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MRGO-FMBO原位修复砷污染含水层
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作者 刘婉婷 迟子芳 胡文华 《中国环境科学》 EI CAS CSCD 北大核心 2021年第6期2698-2705,共8页
为了探究磁性氧化石墨烯负载铁锰氧化物复合材料(MRGO-FMBO)修复砷污染地下水的可行性,通过一维模拟柱和二维模拟槽实验探讨了MRGO-FMBO在含水层的迁移和分布情况,分析了材料注入浓度和注入速度对其迁移的影响,研究了MRGO-FMBO在注入模... 为了探究磁性氧化石墨烯负载铁锰氧化物复合材料(MRGO-FMBO)修复砷污染地下水的可行性,通过一维模拟柱和二维模拟槽实验探讨了MRGO-FMBO在含水层的迁移和分布情况,分析了材料注入浓度和注入速度对其迁移的影响,研究了MRGO-FMBO在注入模拟地下水含水层后反应带的形成及演化过程.结果表明,MRGO-FMBO在饱和多孔介质中迁移性能良好,在设定的浓度范围(1~8g/L)内,升高注入浓度能减少材料在介质中的残留百分比,增强其迁移性能.当注入速度为0.023~0.057cm/s时,存在一个速度临界值,当注入速度小于此值时,改变速度对MRGO-FMBO在含水层中的迁移性影响显著;当注入速度大于此值时,速度不再是影响迁移的主要因素.MRGO-FMBO在注入地下含水层后能够形成稳定的反应带,反应带在20d内对砷的去除效率达到70.6%,在整个反应带的发展过程中可去除7.79mg As.MRGO-FMBO在砷污染含水层原位修复中具有较好的应用前景. 展开更多
关键词 mrgo-fmbo 迁移特征 原位修复
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Influence of the structure and composition of Fe–Mn binary oxides on rGO on As(Ⅲ) removal from aquifers 被引量:3
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作者 Tao Sha Wenhua Hu +3 位作者 Jun Dong Zifang Chi Yongsheng Zhao Huazheng Huang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2020年第2期133-144,共12页
Fe–Mn binary oxide(FMBO) possesses high efficiency for As(Ⅲ) abatement based on the good adsorption affinity of iron oxide and the oxidizing capacity of Mn(Ⅳ), and the composition and structure of FMBO play importa... Fe–Mn binary oxide(FMBO) possesses high efficiency for As(Ⅲ) abatement based on the good adsorption affinity of iron oxide and the oxidizing capacity of Mn(Ⅳ), and the composition and structure of FMBO play important roles in this process.To compare the removal performance and determine the optimum formula for FMBO, magnetic graphene oxide(MRGO)–FMBO and MRGO–MnO2 were synthesized with MRGO as a carrier to improve the dispersity of the adsorbents in aquifers and achieve magnetic recycling.Results indicated that MRGO–FMBO had higher As(Ⅲ) removal than that of MRGO–MnO2,although the ratios of Fe and Mn were similar, because the binary oxide of Fe and Mn facilitated electron transfer from Mn(Ⅳ) to As(Ⅲ), while the separation of Mn and Fe on MRGO–MnO2 restricted the process.The optimal stoichiometry x for MRGO–FMBO(MnxFe3-xO4) was 0.46, and an extraordinary adsorption capacity of 24.38 mg/g for As(Ⅲ) was achieved.MRGO–FMBO showed stable dispersive properties in aquifers, and exhibited excellent practicability and reusability, with a saturation magnetization of 7.6 emu/g and high conservation of magnetic properties after 5 cycles of regeneration and reuse.In addition, the presence of coexisting ions would not restrict the practical application of MRGO–FMBO in groundwater remediation.The redox reactions of As(Ⅲ) and Mn(Ⅳ) on MRGO–FMBO were also described.The deprotonated aqueous As(Ⅲ) on the surface of MRGO–FMBO transferred electrons to Mn(Ⅳ), and the formed As(Ⅴ) oxyanions were bound to ferric oxide as inner-sphere complexes by coordinating their "–OH" groups with Mn(Ⅳ)oxides at the surface of MRGO–FMBO.This work could provide new insights into highperformance removal of As(Ⅲ) in aquifers. 展开更多
关键词 mrgo–MnO2 mrgo–fmbo OPTIMUM FORMULA As(Ⅲ) ABATEMENT Adsorption–oxidation-collection
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