首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Minimisation of artefact formation of dimethyl disulphide during sampling and analysis of methanethiol in air using solid sorbent materials
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Minimisation of artefact formation of dimethyl disulphide during sampling and analysis of methanethiol in air using solid sorbent materials

机译:使用固体吸附剂材料将空气中甲硫醇的采样和分析过程中的二甲基二硫化物的假象形成降至最低

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Methanethiol (MT) is a potent odorant that can be difficult to measure due to its high volatility and reactivity; it easily reacts to form dimethyl disulphide (DMDS) during sampling and/or analysis. This paper focuses on finding an optimal method for sampling and measuring MT with minimum artefact formation using sorbent materials and a thermal desorption-gas chromatography-mass spectrometry method (TD-GC-MS). Experiments were conducted to identify suitable sorbent materials and tubes for analysis. Breakthrough, desorption rate, the effects of storage and desorption temperatures were investigated and different drying methods were established with respect to quantitative sampling and formation of DMDS. Proton-transfer-reaction mass spectrometry (PTR-MS) was used in the development of the method and was an especially useful tool for determination of breakthrough. The results show that glass tubes packed with silica gel for pre-concentration of MT before analysis with TD-GC-MS give the best results. In addition, a combination of Tenax TA and carbonised molecular sieve or Tenax TA cooled to ≤0°C gives acceptable results. 80°C was found to be the optimal desorption temperature. For all the sampling methods tested, storage conditions were observed to be very critical for transformation of MT. Room temperature storage should be limited to few minutes and, in general, tubes should be kept at 0°C or lower during storage.
机译:甲硫醇(MT)是一种强力的气味剂,由于其高挥发性和高反应活性而难以测量。在采样和/或分析过程中,它很容易反应形成二甲基二硫(DMDS)。本文着重于寻找一种使用吸附剂材料和热脱附-气相色谱-质谱法(TD-GC-MS)来以最少的伪影形成来采样和测量MT的最佳方法。进行实验以鉴定合适的吸附剂材料和用于分析的管。研究了突破,解吸速率,储存和解吸温度的影响,并建立了关于定量采样和DMDS形成的不同干燥方法。质子转移反应质谱法(PTR-MS)被用于该方法的开发中,并且是测定突破的特别有用的工具。结果表明,在用TD-GC-MS分析之前,用硅胶填充的玻璃管可用于MT的预浓缩。此外,将Tenax TA和碳化分子筛或Tenax TA冷却至≤0°C的组合可获得可接受的结果。发现80℃是最佳解吸温度。对于所有测试的抽样方法,观察到储存条件对于MT的转化非常关键。室温下储存应限制在几分钟内,并且在储存过程中,通常应将试管保持在0°C或更低的温度。

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