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Effects of electromagnetic induction on migration and speciation of heavy metals in drying sewage sludge: Mechanistic insights

机译:电磁诱导对污水污泥的重金属迁移和形态的影响:机械洞察

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摘要

Novel and efficient drying method based on electromagnetic induction plate (EMI-P) heating was used to treat sewage sludge (SS). This work focused on the effects of EMI-P action on heavy metals (HMs) in dried SS. Surface functional groups, surface chemistry and microstructures of SS treated were investigated and compared to provide insights into the transformation mechanisms of HMs during EMI-P drying process. The results show that the EMI-P-dried SS showed undesirably total concentrations of Cd and Zn and leaching concentrations of HMs (Cr, Ni, Zn, Cd and As) exceeded the Chinese ground water standard (GB/T14848-2017). Ni, Zn, and As in the EMI-P-dried SS still exhibited high mobility, the leaching percent of Ni, Zn, and As (under 300 V and 500 V) can reach up to 28.56%/10.36%, 26.96%/26.61% and 30.64%/23.14%, respectively. Compared with conventional thermal drying, the EMI-P method can effectively reduce the eco-toxicity derived from HMs by 28.06% under 500 V condition. The stabilization effect of the EMI-P action can be attributed to the following: (1) EMI-P action promoted the generation of surface complexes with HMs, (2) HMs adsorption by silicate minerals was enhanced under high-frequency magnetic fields and (3) honeycomb structures of EMI-P dried SS with micropores provided abundant active sites to bond with HMs.
机译:基于电磁感应板(EMI-P)加热的新型和高效干燥方法治疗污水污泥(SS)。这项工作主要集中在干SS中EMI-P动作对重金属(HMS)的影响。研究了表面官能团,研究了SS处理的表面化学和微观结构,并比较了EMI-P干燥过程中HMS转化机制的洞察。结果表明,EMI-P干燥的SS显示出不希望的CD和Zn的总浓度和HMS(Cr,Ni,Zn,Cd和As)的浸出浓度超过了中国地下水标准(GB / T14848-2017)。 Ni,Zn和如EMI-P干燥的SS仍然表现出高迁移率,Ni,Zn的浸出百分比和(300 V和500 V)可以达到28.56%/ 10.36%,26.96%/分别为26.61%和30.64%/ 23.14%。与常规的热干燥相比,EMI-P方法可以有效地将HMS衍生的生态毒性降低28.06%。 EMI-P效应的稳定效应可归因于以下:(1)EMI-P促进用HMS的表面复合物的产生,(2)在高频磁场下增强了硅酸盐矿物的HMS吸附的HMS吸附( 3)具有微孔的EMI-P干燥SS的蜂窝状结构提供了丰富的活性位点以与HMS键合。

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  • 来源
    《Waste Management》 |2020年第5期|192-201|共10页
  • 作者单位

    School of Environmental Engineering Wuhan Textile University Wuhan 430073 China Engineering Research Centre for Clean Production of Textile Dyeing and Printing Ministry of Education Wuhan Textile University Wuhan 430073 China;

    School of Physics and Technology Center for Electron Microscopy MOE Key Laboratory of Artificial Mico- and Nano-Structures Wuhan University 430070 Hubei Wuhan China;

    School of Environmental Engineering Wuhan Textile University Wuhan 430073 China Engineering Research Centre for Clean Production of Textile Dyeing and Printing Ministry of Education Wuhan Textile University Wuhan 430073 China;

    School of Environmental Engineering Wuhan Textile University Wuhan 430073 China Engineering Research Centre for Clean Production of Textile Dyeing and Printing Ministry of Education Wuhan Textile University Wuhan 430073 China;

    Key Laboratory of Ceotecnical Mechanics and Engineering of Ministry of Water Resources Yangtze River Scientific Research Institute Wuhan Hubei 430010 China;

    State Key Laboratory of Silicate Materials for Architectures Wuhan University of Technology 430070 Hubei Wuhan China;

    School of Resource and Environment Science Wuhan University 430070 Hubei Wuhan China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sewage sludge; Electromagnetic-induction heating; Drying; Heavy metal; Mobility;

    机译:污水污泥;电磁感应加热;烘干;重金属;移动性;

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