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Development and validation of a rapid and wide-scope qualitative screening method for detection and identification of organic pollutants in natural water and wastewater by gas chromatography time-of-f.

机译:开发和验证快速,广泛的定性筛选方法,用于通过气相色谱法检测和鉴定天然水和废水中的有机污染物。

摘要

In this work, a multiclass screening method for organic contaminants in natural and wastewater has been developed and validated for qualitative purposes, i.e. to ensure the reliable and sensitive identification of compounds detected in samples at a certain level of concentration. The screening is based on the use of GC-TOF MS, and the sample procedure involves solid phase extraction with C18 cartridges. Around 150 organic contaminants from different chemical families were investigated, including PAHs, octyl/nonyl phenols, PCBs, PBDEs and a notable number of pesticides, such as insecticides (organochlorines, organophosphorus, carbamates and pyrethroids), herbicides (triazines and chloroacetanilides), fungicides and several relevant metabolites. Surface water, ground water and effluent wastewater were spiked with all target analytes at three concentration levels (0.02, 0.1 and 1 μg/L). Influent wastewater and raw leachate from a municipal solid waste treatment plant were spiked at two levels (0.1 and 1 μg/L). Up to five m/z ions were evaluated for every compound. The identification criterion was the presence of, at least, two m/z ions at the expected retention time, measured at their accurate mass, and the accomplishment of the Q/qi intensity ratio within specified tolerances. The vast majority of compounds investigated were correctly identified in the samples spiked at 1 μg/L. When analyte concentration was lowered down to 0.1 μg/L the identification was more problematic, especially in complex-matrix samples like influent wastewater. On the contrary, many contaminants could be properly identified at the lowest level 0.02 μg/L in cleaner matrices. The procedure was applied to the screening of water samples of different origin and matrix composition and allowed the detection of several target contaminants. A highly reliable identification could be carried out thanks to the sensitive full-spectrum acquisition at accurate mass, the high selectivity reached with the use of narrow-mass window extracted ion chromatograms, the low mass errors observed in the positive detections and the Q/q ratio accomplishment.
机译:在这项工作中,已经开发了一种用于自然和废水中有机污染物的多级筛选方法,并已通过定性验证,即确保在一定浓度下可靠,灵敏地鉴定样品中检测到的化合物。筛选基于GC-TOF MS的使用,样品过程涉及使用C18柱进行固相萃取。对大约150种来自不同化学族的有机污染物进行了调查,包括多环芳烃,辛基/壬基酚,多氯联苯,多溴二苯醚和大量农药,例如杀虫剂(有机氯,有机磷,氨基甲酸酯和拟除虫菊酯),除草剂(三嗪和氯代乙酰苯胺),杀真菌剂。以及几种相关的代谢产物。所有目标分析物均以三种浓度水平(0.02、0.1和1μg/ L)加注地表水,地下水和废水。将来自市政固体废物处理厂的进水废水和原始沥出液加标到两个水平(0.1和1μg/ L)。每个化合物最多可评估五个m / z离子。鉴定标准是在预期保留时间至少存在两个m / z离子(以其准确质量进行测量),并且在指定的公差范围内达到Q / qi强度比。在加标浓度为1μg/ L的样品中可以正确鉴定出绝大多数被研究的化合物。当分析物浓度降低至0.1μg/ L时,鉴定将面临更多问题,尤其是在复杂基质样品(如进水)中。相反,在更清洁的基质中,最低限度为0.02μg/ L的许多污染物可以被正确识别。该程序用于筛选不同来源和基质组成的水样品,并允许检测几种目标污染物。准确的质量,灵敏的全光谱采集,使用窄质量窗口提取的离子色谱图实现的高选择性,在阳性检测中观察到的低质量误差和Q / q,可实现高度可靠的鉴定比率成就。

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