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用离子液体从受污染的水流中分离阴离子型含氯染料及其后续回收。

Separation of Anionic Chlorinated Dyes from Polluted Aqueous Streams Using Ionic Liquids and Their Subsequent Recycling.

机构信息

Chemical Technology Group, Institute of Environmental and Chemical Engineering, Faculty of Chemical Technology, University of Pardubice, Studentska 573, 532 10 Pardubice, Czech Republic.

Department of General and Inorganic Chemistry, Faculty of Chemical Technology, University of Pardubice, Studentska 573, 532 10 Pardubice, Czech Republic.

出版信息

Int J Mol Sci. 2023 Jul 31;24(15):12235. doi: 10.3390/ijms241512235.

Abstract

The effect of ionic liquids on the separation of chlorinated anionic dyes such as Mordant Blue 9 (MB9) or Acid Yellow 17 (AY17) via ion exchange has been investigated in model aqueous solutions that simulate wastewater from the textile dyeing industry. The effect of ionic liquids chemical nature on the separation efficiency of mentioned dyes has been compared. It was found that especially ionic liquid based on quaternary ammonium salts comprising two or three long alkyl chains bound to the quaternary ammonium nitrogen (typically benzalkonium chloride or Aliquat 336) are very effective for the separation of both studied MB9 and AY17 from aqueous solution. In addition, the innovative technique has been developed for the reactivation of spent ionic liquids which is based on the chemical reduction of the formed ion pairs using NaBH/NiSO, NaBH/NaSO or Raney Al-Ni alloy/NaOH. Thus, only NaBH/NiSO in co-action with Al-Ni alloy enables both effective reduction of the azo bond and subsequent hydrodechlorination of emerging chlorinated aromatic amines. The efficiency of tested dyes separation or regeneration of ion pairs was evaluated by determination of the absorbance at wavelength of the maximum absorbance, of the Chemical Oxidation Demand (COD), and of the Adsorbables Organically bound Halogens (AOX). The formation of ion pairs or products of reduction and hydrodechlorination of these ion pairs has been studied using the H NMR and LC-MS techniques.

摘要

离子液体对模拟纺织印染工业废水的模型水溶液中氯代阴离子染料(如媒染蓝 9(MB9)或酸性黄 17(AY17))的离子交换分离的影响进行了研究。比较了离子液体化学性质对上述染料分离效率的影响。结果发现,特别是基于季铵盐的离子液体,其季铵氮上连接有两个或三个长烷基链(通常为苯扎氯铵或 Aliquat 336),对于从水溶液中分离研究的 MB9 和 AY17 非常有效。此外,还开发了一种用于再生活化离子液体的创新技术,该技术基于使用 NaBH/NiSO、NaBH/NaSO 或 Raney Al-Ni 合金/NaOH 对形成的离子对进行化学还原。因此,只有 NaBH/NiSO 与 Al-Ni 合金协同作用,才能有效还原偶氮键,并随后对新生成的氯代芳香胺进行氢脱氯。通过测定最大吸收波长处的吸光度、化学需氧量(COD)和可吸附有机结合卤化物(AOX),评估了测试染料分离或离子对再生的效率。使用 H NMR 和 LC-MS 技术研究了这些离子对的形成、还原和氢脱氯产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/959d/10418802/a0a60e832732/ijms-24-12235-g001.jpg

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