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首页> 外文期刊>Journal of Molecular Liquids >Removal of arsenic from water using iron-doped phosphorene nanoadsorbents: A theoretical DFT study with solvent effects
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Removal of arsenic from water using iron-doped phosphorene nanoadsorbents: A theoretical DFT study with solvent effects

机译:使用铁掺杂磷烯纳米涂层饲料从水中除去砷:具有溶剂效应的理论DFT研究

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摘要

Arsenicals are toxic compounds affecting human and animal health due to its high toxicity, where As(III) is more toxic than As(V). To find effective methods for As(III) removal from water, density functional theory calculations were implemented to expands the use of phosphorene based materials for the As(III) adsorption. It is shown that As(III) form bi(mono)dentate inner-sphere surface complexes with Fe-doped phosphorene nanoadsorbents in water at room temperature, where an adatom doping scheme reaches the highest adsorption stability. The interaction is chemical and energetically dominated by permanent electrostatics, polarization and charge-transfer stabilizing effects. The adsorption efficiency remains stable in the presence of water molecules from acid to neutral pH; while, alkaline solutions could be used for the regeneration of the nanoadsorbents. Further analyses also show the proposed nanoadsorbents could be implemented for the directly and simultaneously removal of As (III) and As(V) from contaminated water, where energy-saving is achieved by avoiding the pre-oxidation process to convert As(III) into As(V). Therefore, Fe-doped phosphorene emerges as a useful material for arsenic remediation. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于其高毒性,砷是影响人类和动物健康的有毒化合物,其中(III)比(v)更具毒性。为了将有效的方法从水中除去,实施了密度泛函理论计算以扩大基于磷烯基材料的用途,以便(III)吸附。结果表明,如(iii)在室温下用Fe掺杂的磷烯纳米储物饲料形成Bi(Mono)牙齿的内球表面络合物,其中Adatom掺杂方案达到最高的吸附稳定性。相互作用是化学和精力充沛地由永久性静电,极化和电荷转移稳定效果主导。吸附效率在来自酸中的水分子存在下保持稳定性效率保持稳定;虽然,碱性溶液可用于纳米坯料的再生。进一步的分析还显示出所提出的纳米坯料可以直接和同时去除As(III)和作为(v)的污染水来实现,其中通过避免预氧化过程将其转化为(iii)来实现节能as(v)。因此,Fe掺杂的磷烯作为砷修复的有用材料。 (c)2020 Elsevier B.v.保留所有权利。

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