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离子液体萃取法从公共和工业废水中提取金属和含金属化合物。

Ionic liquids for extraction of metals and metal containing compounds from communal and industrial waste water.

机构信息

Department of Chemistry, Division of Analytical Chemistry, University of Natural Resources and Life Sciences, Muthgasse 18, A-1190 Vienna, Austria.

出版信息

Water Res. 2011 Oct 1;45(15):4601-14. doi: 10.1016/j.watres.2011.06.011. Epub 2011 Jun 21.

Abstract

In a fundamental study the potential of ionic liquids based on quaternary ammonium- and phosphonium cations and thiol-, thioether-, hydroxyl-, carboxylate- and thiocyanate-functionalized anions has been assessed for future application in advanced sewage treatment. The elimination of the metal(oid)s Ag, As, Cd, Cr, Cu, Hg, Ni, Pb, Pt, Sn, Zn and the cancerostatic platinum compounds cisplatin and carboplatin was screened using a liquid phase micro-extraction set-up. The analytical tool-set consisted of ICP-SFMS and LC-ICP-MS for quantification of metal(oid)s and cancerostatic platinum compounds, respectively. The purity of the ILs was assessed for the investigated metal(oid)s on the base of present EU environmental quality standards and was found to be sufficient for the intended use. In model solutions at environmental relevant concentrations extraction efficiencies≥95% could be obtained for Ag, Cu, Hg and Pt with both phosphonium- and ammonium-based ILs bearing sulphur functionality in the form of thiosalicylate and 2-(methylthiobenzoate) anions, as well as with tricaprylmethylammonium thiocyanate within an extraction time of 120 min. All other metals were extracted to a lower extent (7-79%). In the case of cancerostatic platinum compounds a phosphonium-based IL bearing thiosalicylate functionality showed high extraction efficiency for monoaquacisplatin. For the first time, liquid phase micro extraction with ionic liquids was applied to industrial and communal waste water samples. The concentration of all investigated metal(oid)s could be significantly reduced. The degree of elimination varied with the initial concentration of metals, pH and the amount of suspended particulate matter.

摘要

在一项基础研究中,评估了基于季铵盐和鏻阳离子以及硫醇、硫醚、羟基、羧酸盐和硫氰酸盐官能化阴离子的离子液体在未来高级污水处理中的应用潜力。使用液相微萃取装置筛选了 Ag、As、Cd、Cr、Cu、Hg、Ni、Pb、Pt、Sn、Zn 和抗癌铂化合物顺铂和卡铂的去除。ICP-SFMS 和 LC-ICP-MS 分别用于定量测定金属(类)和抗癌铂化合物。根据欧盟现行环境质量标准,评估了 ILs 对所研究金属(类)的纯度,发现其纯度足以满足预期用途。在环境相关浓度的模型溶液中,Ag、Cu、Hg 和 Pt 的萃取效率≥95%,可以用含硫功能基(形式为硫代水杨酸和 2-(甲基硫代苯甲酸盐)阴离子)的季铵盐和鏻盐基 IL 以及三辛基甲基氯化铵硫氰酸盐在 120 分钟的萃取时间内获得,所有其他金属的萃取效率较低(7-79%)。对于抗癌铂化合物,含硫代水杨酸功能基的鏻盐基 IL 对一水合顺铂表现出高萃取效率。首次将离子液体液相微萃取应用于工业和公共废水样品。所有研究金属(类)的浓度都可以显著降低。消除程度随金属的初始浓度、pH 值和悬浮颗粒物的量而变化。

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