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SPECIATION OF ORGANOTIN AND ORGANOLEAD COMPOUNDS IN DRINKING WATER BY GAS CHROMATOGRAPHY - ATOMIC EMISSION SPECTROMETRY

机译:气相色谱-原子发射光谱法测定饮用水中有机锡和有机油脂的含量。

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Raw and treated water samples and distribution system water samples were collected in forty-five Canadian municipalities for the analysis of organotin and organolead compounds. After extraction from the water samples organotin and organolead compounds were alkylated with pentylmagnesium bromide and butylmagnesium chloride respectively and analysed by gas chromatography-microwave induced plasma atomic emission spectrometry (GC-AED) using wavelengths specific for tin (326.23 nm) and lead (405.78 nm). The GC-AED system was optimised for trace level analysis, especially for organolead compounds. Organotin compounds, mainly methyltin and butyltin at concentrations up to 22 ng Sn/L and 43.6 ng Sn/L respectively, were detected in distributed water samples from six municipalities. No organotin compounds were detected in raw water samples indicating that the organotin compounds were leaching into the water from some component of the distribution system. One raw water sample contained six organolead compounds at concentrations from 0.5 to 10 ng Pb/L and five raw water and three distributed water samples contained trace levels (<0.5 ng Pb/L) of organolead compounds. Due to the lack of authentic standards the identity of the organolead compounds could not be confirmed by gas-chromatography mass-spectrometry.
机译:在加拿大的45个城市中收集了原水和处理过的水样本以及分配系统中的水样本,用于分析有机锡和有机铅化合物。从水中提取样品后,分别用戊基溴化镁和丁基氯化镁将有机锡和有机铅化合物烷基化,并通过气相色谱-微波诱导等离子体原子发射光谱法(GC-AED)使用锡(326.23 nm)和铅(405.78 nm)专用的波长进行分析。 )。 GC-AED系统针对痕量分析进行了优化,特别是对于有机铅化合物。在六个城市的分布式水样中检测到有机锡化合物,主要是甲基锡和丁基锡,其浓度分别高达22 ng Sn / L和43.6 ng Sn / L。在原水样品中未检测到有机锡化合物,表明有机锡化合物已从分配系统的某些组分浸入水中。一个原水样品包含六种有机铅化合物,浓度范围为0.5至10 ng Pb / L,五种原水,而三个分布式水样品则包含痕量水平(<0.5 ng Pb / L)的有机铅化合物。由于缺乏可靠的标准,无法通过气相色谱质谱法确认有机铅化合物的身份。

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