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新型巯基和胺基双官能化硅胶的合成、表征及其在电感耦合等离子体质谱法测定前无机砷形态/吸附中的应用。

Synthesis, characterization and application of a novel mercapto- and amine-bifunctionalized silica for speciation/sorption of inorganic arsenic prior to inductively coupled plasma mass spectrometric determination.

机构信息

Department of Chemistry, İzmir Institute of Technology, Urla, İzmir, Turkey.

出版信息

Talanta. 2011 Sep 15;85(3):1517-25. doi: 10.1016/j.talanta.2011.06.021. Epub 2011 Jun 17.

DOI:10.1016/j.talanta.2011.06.021
PMID:21807217
Abstract

A bifunctional sorbent, (NH(2)+SH)silica, containing both amine and mercapto functionalities was prepared by modification of silica gel with 3-(triethoxysilyl)propylamine and (3-mercaptopropyl)trimethoxysilane. In addition to the bifunctional sorbent, silica gel was modified individually with the functional mercapto- and amino-silanes, and the mono-functional sorbents, namely (SH)silica and (NH(2))silica, were also mechanically mixed ((NH(2))silica+(SH)silica) for the sake of comparison of sorption performances. It has been demonstrated that (SH)silica shows quantitative sorption only to As(III) at two pH values, 1.0 and 9.0, while (NH(2))silica displays selectivity only towards As(V) at pH 3.0. On the other hand, the bifunctional (NH(2)+SH)silica possesses the efficient features of the two mono-functionalized sorbents; for example, it retains As(III) at a wider pH range, from 1.0 to at least 9.0 with the exception at pH 2.0, and it also shows quantitative sorption to As(V) at pH 3.0. This property gives the bifunctional (NH(2)+SH)silica a better flexibility in terms of sorption performance as a function of solution pH. The mechanically mixed (NH(2))silica+(SH)silica exhibits a similar but less efficient sorption behavior compared to the bifunctional sorbent. Desorption of both As(III) and As(V) species can be realized using 0.5M NaOH. The validity of the proposed method was checked through the analysis of a standard reference material and a good correlation was obtained between the certified (26.67 μg L(-1)) and determined (27.53±0.37 μg L(-1)) values. Spike recovery tests realized with ultrapure water (93.0±2.3%) and drinking water (86.9±1.2%) also confirmed the applicability of the method.

摘要

一种双功能吸附剂,(NH(2)+SH)硅胶,同时含有胺基和巯基官能团,是通过硅胶与 3-(三乙氧基硅基)丙胺和(3-巯丙基)三甲氧基硅烷的改性制备的。除了双功能吸附剂外,硅胶还分别用功能化的巯基和氨基硅烷进行了改性,并且单功能吸附剂,即(SH)硅胶和(NH(2))硅胶,也为了比较吸附性能而进行了机械混合((NH(2))硅胶+(SH)硅胶)。已经证明,(SH)硅胶仅在两个 pH 值,即 1.0 和 9.0 下对 As(III)进行定量吸附,而(NH(2))硅胶仅在 pH 3.0 下对 As(V)显示选择性。另一方面,双功能(NH(2)+SH)硅胶具有两种单功能化吸附剂的有效特征;例如,它在更宽的 pH 范围内保留 As(III),从 1.0 到至少 9.0,除了 pH 2.0 外,它还在 pH 3.0 下对 As(V)进行定量吸附。这种性质使双功能(NH(2)+SH)硅胶在作为溶液 pH 的函数的吸附性能方面具有更好的灵活性。机械混合的(NH(2))硅胶+(SH)硅胶表现出与双功能吸附剂相似但效率较低的吸附行为。可以使用 0.5M NaOH 实现对 As(III)和 As(V)物种的解吸。通过对标准参考物质的分析检查了所提出方法的有效性,并且在认证值(26.67μg L(-1))和测定值(27.53±0.37μg L(-1))之间获得了良好的相关性。用超纯水(93.0±2.3%)和饮用水(86.9±1.2%)进行的加标回收测试也证实了该方法的适用性。

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