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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >On line coupling HPLC and quartz surface-induced luminescence FPD with hydride generation and microporous membrane gas-liquid separator as interface for the speciation of methyltins
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On line coupling HPLC and quartz surface-induced luminescence FPD with hydride generation and microporous membrane gas-liquid separator as interface for the speciation of methyltins

机译:在线联用HPLC和石英表面诱导发光FPD,并生成氢化物和微孔膜气液分离器作为甲基锡物种形成的界面

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A novel on-line coupled high performance liquid chromatography (HPLC)-hydride generation (HG)-microporous membrane gas-liquid separator (MGLS)-quartz surface-induced luminescence flame photometric detector (QSIL-FPD) system was developed for the speciation of methyltins. Methyltin compounds were separated by HPLC, and then on-line reacted with potassium borohydride to generate volatile hydride products. The volatile derivatization products were in-line separated from the liquid matrix with MGLS and further introduced into the cheap and specific QSIL-FPD for detection. With a mobile phase of 70% methanol, 3% acetic acid and 27% water, which contains 0.1% tropolone as complexant, at a 0.3 mL min~(-1) flow rate, monomethyltin (MMT), dimethyltin (DMT) and trimethyltin (TMT) were baseline separated in less than 13 minutes by reversed phase HPLC. Both derivatization reagents, 0.5% KBH_4 and 2% acetic acid, were introduced into the system simultaneously at the same flow rate of 0.4 mL min~(-1). Calibration curves, based on peak heights vs. concentration, were linear in the range of 1-100 ng mL~(-1) of methyltins with correlation coefficients of 0.9980, 0.9911 and 0.9975 for MMT, DMT and TMT, respectively. The relative standard deviations measured at 10 ng mL~(-1) (for MMT and DMT) and 5 ng mL~(-1) (for TMT) level were in the range of 2.0-3.8% (n = 3) for the studied methyltins, and the calculated detection limits (S/N = 3) for MMT, DMT and TMT were 1.69, 0.51 and 0.36 ng mL~(-1), respectively. This developed method was applied to the speciation of methyltins in seawater with spiked recovery in the range of 95.9-100.7%. This method was also applied to the determination of the methyltin compounds in wastewater and the process solutions (the mixtures of methyltin trichloride and dimethyltin dichloride) which are the intermediates of methyltin mercaptide polyvinyl chloride heat stabilizer from a chemical factory.
机译:开发了一种新型的在线耦合高效液相色谱法(HPLC)-氢化物发生(HG)-微孔膜气液分离器(MGLS)-石英表面诱导发光火焰光度检测器(QSIL-FPD)系统。甲基锡。通过HPLC分离甲基锡化合物,然后使其与硼氢化钾在线反应以生成挥发性氢化物产物。使用MGLS在线将挥发性衍生产品从液体基质中分离出来,并进一步引入廉价且特定的QSIL-FPD中进行检测。在流速为0.3 mL min〜(-1)的条件下,以70%甲醇,3%乙酸和27%水(其中包含0.1%托酚酮作为络合物)的流动相,单甲基锡(MMT),二甲基锡(DMT)和三甲基锡(TMT)在不到13分钟的时间内通过反相HPLC进行基线分离。将两种衍生试剂0.5%KBH_4和2%乙酸以0.4 mL min〜(-1)的相同流速同时引入系统中。基于峰高与浓度的校正曲线在1-100 ng mL〜(-1)的甲基锡范围内呈线性,MMT,DMT和TMT的相关系数分别为0.9980、0.9911和0.9975。对于MMT和DMT,在10 ng mL〜(-1)(对于TMT)和5 ng mL〜(-1)(对于TMT)水平下测得的相对标准偏差在2.0-3.8%(n = 3)的范围内对甲基锡进行了研究,计算得出的MMT,DMT和TMT的检出限(S / N = 3)分别为1.69、0.51和0.36 ng mL〜(-1)。该开发的方法用于海水中甲基锡的形态分析,加标回收率在95.9-100.7%范围内。该方法还用于测定废水和处理溶液(三氯化甲基锡和二氯化二甲基锡的混合物)中的甲基锡化合物,这些溶液是化工厂生产的甲基硫醇锡聚氯乙烯热稳定剂的中间体。

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