生物炭
吸附
化学
废水
降级(电信)
核化学
电子顺磁共振
猝灭(荧光)
废物管理
热解
有机化学
物理
工程类
荧光
电信
量子力学
核磁共振
计算机科学
作者
Nan Zhao,Kunyuan Liu,Bofang Yan,Ling Zhu,Chuanfang Zhao,Jia Gao,Jujun Ruan,Weihua Zhang,Rongliang Qiu
标识
DOI:10.1016/j.jhazmat.2020.123889
摘要
In the last years, the synthesis and applications of biochar/Fe composites have been extensively studied, but only few papers have systematically evaluated their removal performances. Herein, we successfully synthesized and structurally characterized Fe0, Fe3C, and Fe3O4-coated biochars (BCs) for the removal of chlortetracycline hydrochloride (CH). Evaluation of their removal rate and affinity revealed that Fe0@BC could achieve better and faster CH removal and degradation than Fe3[email protected] and Fe3O4@BC. The removal rate was controlled by the O–Fe content and solution pH after the reaction. The CH adsorption occurred on the O C groups of Fe0@BC and the OC and OFe groups of Fe3[email protected] and Fe3O4@BC. Electron paramagnetic resonance analysis and radical quenching experiments indicated that HO and 1O2/ O2− were mainly responsible for CH degradation by biochar/Fe composites. Additional parameters, such as effects of initial concentrations and coexisting anions, regeneration capacity, cost and actual wastewater treatment were also explored. Principal component analysis was applied for a comprehensive and quantitative assessment of the three materials, indicating Fe0@BC is the most beneficial functional material for CH removal.
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