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采用固相萃取-分散固相萃取与液相色谱-串联质谱法对海洋棘皮动物(海参)和海洋沉积物中 36 种优先污染物和新兴污染物进行多残留分析。

Multi-residue analysis of 36 priority and emerging pollutants in marine echinoderms (Holothuria tubulosa) and marine sediments by solid-liquid extraction followed by dispersive solid phase extraction and liquid chromatography-tandem mass spectrometry analysis.

机构信息

Department of Analytical Chemistry, Superior Polytechnic School, University of Seville, C/ Virgen de África 7, E-41011 Seville, Spain.

Research Group of Analytical Chemistry and Life Sciences, Department of Analytical Chemistry, University of Granada, Campus of Fuentenueva, E-18071 Granada, Spain.

出版信息

Talanta. 2017 May 1;166:336-348. doi: 10.1016/j.talanta.2017.01.062. Epub 2017 Jan 26.

Abstract

Marine echinoderms are filter-feeding invertebrates widely distributed along the coasts, and which are therefore extensively exposed to anthropogenic xenobiotics. They can serve as good sentinels for monitoring a large variety of contaminants in marine ecosystems. In this context, a multi-residue analytical method has been validated and applied to Holothuria tubulosa specimens and marine sediments for the determination of 36 organic compounds, which belong to some of the most problematic groups of emerging and priority pollutants (perfluoroalkyl compounds, estrogens, parabens, benzophenones, plasticizers, surfactants, brominated flame retardants and alkylphenols). Lyophilization of samples prior to solvent extraction and clean-up of extracts with C18, followed by liquid chromatography-tandem mass spectrometry analysis, is proposed. A Box-Behnken design was used for optimization of the most influential variables affecting the extraction and clean-up steps. For validation, matrix-matched calibration and recovery assay were applied. Linearity (% r) higher than 99%, recoveries between 80% and 114% (except in LAS and NP1EO), RSD (precision) lower than 15% and limits of quantification between 0.03 and 12.5ngg dry weight (d.w.) were achieved. The method was applied to nine samples of Holothuria collected along the coast of Granada (Spain), and to marine sediments around the animals. The results demonstrated high bioaccumulation of certain pollutants. A total of 25 out of the 36 studied compounds were quantified, being surfactants, alkylphenols, perfluoroalkyl compounds, triclocarban and parabens the most frequently detected. Nonylphenol was found in the highest concentration (340 and 323ngg d.w. in sediment and Holothuria samples, respectively).

摘要

海洋棘皮动物是滤食性无脊椎动物,广泛分布于沿海地区,因此广泛暴露于人为外来污染物中。它们可以作为监测海洋生态系统中各种污染物的良好哨兵。在这种情况下,已经验证并应用了一种多残留分析方法,用于测定 36 种有机化合物,这些化合物属于一些最具问题的新兴和优先污染物(全氟烷基化合物、雌激素、对羟基苯甲酸酯、二苯甲酮、增塑剂、表面活性剂、溴化阻燃剂和烷基酚)。建议在溶剂提取前对样品进行冷冻干燥,并使用 C18 对提取物进行净化,然后进行液相色谱-串联质谱分析。采用 Box-Behnken 设计对影响提取和净化步骤的最具影响力的变量进行优化。为了验证,采用基质匹配校准和回收率测定法。线性(%r)高于 99%,回收率在 80%至 114%之间(除 LAS 和 NP1EO 外),精密度(RSD)低于 15%,定量限在 0.03 至 12.5ngg 干重(d.w.)之间。该方法应用于格拉纳达(西班牙)沿海地区采集的 9 个 Holothuria 样本和动物周围的海洋沉积物。结果表明,某些污染物具有较高的生物蓄积性。在所研究的 36 种化合物中,共有 25 种被定量,其中表面活性剂、烷基酚、全氟烷基化合物、三氯卡班和对羟基苯甲酸酯是最常检测到的。壬基酚的浓度最高(沉积物和 Holothuria 样品中的浓度分别为 340 和 323ngg d.w.)。

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