As(III) adsorption on Fe-Mn binary oxides: are Fe and Mn oxides synergistic or antagonistic for arsenic removal?
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摘要
 Fe-Mn binary oxides are ubiquitous in the natural environment and have attracted increasing interest due to their high removal capacity for As(III), as well as their important role in the natural cycling of arsenic. Although numerous studies have characterized the respective roles of Fe and Mn oxides in As(III) removal, the working relationship between Fe and Mn oxides in different Fe-Mn binary oxides for As(III) removal has not been fully explored. In this study, three Fe-Mn binary oxides containing either ferrihydrite, hematite or goethite, were used to evaluate their adsorption capacities for As(III) in comparison with their corresponding single Fe and Mn oxide forms. The dynamics and speciation transformation of As(III) within mixed Fe and Mn oxides systems were investigated by using spectroscopic techniques of in situ flow ATR-FTIR and XPS combined with a Donnan reactor, where Fe and Mn oxides were isolated by a semi-permeable membrane through which arsenic could pass. The result showed that the synergistic effect, as well as antagonistic effects, between Fe and Mn oxides, was present in Fe-Mn binary oxides for As(III) removal. An obvious increase in As(III) removal by hematite containing Fe-Mn binary oxide, and a decrease by ferrihydrite containing Fe-Mn binary oxide, was attributed to As(III) oxidation mediated by Mn oxide as well as the difference in arsenic adsorption affinity in Fe oxides.
 
关键词
Arsenite; Adsorption; Iron oxide; Manganese oxide; Binary oxides.
报告人
郑倩
博士研究生 华中农业大学

郑倩,华中农业大学资源与环境学院,博士研究生,主要研究方向为土壤重金属污染修复、土壤活性组分界面耦合过程。

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重要日期
  • 会议日期

    10月25日

    2021

    10月27日

    2021

  • 10月10日 2021

    初稿截稿日期

  • 10月10日 2021

    报告提交截止日期

  • 10月23日 2021

    注册截止日期

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中国科学院南京土壤研究所
中国土壤学会
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中国科学院土壤环境与污染修复重点实验室
中国科学院南京土壤研究所土壤与环境生物修复研究中心
农田土壤污染防控与修复技术国家工程实验室
场地安全修复技术国家工程实验室
中国土壤学会土壤环境专业委员会
中国土壤学会土壤修复专业委员会
中国土壤学会环境微塑料工作组
中国环境科学学会土壤与地下水环境专业委员会
中国土壤学会土壤工程专业委员会
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