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Determination of butyltin compounds in aqueous samples by gas chromatography with flame photometric detector and headspace solid-phase microextraction after in-situ hydride derivatization

机译:氢化物衍生化-火焰光度检测器-顶空固相微萃取-气相色谱法测定水溶液中的丁基锡化合物

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摘要

A method for the extraction and determination of butyltin species in aqueous samples by solid-phase microextraction (SPME) combined with a capillary gas chromatography-flame photometric detector (GC-FPD) is described. The butyltin species was converted to its hydride form by sodium tetrahydroborate (NaBH4) in a closed headspace vial prior to extraction. A laboratory-assembled SPME device including a fused-silica fiber and a modified microsyringe protection part was used throughout the experiment. The extraction was an equilibrium process that depended on the butyltin species partitioning between the liquid phase and the fiber. When the equilibrium was reached, the fiber was directly transferred to a GC column under the protection of a microsyringe, where the analyte was thermally desorbed inside the heated injector and subsequently, separated in a HP-1 capillary column and detected by a laboratory-made flame photometric detector using quartz surface-induced tin emission. The detection limits based on the signal equal to 3 times of the base-line noise were 0.2 mu g/L, 0.2 mu g/L, 0.1 mu g/L and 0.02 mu g/L for monobutyltin (MBT), dibutyltin (DBT), tributyltin (TBT) and tetrabutyltin (TeBT), respectively. The recovery ranged from 85% to 117%. The proposed method has been applied to determination of butyltin species in Various aqueous samples.
机译:描述了一种通过固相微萃取(SPME)结合毛细管气相色谱-火焰光度检测器(GC-FPD)提取和测定水性样品中丁基锡种类的方法。在萃取前,先在封闭的顶空小瓶中用四氢硼酸钠(NaBH4)将丁基锡物质转变为氢化物形式。在整个实验过程中,使用了由实验室组装的SPME设备,该设备包括石英玻璃纤维和改良的微注射器保护部件。萃取是一个平衡过程,取决于丁基锡种类在液相和纤维之间的分配。当达到平衡时,将纤维直接转移到微注射器保护下的GC色谱柱中,在该色谱柱中,分析物在加热的进样器内热解吸,随后在HP-1毛细管柱中分离,并由实验室检测火焰光度检测器使用石英表面感应的锡发射。对于单丁基锡(MBT),二丁基锡(DBT),基于等于基线噪声3倍的信号的检出限为0.2μg / L,0.2μg / L,0.1μg / L和0.02μg / L ),三丁基锡(TBT)和四丁基锡(TeBT)。回收率从85%到117%。所提出的方法已用于测定各种水性样品中丁基锡的种类。

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    Jiang, GB; Liu, JY;

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  • 年度 2000
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