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首页> 外文期刊>Environmental Science and Pollution Research >Effective adsorbent for arsenic removal: core/shell structural nano zero-valent iron/manganese oxide
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Effective adsorbent for arsenic removal: core/shell structural nano zero-valent iron/manganese oxide

机译:砷拆卸有效吸附剂:核心/壳体结构纳米零价铁/锰氧化物

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摘要

Recently, nano zero-valent iron (nZVI) has emerged as an effective adsorbent for the removal of arsenic from aqueous solutions. However, its use in various applications has suffered from reactivity loss resulting in a decreased efficiency. Thus, the aim of this study was to develop an effective arsenic adsorbent as a core/shell structural nZVI/manganese oxide (or nZVI/Mn oxide) to minimize the reactivity loss of the nZVI. As the major result, the arsenic adsorption capacities of the nZVI/Mn oxide for As(V) and As(III) were approximately two and three times higher than that of the nZVI, respectively. In addition, the As(V) removal efficiency of the nZVI/Mn oxide was maintained through 4 cycles of regeneration whereas that of the nZVI was decreased significantly. The enhanced reactivity and reusability of the nZVI/Mn oxide can be successfully explained by the synergistic interaction of the nZVI core and manganese oxide shell, in which the manganese oxides participate in oxidation reactions with corroded Fe2+ and subsequently retard the release of aqueous iron providing additional surface sites for arsenic adsorption. In summary, this study reports the successful fabrication of a core/shell nZVI/Mn oxide as an effective adsorbent for the removal of arsenic from aqueous solutions.
机译:最近,纳米零价铁(NZVI)已成为从水溶液中除去砷的有效吸附剂。然而,它在各种应用中的使用遭受反应性损失,导致效率降低。因此,本研究的目的是开发有效的砷吸附剂作为芯/壳结构NZVI /锰氧化物(或NZVI / MN氧化物),以最小化NZVI的反应性损失。作为主要结果,NZVI / Mn氧化物的砷吸附容量分别比NZVI的(III)高约两倍和三倍。此外,NZVI / Mn氧化物的As(v)去除效率通过4个再生循环维持,而NZVI的循环显着降低。 NZVI / Mn氧化物的增强的反应性和可重用性可以通过NZVI核心和氧化锰壳的协同相互作用来成功解释,其中氧化锰与腐蚀Fe2 +参与氧化反应,随后延迟释放额外的含水铁表面位点,用于吸附。总之,本研究报告了成功制造核/壳NZVI / MN氧化物作为用于从水性溶液中除去砷的有效吸附剂。

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