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首页> 外文期刊>Analytica chimica acta >In-drop derivatisation liquid-phase microextraction assisted by ion-pairing transfer for the gas chromatographic determination of phenolic endocrine disruptors
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In-drop derivatisation liquid-phase microextraction assisted by ion-pairing transfer for the gas chromatographic determination of phenolic endocrine disruptors

机译:离子对转移辅助的滴内衍生液相微萃取用于气相色谱法测定酚类内分泌干扰物

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摘要

A novel in-drop derivatisation liquid-phase microextraction procedure with an ion-pairing agent is developed and optimised for the extraction of endocrine-disrupting chemicals. The ethyl esters of the analytes were rapidly formed in the organic drop and analysed by gas chromatography. The effects of various parameters such as rate and time of agitation, ion-pairing agent and reactant concentration, pH and temperature were studied systematically to optimise the process and bring out the locale of reaction in the organic drop. A study of the mechanistic pathways of the overall procedure is attempted leading to interesting findings and delineating important points of the kinetics and mechanism. A mechanistic model is proposed on the basis of the theory of mass transfer with chemical reaction in two liquid phases. The O-ethoxycarbonyl deriyatisation appears to take place in the bulk organic phase. The system provides insight into the first reported analytical case of single-drop extraction-preconcentration-derivatisation assisted by an ion-pairing transfer and has all of the interesting facets of chemical reaction in which the role of mass transfer comes into picture. The analytical features of the method are acceptable and the overall relative standard deviations of the intra-day repeatability (n = 5) and inter-day reproducibility were < 3.9% and < 5.4%, respectively, for gas chromatography-mass spectrometry analyses and < 4.3% and < 7.1% for gas chromatography-flame ionisation detection analyses. The method was applicable to urine and surface water samples. The LODs ranged between 0.2-1.3 ng mL(-1) and 8.5-26.5 ng mL(-1) for GUMS and GC/FID analyses, respectively. (c) 2007 Elsevier B.V. All rights reserved.
机译:开发了一种新型的带有离子对剂的液滴内衍生化液相微萃取程序,并对其进行了优化,以提取干扰内分泌的化学物质。分析物的乙酯在有机液滴中迅速形成,并通过气相色谱法进行分析。系统研究了搅拌速率和时间,离子对剂,反应物浓度,pH和温度等各种参数的影响,以优化工艺并确定有机液滴中的反应部位。尝试对整个过程的机械途径进行研究,以得出有趣的发现并描述动力学和机理的重要点。基于在两个液相中具有化学反应的传质理论,提出了一种力学模型。 O-乙氧羰基的去烷基化作用似乎发生在本体有机相中。该系统提供了对首个通过离子对转移辅助进行单滴萃取-浓缩-衍生化的报道分析案例的洞察力,并具有化学反应的所有有趣方面,其中传质的作用得到了体现。该方法的分析特性是可以接受的,对于气相色谱-质谱分析,日内重复性(n = 5)和日间重现性的总体相对标准偏差分别为<3.9%和<5.4%。气相色谱-火焰电离检测分析的结果分别为4.3%和<7.1%。该方法适用于尿液和地表水样品。 GUMS和GC / FID分析的LOD分别在0.2-1.3 ng mL(-1)和8.5-26.5 ng mL(-1)之间。 (c)2007 Elsevier B.V.保留所有权利。

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