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利用磁性室温离子液体高效提取酚类化合物用于环境修复。

Highly efficient extraction of phenolic compounds by use of magnetic room temperature ionic liquids for environmental remediation.

机构信息

School of Chemical Engineering, Hefei University of Technology, Hefei, Anhui Province 230009, China.

出版信息

J Hazard Mater. 2011 Sep 15;192(3):1350-7. doi: 10.1016/j.jhazmat.2011.06.053. Epub 2011 Jun 25.

Abstract

A hydrophobic magnetic room temperature ionic liquid (MRTIL), trihexyltetradecylphosphonium tetrachloroferrate(III) ([3C(6)PC(14)][FeCl(4)]), was synthesized from trihexyltetradecylphosphonium chloride and FeCl(3) · 6H(2)O. This MRTIL was investigated as a possible separation agent for solvent extraction of phenolic compounds from aqueous solution. Due to its strong paramagnetism, [3C(6)PC(14)][FeCl(4)] responds to an external neodymium magnet, which was employed in the design of a novel magnetic extraction technique. The conditions for extraction, including extraction time, volume ratio between MRTIL and aqueous phase, pH of aqueous solution, and structures of phenolic compounds were investigated and optimized. The magnetic extraction of phenols achieved equilibrium in 20 min and the phenolic compounds were found to have higher distribution ratios under acidic conditions. In addition, it was observed that phenols containing a greater number of chlorine or nitro substituents exhibited higher distribution ratios. For example, the distribution ratio of phenol (D(Ph)) was 107. In contrast, 3,5-dichlorophenol distribution ratio (D(3,5-DCP)) had a much higher value of 6372 under identical extraction conditions. When compared with four selected traditional non-magnetic room temperature ionic liquids, our [3C(6)PC(14)][FeCl(4)] exhibited significantly higher extraction efficiency under the same experimental conditions used in this work. Pentachlorophenol, a major component in the contaminated soil sample obtained from a superfund site, was successfully extracted and removed by use of [3C(6)PC(14)][FeCl(4)] with high extraction efficiency. Pentachlorophenol concentration was dramatically reduced from 7.8 μg mL(-1) to 0.2 μg mL(-1) after the magnetic extraction by use of [3C(6)PC(14)][FeCl(4)].

摘要

一种疏水性室温离子液体(MRTIL),三己基十四烷基膦四氯铁(III)([3C(6)PC(14)][FeCl(4)]),由三己基十四烷基氯化膦和 FeCl(3)·6H(2)O 合成。该 MRTIL 被研究为一种从水溶液中溶剂萃取酚类化合物的可能分离剂。由于其强顺磁性,[3C(6)PC(14)][FeCl(4)]对外加钕磁铁有响应,这被用于设计一种新型的磁性萃取技术。研究并优化了萃取条件,包括萃取时间、MRTIL 与水相的体积比、水相的 pH 值和酚类化合物的结构。酚类的磁性萃取在 20 分钟内达到平衡,在酸性条件下酚类化合物具有更高的分配比。此外,观察到含有更多氯或硝基取代基的酚类化合物具有更高的分配比。例如,苯酚(D(Ph))的分配比为 107。相比之下,在相同的萃取条件下,3,5-二氯苯酚(D(3,5-DCP))的分配比高达 6372。与四种选定的传统非磁性室温离子液体相比,在本工作中使用的相同实验条件下,我们的[3C(6)PC(14)][FeCl(4)]表现出更高的萃取效率。使用[3C(6)PC(14)][FeCl(4)]成功地从超级基金场地获得的污染土壤样品中提取和去除主要成分五氯苯酚,具有高萃取效率。使用[3C(6)PC(14)][FeCl(4)]进行磁性萃取后,五氯苯酚的浓度从 7.8μg mL(-1)急剧降低至 0.2μg mL(-1)。

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本文引用的文献

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study of the formation and degradation reactions of chlorinated phenols.氯酚生成与降解反应的研究
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