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The challenge of sample-stabilisation in the era of multi-residue analytical methods: A practical guideline for the stabilisation of 46 organic micropollutants in aqueous samples

机译:多残留分析方法时代样品稳定的挑战:稳定水中样品中46种有机微量污染物的实用指南

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摘要

Water sample storage and stabilisation may affect data quality, if samples are managed improperly. In this study three stabilising strategies are evaluated for 46 relevant organic micro-pollutants: addition of the bio-cides (ⅰ) copper sulphate and (ⅱ) sodium azide to water samples directly after sampling with subsequent sample storage as liquid phase and (ⅲ) direct solid phase extraction (SPE), stabilising the samples by reducing the activity of water. River water and treated effluent were chosen as commonly investigated matrices with a high potential of biotransformation activity. Analyses were carried out for sample storage temperatures of 4 and 28 ℃ for water samples stored as liquid phase and for sample storage temperatures of 4, 20 and 40 ℃ for SPE cartridges. Cooling of water samples alone was not sufficient for longer storage times (>24 h). While copper sulphate caused detrimental interferences with nitrogen containing heterocyclic compounds, sodium azide proved to be a suitable stabilising agent. The best results could be obtained for SPE cartridges stored cool. Recommendations for samples preservation are provided.
机译:如果样本管理不当,水样本的存储和稳定化可能会影响数据质量。在这项研究中,针对46种相关的有机微污染物评估了三种稳定策略:在采样后直接将生物杀伤剂(ⅰ)硫酸铜和(ⅱ)叠氮化钠添加到水样品中,随后将样品存储为液相和(ⅲ)直接固相萃取(SPE),通过降低水的活性来稳定样品。选择河水和经处理的污水作为具有高生物转化活性潜力的常用基质。对于以液相形式存储的水样品,样品的存储温度分别为4和28℃,对于SPE滤芯,样品的存储温度为4、20和40℃。仅冷却水样品不足以延长储存时间(> 24小时)。尽管硫酸铜对含氮杂环化合物造成有害干扰,但叠氮化钠被证明是合适的稳定剂。冷藏保存的SPE滤芯可以获得最佳结果。提供了样品保存的建议。

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