High-efficiency Hg(II) adsorbent: FeS loaded on a carbon black from pyrolysis of waste tires and sequential reutilization as a photocatalyst

被引:0
作者
Chuanzhi Jiang
Chengyue Yang
Yong Fu
Feng Chen
Jianshe Hu
机构
[1] Northeastern University,Center for Molecular Science and Engineering, College of Science
[2] Ningde Normal University,Fujian Province University Key Laboratory of Green Energy and Environment Catalysis
来源
Environmental Science and Pollution Research | 2022年 / 29卷
关键词
Carbon black; FeS; Adsorption; Hg(II); Photocatalyst; Methylene blue;
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中图分类号
学科分类号
摘要
Iron-sulfur nano compounds have been proven to be effective in mercury removal, but the agglomeration, poor dispersion and mobility, and easy oxidation challenges limit their application. Herein, carbon black originating from pyrolysis of waste tires was used as a carrier of nano-FeS to obtain an efficient adsorbent (C@PDA-FeS). It is found that the C@PDA-FeS shows outstanding adsorption ability, excellent selectivity, and high removal rate. A maximum adsorption capacity of 1754 mg/g is obtained, and the residual Hg(II) ion concentration is as low as 3.2 μg/L in the simulated industrial wastewater, which meets the industrial discharge standard under the optimal conditions. Meanwhile, the removal rate of Hg(II) ion can reach 99.8% after up to 10 cycles. More importantly, the C@PDA-FeS still shows good adsorption efficiency, and the removal rate of Hg(II) ion is over 99% (25 mg/L Hg(II) concentration) after 90 days of storage, demonstrating the long-term stability and promising future of the adsorbent. In addition, the waste adsorbent (C@PDA-FeS/HgS) is reused as a photocatalyst to degrade methylene blue, and the corresponding degradation rate is 92.9% (10 mg/L).
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页码:84287 / 84299
页数:12
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