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用于砷修复的氧化还原协同Mn-Al-Fe和Cu-Al-Fe三元金属氧化物纳米吸附剂,可形成环境稳定的零价砷。

Redox synergistic Mn-Al-Fe and Cu-Al-Fe ternary metal oxide nano adsorbents for arsenic remediation with environmentally stable As(0) formation.

作者信息

Penke Yaswanth K, Anantharaman Ganapathi, Ramkumar Janakarajan, Kar Kamal K

机构信息

Materials Science Programme, Indian Institute of Technology Kanpur, Kanpur, 208016, U.P., India.

Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur, 208016, U.P., India.

出版信息

J Hazard Mater. 2019 Feb 15;364:519-530. doi: 10.1016/j.jhazmat.2018.10.069. Epub 2018 Oct 23.

Abstract

Arsenic mitigation behavior in aqueous systems is being evaluated for Mn-Al-Fe, Cu-Al-Fe nano adsorbents. Morphological, and vibrational spectroscopy analysis are observed with As-OH, and As-O surface complexes. XPS study of individual As(3d) spectra at different parameters is observed with multiplet peak behavior attributed to redox behavior of Mn-Al-Fe, Cu-Al-Fe. Significant proportions of As(0) signal (∼25 at.% in pH 7, ∼78 at.% in pH 2, ∼58 at.% in pH 12) implicate an environmentally stable behavior of these adsorbents to address the arsenic leaching issue. Adsorption kinetics are observed with Pseudo Second Order (PSO) model, and Freundlich model supported multilayer adsorption behavior is observed for adsorption isotherms. Trace metal voltammetry studies are observed with 75-90 % of As(III) mitigation in aliquot samples. Detailed study of Mn(2p), Cu(2p), Fe(2p), and O(1 s) spectra explains redox active, and surface ligand exchange synergism in arsenic adsorption. Low equilibrium concentrations (Ce < 10 ppb) in As(V) systems (C ∼ 100 and 500 ppb) indicate the drinking water application of these systems. Cyclic-voltammetry (CV) studies implicate the mitigation and immobilization of arsenic species onto adsorbent by both reduction, and sorption phenomenon.

摘要

正在评估锰铝铁、铜铝铁纳米吸附剂在水体系中的砷缓解行为。通过As-OH和As-O表面络合物观察到形态学和振动光谱分析。在不同参数下对单个As(3d)光谱进行XPS研究,观察到归因于锰铝铁、铜铝铁氧化还原行为的多重峰行为。显著比例的As(0)信号(pH 7时约为25原子%,pH 2时约为78原子%,pH 12时约为58原子%)表明这些吸附剂具有环境稳定行为,可解决砷浸出问题。用伪二级(PSO)模型观察吸附动力学,用弗伦德里希模型支持多层吸附行为来观察吸附等温线。在等分试样中观察到痕量金属伏安法研究,As(III)缓解率为75 - 90%。对Mn(2p)、Cu(2p)、Fe(2p)和O(1s)光谱的详细研究解释了砷吸附中的氧化还原活性和表面配体交换协同作用。As(V)体系(C约为100和500 ppb)中的低平衡浓度(Ce < 10 ppb)表明这些体系可用于饮用水。循环伏安法(CV)研究表明,通过还原和吸附现象,砷物种可在吸附剂上得到缓解和固定。

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