首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of traceable precision dynamic dilution method to generate dimethyl sulphide gas mixtures at sub-nanomole per mole levels for ambient measurement
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Development of traceable precision dynamic dilution method to generate dimethyl sulphide gas mixtures at sub-nanomole per mole levels for ambient measurement

机译:开发可追溯的精密动态稀释方法,以每摩尔水平生成亚纳摩尔以下的二甲基硫醚气体混合物用于环境测量

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Dimethyl sulphide (DMS) is an important compound in global atmospheric chemistry and climate change. Traceable international standards are essential for measuring accurately the long-term global trend in ambient DMS. However, developing accurate gas standards for sub-nanomole per mole (nmol/mol) mole fractions of DMS in a cylinder is challenging, because DMS is reactive and unstable. In this study, a dynamic dilution method that is traceable and precise was developed to generate sub-nmol/mol DMS gas mixtures with a dynamic dilution system based on sonic nozzles and a long-term (> 5 years) stable 10 mu mol/mol parent DMS primary standard gas mixtures (PSMs). The dynamic dilution system was calibrated with traceable methane PSMs, and its estimated dilution factors were used to calculate the mole fractions of the dynamically generated DMS gas mixtures. A dynamically generated DMS gas mixture and a 6 nmol/mol DMS PSM were analysed against each other by gas chromatography with flame-ionisation detection (GC/FID) to evaluate the dilution system. The mole fractions of the dynamically generated DMS gas mixture determined against a DMS PSM and calculated with the dilution factor agreed within 1% at 6 nmol/mol. In addition, the dynamically generated DMS gas mixtures at various mole fractions between 0.4 and 11.7 nmol/mol were analysed by GC/FID and evaluated for their linearity. The analytically determined mole fractions showed good linearity with the mole fractions calculated with the dilution factors. Results showed that the dynamic dilution method generates DMS gas mixtures ranging between 0.4 nmol/mol and 12 nmol/mol with relative expanded uncertainties of less than 2%. Therefore, the newly developed dynamic dilution method is a promising reference method for generating sub-nmol/mol DMS gas standards for accurate ambient measurements. (C) 2015 Elsevier B.V. All rights reserved.
机译:二甲基硫醚(DMS)是全球大气化学和气候变化中的重要化合物。可追溯的国际标准对于准确测量环境DMS的长期全球趋势至关重要。但是,为气瓶中DMS的每摩尔(nmol / mol)摩尔分数的亚纳摩尔开发准确的气体标准具有挑战性,因为DMS具有反应性且不稳定。在这项研究中,开发了一种可追溯且精确的动态稀释方法,以基于声波喷嘴的动态稀释系统和长期(> 5年)稳定的10 mu mol / mol生成亚nmol / mol DMS气体混合物。母DMS一级标准气体混合物(PSM)。用可追溯的甲烷PSM校准动态稀释系统,并使用其估计的稀释系数来计算动态生成的DMS气体混合物的摩尔分数。通过带有火焰电离检测器(GC / FID)的气相色谱对动态生成的DMS气体混合物和6 nmol / mol DMS PSM进行了相互分析,以评估稀释系统。相对于DMS PSM测得的动态生成的DMS气体混合物的摩尔分数,在6 nmol / mol时,稀释系数在1%范围内。另外,通过GC / FID分析了在0.4和11.7 nmol / mol之间的各种摩尔分数的动态生成的DMS气体混合物,并评估了它们的线性。分析确定的摩尔分数与用稀释因子计算的摩尔分数显示出良好的线性。结果表明,动态稀释法可生成DMS气体混合物,浓度范围在0.4 nmol / mol和12 nmol / mol之间,相对不确定度小于2%。因此,新开发的动态稀释方法是产生亚nmol / mol DMS气体标准品以进行准确的环境测量的有希望的参考方法。 (C)2015 Elsevier B.V.保留所有权利。

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