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本文引用的文献

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A critical analysis of sources, pollution, and remediation of selenium, an emerging contaminant.对硒这一新兴污染物的来源、污染及修复的批判性分析。
Environ Geochem Health. 2023 May;45(5):1359-1389. doi: 10.1007/s10653-022-01354-1. Epub 2022 Aug 16.
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Surface water H-bonding network is key controller of selenate adsorption on [012] α-alumina: An Ab-initio study.表面水氢键网络是硒酸盐在[012]α-氧化铝上吸附的关键控制器:一项从头算研究。
J Colloid Interface Sci. 2022 Jul;617:136-146. doi: 10.1016/j.jcis.2022.02.128. Epub 2022 Mar 2.
3
Recent advances in technologies for removal and recovery of selenium from (waste)water: A systematic review.近年来从(废水)中去除和回收硒的技术进展:系统评价。
J Environ Manage. 2021 Sep 15;294:112926. doi: 10.1016/j.jenvman.2021.112926. Epub 2021 Jun 9.
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Food Chemistry of Selenium and Controversial Roles of Selenium in Affecting Blood Cholesterol Concentrations.硒的食品化学及其对血液胆固醇浓度影响的争议性作用。
J Agric Food Chem. 2021 May 5;69(17):4935-4945. doi: 10.1021/acs.jafc.1c00784. Epub 2021 Apr 27.
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Toward Informed Design of Nanomaterials: A Mechanistic Analysis of Structure-Property-Function Relationships for Faceted Nanoscale Metal Oxides.迈向纳米材料的明智设计:多面纳米级金属氧化物结构-性质-功能关系的机理分析
ACS Nano. 2020 Dec 22;14(12):16472-16501. doi: 10.1021/acsnano.0c08356. Epub 2020 Nov 25.
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LOBSTER: Local orbital projections, atomic charges, and chemical-bonding analysis from projector-augmented-wave-based density-functional theory.龙虾:基于投影增强波的密度泛函理论的局域轨道投影、原子电荷及化学键分析
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理解Al2O3(012)表面单原子阳离子缺陷位点对改变硒酸盐和硫酸盐吸附的影响:一项从头算研究。

Understanding the Effect of Single Atom Cationic Defect Sites in an Al2O3 (012) Surface on Altering Selenate and Sulfate Adsorption: An Ab Initio Study.

作者信息

Gupta Srishti, Chismar Adam, Muhich Christopher

机构信息

Chemical Engineering Program, School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ, 85281, USA.

Materials Science and Engineering Program, School for Engineering of Matter, Transport and Energy, Arizona State University, Tempe, AZ, 85281, USA.

出版信息

J Phys Chem C Nanomater Interfaces. 2023 Apr 13;127(14):6925-6937. doi: 10.1021/acs.jpcc.3c00098. Epub 2023 Mar 30.

DOI:10.1021/acs.jpcc.3c00098
PMID:37521103
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10373637/
Abstract

Adsorption is a promising under-the-sink selenate remediation technique for distributed water systems. Recently it was shown that adsorption induced water network re-arraignment control adsorption energetics on the (012) surface. Here, we aim to elucidate the relative importance of the water network effects and surface cation identity on controlling selenate and sulfate adsorption energy using density functional theory calculations. Density functional theory (DFT) calculations predicted the adsorption energies of selenate and sulfate on nine transition metal cations (Sc-Cu) and two alkali metal cations (Ga and In) in the (012) surface under simulated acidic and neutral pH conditions. We find that the water network effects had larger impact on the adsorption energy than the cationic identity. However, cation identity secondarily controlled adsorption. Most cations decreased the adsorption energy weakening the overall performance, the larger Sc and In cations enabled inner-sphere adsorption in acidic conditions because they relaxed outward from the surface providing more space for adsorption. Additionally, only Ti induced Se selectivity over S by reducing the adsorbing selenate to selenite but not reducing the sulfate. Overall, this study indicates that tuning water network structure will likely have a larger impact than tuning cation-selenate interactions for increasing adsorbate effectiveness.

摘要

吸附是一种很有前景的用于分布式水系统的水槽下方硒酸盐修复技术。最近有研究表明,吸附诱导的水网络重新排列控制了(012)表面的吸附能。在此,我们旨在利用密度泛函理论计算阐明水网络效应和表面阳离子特性对控制硒酸盐和硫酸盐吸附能的相对重要性。密度泛函理论(DFT)计算预测了在模拟酸性和中性pH条件下,硒酸盐和硫酸盐在(012)表面上九种过渡金属阳离子(Sc - Cu)和两种碱金属阳离子(Ga和In)上的吸附能。我们发现,水网络效应比阳离子特性对吸附能的影响更大。然而,阳离子特性对吸附起次要控制作用。大多数阳离子降低了吸附能,削弱了整体性能,较大的Sc和In阳离子在酸性条件下能够实现内层吸附,因为它们从表面向外松弛,为吸附提供了更多空间。此外,只有Ti通过将吸附的硒酸盐还原为亚硒酸盐而不是将硫酸盐还原,从而诱导了对Se比对S的选择性。总体而言,这项研究表明,对于提高吸附质的有效性,调节水网络结构可能比调节阳离子 - 硒酸盐相互作用具有更大的影响。