首页> 外文期刊>Journal of environmental monitoring: JEM >Stable carbon and hydrogen isotope analysis of methyl tert-butyl ether and tert-amyl methyl ether by purge and trap-gas chromatography-isotope ratio mass spectrometry: Method evaluation and application
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Stable carbon and hydrogen isotope analysis of methyl tert-butyl ether and tert-amyl methyl ether by purge and trap-gas chromatography-isotope ratio mass spectrometry: Method evaluation and application

机译:吹扫捕集-气相色谱-同位素比质谱法对甲基叔丁基醚和叔戊基甲基醚的稳定碳氢同位素分析:方法评价与应用

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In order to monitor the behaviour of contaminants in the aqueous environment effective enrichment techniques often have to be employed due to their low concentrations. In this work a robust and sensitive purge and trap-gas chromatography-isotope ratio mass spectrometry method for carbon and hydrogen isotope analysis of fuel oxygenates in water is presented. The method evaluation included the determination of method detection limits, accuracy and reproducibility of δD and δ~(13)C values. Lowest concentrations at which reliable δ~(13)C values could be determined were 5 g L~(-1) and 28 g L~(-1) for TAME and MTBE, respectively. Stable δD values for MTBE and TAME could be achieved for concentrations as low as 25 and 50 g L~(-1). Good long-term reproducibility of δ~(13)C and δD values was obtained for all target compounds. But δD values varying more than 5‰ were observed using different thermal conversion tubes. Thus, a correction of δD values in the analysis of groundwater samples was necessary to guarantee comparability of the results. The applicability of this method was shown by the analysis of groundwater samples from a gasoline contaminated site. By two dimensional isotope analysis two locations within this site were identified at which anaerobic and aerobic degradation of methyl tert-butyl ether occurred.
机译:为了监测污染物在水环境中的行为,由于其浓度低,常常必须采用有效的富集技术。在这项工作中,提出了一种鲁棒且灵敏的吹扫和捕集-气相色谱-同位素比质谱方法,用于分析水中燃料含氧化合物的碳和氢同位素。方法评估包括确定方法检测限,δD和δ〜(13)C值的准确性和重现性。对于TAME和MTBE,可以确定可靠的δ〜(13)C值的最低浓度分别为5 g L〜(-1)和28 g L〜(-1)。当浓度低至25和50 g L〜(-1)时,MTBE和TAME的δD值可以达到稳定。所有目标化合物的δ〜(13)C和δD值均具有良好的长期重现性。但是使用不同的热转换管观察到的δD值变化超过5‰。因此,必须对地下水样品分析中的δD值进行校正,以保证结果的可比性。该方法的适用性通过分析汽油污染场所的地下水样品得到了证明。通过二维同位素分析,确定了该位点内的两个位置,在该位置发生了甲基叔丁基醚的厌氧和好氧降解。

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