
DOI:10.1002/adsu.202100516
摘要
Abstract Fiber‐based microplastic (FMP) pollution in the wastewater of the textile industry and urban sewage has become an emerging issue and a potential threat to marine life and human health. However, most reported reduction strategies, such as physical adsorption/filtration and chemical‐catalytic degradation are limited by the secondary pollution caused by the desorption of FMPs and inferior degradation performance. Advanced technologies for efficient FMP control remain largely insufficient and underdeveloped. This work reports a Z‐scheme Bi 2 O 3 @N‐TiO 2 heterojunction synthesized by a solvothermal and wet‐impregnation strategy. Bi 2 O 3 @N‐TiO 2 degrades ≈10.23 ± 1.91 wt% of polyethylene terephthalate (PET)‐FMPs (a major FMP existing in the environment) at pH = 9, which is nearly three times higher than that at pH = 7. Experimental results show that the hydrolysis of PET‐FMPs in alkaline media is the main reason for the superior performance. Importantly, the hydrophilic, weight‐average molecular weight and crystallinity of PET‐FMP are the key factors affecting the photocatalytic degradation performance of PET‐FMPs. This study demonstrates an eco‐friendly strategy for remediation of FMP contamination.
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