生物炭
大型水蚤
化学
核化学
盐酸四环素
急性毒性
降级(电信)
废水
环境化学
毒性
四环素
热解
废物管理
有机化学
电信
生物化学
工程类
计算机科学
抗生素
作者
Kunyuan Liu,Feidan Zheng,Ye Xiao,Jingyun Fang,Chuanfang Zhao,Nan Zhao,Chunmei Zhao,Weihua Zhang,Wei‐xian Zhang,Rongliang Qiu
标识
DOI:10.1016/j.jclepro.2022.131630
摘要
Zero valent iron (Fe0) has been used to remove organic contaminants. However, its low utilization efficiency and high toxicity have hindered its application. In this study, Fe3[email protected]0-loaded biochar (Fe3[email protected]0@BC) with 40.1% Fe content and slight Fe release presented excellent removal efficiency, stability, and reusability for tetracycline hydrochloride (TH). Fe3[email protected]0@BC presented selective oxidation degradation to TH in real wastewater and eliminated 99.1% of TH after a 12 h treatment, which considerably exceeded the removal action of fresh Fe0 and biochar. Radical scavenger experiments, desorption experiments, and electron paramagnetic resonance analysis confirmed that the removal of TH on Fe3[email protected]0@BC was mainly mediated by degradation and the Fe utilization efficiency was high up to 214%. TH degradation pathways and hydroxylation reactive sites were explored using high-performance liquid chromatography-mass spectrometry and density functional theory modeling. The acute toxicity of TH solution after Fe3[email protected]0@BC treatment and that of the fresh or used materials on Daphnia magna was the lowest. Fe/C composites present a good alternative for Fe0 because of the high Fe utilization efficiency and low toxicity of the material and produced antibiotic degradation byproducts. This study presents important findings related to the toxicity of Fe/C composites and provides strong technical support for the practical application of Fe/C composites.
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