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深入了解 Fe-Mn 二元氧化物作为高效吸附剂去除 As(III)的稳定性作用机制。

Insights into the underlying mechanisms of stability working for As(III) removal by Fe-Mn binary oxide as a highly efficient adsorbent.

机构信息

State Environmental Protection Key Laboratory of Soil Health and Green Remediation, Hubei Key Laboratory of Soil Environment and Pollution Remediation, College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.

State Environmental Protection Key Laboratory of Soil Health and Green Remediation, Hubei Key Laboratory of Soil Environment and Pollution Remediation, College of Resources and Environment, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Water Res. 2021 Sep 15;203:117558. doi: 10.1016/j.watres.2021.117558. Epub 2021 Aug 13.

Abstract

Fe-Mn binary oxide has received increasing interest in treating As(III)-containing polluted groundwater due to its low cost and environmental friendliness. Although the stability of Fe-Mn binary oxide is as important as its adsorption ability, little is known about whether and why Fe-Mn binary oxide is stable during As(III) removal. In this study, five successive cycles were conducted to evaluate the stability of Fe-Mn binary oxide for As(III) removal. As(III) oxidation/adsorption kinetics and the speciation distribution of the released Fe and Mn elements within single Fe oxide, Mn oxide, and Fe-Mn binary oxide were investigated by using characterization techniques of TEM-EDS mapping, selected area electron diffraction (SAED), and XPS combined with a binary component reactor, where Fe and Mn oxides were separated by a semipermeable membrane. The results revealed that Fe-Mn binary oxide could maintain excellent stability, although As(III) oxidation/adsorption behavior was coupled with the release of Fe and Mn ions from its surface. The great stability of Fe-Mn binary oxide for As(III) removal was attributed to the rapid return of aqueous Fe(II) and Mn(II) to the solid surface, which subsequently formed new mineral phases mediated by Fe and Mn oxides, thus considerably decreasing the loss of released Mn(II) and Fe(II).

摘要

铁锰二元氧化物由于其低成本和环境友好性,在处理含砷(III)污染地下水方面受到越来越多的关注。尽管铁锰二元氧化物的稳定性与其吸附能力同样重要,但对于其在去除砷(III)过程中是否稳定以及为什么稳定,人们知之甚少。在本研究中,进行了五次连续循环实验,以评估铁锰二元氧化物去除砷(III)的稳定性。通过使用 TEM-EDS 映射、选区电子衍射(SAED)和 XPS 结合二元组分反应器等技术对 Fe 氧化物、Mn 氧化物和 Fe-Mn 二元氧化物中释放的 Fe 和 Mn 元素的形态分布进行了研究,其中 Fe 和 Mn 氧化物通过半透膜分离。结果表明,尽管砷(III)的氧化/吸附行为伴随着表面释放 Fe 和 Mn 离子,但铁锰二元氧化物仍能保持优异的稳定性。Fe-Mn 二元氧化物对砷(III)去除具有很好的稳定性,这归因于溶液中 Fe(II)和 Mn(II)迅速回到固体表面,并随后由 Fe 和 Mn 氧化物介导形成新的矿物相,从而大大减少了释放的 Mn(II)和 Fe(II)的损失。

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