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Eliminating the matrix effects of dissolved carbon dioxide and carbonate in extraction of triclosan and chlorophenols in environmental waters by hollow fiber supported liquid membrane

机译:空心纤维负载液膜消除环境水中三氯生和氯酚提取中溶解的二氧化碳和碳酸盐的基质效应

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Hollow fiber supported liquid membrane (HFSLM) extraction often suffers from matrix effects in extracting weak organic acids in environmental waters, but the reasons for which are unclear. This work systematically studied the influence of dissolved carbon dioxide and carbonate on the HFSLM extraction of analytes in environmental waters, by using triclosan and its two typical degradation products, 2,4-dichlorophenol and 2,4,6-trichlorophenol, as model compounds. HFSLM was conducted by immersing a HFSLM extraction device into a 200 mL water sample modified with 0.01 M HCl and 10% (m/v) NaCl, and shaking at 250 rpm for 90 min. The extraction device was prepared by immobilizing dihexyl ether on the polypropylene hollow fiber membrane wall (60 cm length, 50 ??m wall thickness, 280 ??m inner diameter), filling the fiber lumen with 0.4 M NaOH as acceptor, and closing the two ends of the fiber with aluminum foil. It was demonstrated that the dissolved carbon dioxide and carbonate present in environmental samples reduces the acceptor pH and thus the recovery of target analytes, and purging the acidified sample with a??50 mL mina?’1 N2 for 15 min is a very efficient approach to eliminate this matrix effect. With this purging pretreatment, the recoveries of the analytes in environmental samples increased substantially from below 40% to between 63% and 121%. For the three analytes, the proposed HFSLM method provided enrichment factors in the range of 1090a€“1322, and detection limits in the range of 0.1a€“0.2 ??g La?’1 by coupling with an ultra-performance liquid chromatography-mass spectrometry system.
机译:中空纤维支持液膜(HFSLM)的提取在提取环境水中的弱有机酸时经常会遇到基质效应,但是原因尚不清楚。这项工作通过使用三氯生及其两种典型降解产物2,4-二氯苯酚和2,4,6-三氯苯酚作为模型化合物,系统地研究了溶解的二氧化碳和碳酸盐对环境水中HFSLM萃取分析物的影响。通过将HFSLM提取装置浸入用0.01 M HCl和10%(m / v)NaCl改性的200 mL水样品中并以250 rpm摇动90分钟来进行HFSLM。通过将二己基醚固定在聚丙烯中空纤维膜壁上(60厘米长,壁厚50微米,内径280微米),然后用0.4 M NaOH填充纤维腔,然后关闭纤维的两端用铝箔纸。结果表明,环境样品中存在的溶解的二氧化碳和碳酸盐会降低受体的pH值,从而降低目标分析物的回收率,用50 mL mina-1 N2净化酸化的样品15分钟是一种非常有效的方法。消除这种矩阵效应。通过这种吹扫预处理,环境样品中分析物的回收率从低于40%大幅提高到63%至121%。对于这三种分析物,拟议的HFSLM方法通过与超高效液相色谱联用提供的富集因子在1090a?1322范围内,检测限在0.1a?0.2?g La?'1范围内。质谱系统。

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