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Matrix solid-phase dispersion followed by gas chromatography tandem mass spectrometry for the determination of benzotriazole UV absorbers in sediments

机译:基质固相分散-气相色谱串联质谱法测定沉积物中的苯并三唑紫外线吸收剂

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摘要

A cost-effective and low solvent consumption method, based on the matrix solid-phase dispersion (MSPD) technique, for the determination of six benzotriazole UV absorbers in sediments is presented. Sieved samples (0.5 g) were first mixed in a mortar with a solid sorbent and then transferred to a polypropylene syringe containing a layer of clean-up co-sorbent. Analytes were eluted with a suitable solvent and further determined by gas chromatography with tandem mass spectrometry (GC-MS/MS). Under final conditions, diatomaceous earth and silica, deactivated to 10%, were used as inert dispersant and clean-up co-sorbent, respectively. Analytes were recovered using just 5 mL of dichloromethane, and this extract was concentrated and exchanged to 1 mL of isooctane. Further removal of co-extracted sulphur was achieved adding activated copper powder to final extracts, which were stored overnight, before injection in the GC-MS/MS system. The accuracy of the method was assessed with river and marine sediment samples showing different carbon contents and spiked at different concentrations in the range from 40 to 500 ng g−1. Recoveries varied between 78% and 110% with associated standard deviations below 14%. The limits of quantification of the method stayed between 3 and 15 ng g−1. Levels of target compounds in sediment samples ranged from not detected up to a maximum of 56 ng g−1 for Tinuvin 328.
机译:提出了一种基于基质固相分散(MSPD)技术的经济高效且低溶剂消耗的方法,用于测定沉积物中的六种苯并三唑紫外线吸收剂。首先将筛分后的样品(0.5克)在研钵中与固体吸附剂混合,然后转移至包含一层清洁助吸附剂的聚丙烯注射器中。用合适的溶剂洗脱分析物,并通过气相色谱-串联质谱法(GC-MS / MS)进一步测定。在最终条件下,减活至10%的硅藻土和二氧化硅分别用作惰性分散剂和清洁助吸附剂。仅使用5 mL二氯甲烷即可回收分析物,并将此萃取液浓缩并交换为1 mL异辛烷。通过将活性铜粉末添加到最终提取物中,可以进一步去除共提取的硫,最终提取物在注入GC-MS / MS系统之前应储存过夜。用显示不同碳含量并以40到500 ng g -1 范围内的不同浓度加标的河流和海洋沉积物样品评估该方法的准确性。回收率在78%和110%之间变化,相关的标准偏差低于14%。该方法的定量限在3到15 ng g -1 之间。沉积物样品中目标化合物的水平范围从未检测到最大为Tinuvin 328的56 ng g -1

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