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Organic-inorganic interpenetrated hybrids based on cationic polymer and hydrous, zirconium oxide for arsenate and arsenite removal

机译:基于阳离子聚合物和含水,氧化锆的有机-无机互穿杂化物,用于去除砷酸盐和亚砷酸盐

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In this study, the synthesis of interpenetrated hybrid materials capable of removing arsenic from water is reported. These novel hybrid sorbents consisted of a polymeric matrix with quaternary ammonium groups and zirconium oxide as the organic and inorganic phase, respectively. Furthermore, a coupling agent was used to enhance the compatibility between the polymeric matrix and the metal oxide, creating a covalent bond between them. The hybrid sorbents were prepared by varying the mole ratio of the zirconium oxide precursor and the monomer to provide different surface compositions, and their effect on arsenic sorption was investigated. The hybrids were characterized by spectroscopic analysis such as, Fourier transform infrared spectroscopy (FTIR), C-13, and Si-29 solid-state nuclear magnetic resonance (NMR), thermal analysis (TGA), transmission and scanning electron microscopy (TEM, SEM-EDS), and FTIR microspectroscopy. Arsenite and arsenate sorption experiments were conducted under different experimental conditions (i.e., initial arsenic concentration, kinetics, and selectivity). The hybrids with a higher hydrous zirconium oxide content exhibited greater sorption of arsenite, and the sorbents with the lowest content exhibited greater sorption of arsenate. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,报道了能够从水中去除砷的互穿杂化材料的合成。这些新型的混合吸附剂由分别具有季铵基团和氧化锆作为有机相和无机相的聚合物基体组成。此外,使用偶联剂来增强聚合物基质与金属氧化物之间的相容性,从而在它们之间产生共价键。通过改变氧化锆前体和单体的摩尔比以提供不同的表面组成来制备杂化吸附剂,并研究了它们对砷吸附的影响。通过光谱分析,例如傅立叶变换红外光谱(FTIR),C-13和Si-29固态核磁共振(NMR),热分析(TGA),透射和扫描电子显微镜(TEM, SEM-EDS)和FTIR显微光谱。在不同的实验条件(即初始砷浓度,动力学和选择性)下进行了砷和砷的吸附实验。具有较高水合氧化锆含量的杂化物表现出较高的砷吸附能力,具有最低含量的吸附剂表现出较高的砷酸盐吸附能力。 (C)2015 Elsevier B.V.保留所有权利。

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