微塑料
环境化学
化学
腐植酸
污水污泥
降级(电信)
腐殖质
活性污泥
污水
污水处理
环境科学
环境工程
土壤水分
土壤科学
电信
肥料
有机化学
计算机科学
作者
Yuhuan Liu,Jiayi Xu,Xiaolu Li,Wuyi Zhou,Xian Cui,Pengjiao Tian,Haizhong Yu,Xiqing Wang
标识
DOI:10.1016/j.biortech.2024.130371
摘要
In this study, a novel Fe-based nanomaterial catalyst (Fe0/FeS) was synthesized via a self-heating process and employed to explore its impact on the formation of humic substances and the mitigation of microplastics. The results reveal that Fe0/FeS exhibited a significant increase in humic acid content (71.01 mg kg−1). Similarly, the formation of humic substances resulted in a higher humification index (4.91). Moreover, the addition of Fe0/FeS accelerated the degradation of microplastics (MPs), resulting in a lower concentration of MPs (9487 particles/kg) compared to the control experiments (22792 particles/kg). Fe0/FeS significantly increased the abundance of medium-sized MPs (50–200 μm) and reduced the abundance of small-sized (10–50 μm) and large-sized MPs (>1000 μm). These results can be attributed to the Fe0/FeS regulating the ▪OH production and specific microorganisms to promote humic substance formation and the degradation of MPs. This study proposes a feasible strategy to improve composting characteristics and reduce contaminants.
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