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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Optimisation of a headspace-solid-phase micro-extraction method for simultaneous determination of organometallic compounds of mercury, lead and tin in water by gas chromatography-tandem mass spectrometry
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Optimisation of a headspace-solid-phase micro-extraction method for simultaneous determination of organometallic compounds of mercury, lead and tin in water by gas chromatography-tandem mass spectrometry

机译:气相色谱-串联质谱法同时测定水中汞,铅和锡的有机金属顶空-固相微萃取方法的优化

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In this work, a headspace-solid-phase micro-extraction (HS-SPME) combined with gas chromatography-mass spectrometry (GC-MS) method for multielemental speciation of organometallic compounds of mercury, lead and tin in water samples was upgraded by the introduction of tandem mass spectrometry (MS/MS) as detection technique. The analytical method is based on the ethylation with NaBEt4 and simultaneous headspace-solid-phase micro-extraction of the derivative compounds followed by GC-MS/MS analysis. The main experimental parameters influencing the extraction efficiency such as derivatisation time, extraction time and extraction temperature were optimized. The overall optimum extraction conditions were the following: a 50_m/30_m divinyl-benzene/carboxen/polydimethylsiloxane (DVB/CAR/PDMS) SPME fibre, 150 min derivatisation time, 15 min extraction time, sample agitation at 250 rpm and 40 C extraction temperature. The analytical characteristics of the HS-SPME method combined with GC-MS and GC-MS/MS were evaluated. The combination of both techniques HS_SPME and GC-MS/MS allowed to attain lower limits of detection (4-33 ng I~(-1)) than those obtained by HS-SPME-GC-MS (17-45ng1~(-1)). The proposed method presented good linear regression coefficients (r~2 > 0.9970) and repeatability (4.8-21.0%) for all the compounds under study. The accuracy of the method measured as the average percentage recovery of the compounds in spiked river water and seawater samples was higher than 80% for all the compounds studied, except for monobutyltin in the river water sample. A study of the uncertainty associated with the analytical results was also carried out.
机译:这项工作改进了顶空固相微萃取(HS-SPME)结合气相色谱-质谱(GC-MS)方法对水中水银,铅和锡的有机金属化合物进行多元素形态分析。引入串联质谱(MS / MS)作为检测技术。分析方法的基础是用NaBEt4进行乙基化,同时对衍生化合物进行顶空-固相微萃取,然后进行GC-MS / MS分析。优化了影响萃取效率的主要实验参数,如衍生化时间,萃取时间和萃取温度。最佳的总体提取条件如下:50_m / 30_m二乙烯基苯/羧基/聚二甲基硅氧烷(DVB / CAR / PDMS)SPME纤维,150分钟的衍生时间,15分钟的提取时间,250 rpm的样品搅拌和40 C的提取温度。评价了结合GC-MS和GC-MS / MS的HS-SPME方法的分析特性。与HS-SPME-GC-MS获得的检测限(17-45ng1〜(-1)相比,HS_SPME和GC-MS / MS两种技术的组合可实现更低的检测限(4-33 ng I〜(-1))。 ))。对于所研究的所有化合物,该方法均具有良好的线性回归系数(r〜2> 0.9970)和可重复性(4.8-21.0%)。对于所研究的所有化合物,该方法的准确度以加标河水和海水样品中化合物的平均回收率计,高于80%,但河水中样品中的单丁基锡除外。还对与分析结果相关的不确定性进行了研究。

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