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Evaluation of active sampling strategies for the determination of 1,3- butadiene in air

机译:评估空气中1,3-丁二烯的主动采样策略的评估

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摘要

Two analytical methods for determining levels of 1,3-butadiene in urban and industrial atmospheres were evaluated in this study. Both methods are extensively used for determining the concentration of volatile organic compounds in the atmosphere and involve collecting samples by active adsorptive enrichment on solid sorbents. The first method uses activated charcoal as the sorbent and involves liquid desorption with carbon disulfide. The second involves the use of a multi-sorbent bed with two graphitised carbons and a carbon molecular sieve as the sorbent, with thermal desorption. Special attention was paid to the optimization of the sampling procedure through the study of sample volume, the stability of 1,3-butadiene once inside the sampling tube and the humidity effect. In the end, the thermal desorption method showed better repeatability and limits of detection and quantification for 1,3-butadiene than the liquid desorption method, which makes the thermal desorption method more suitable for analysing air samples from both industrial and urban atmospheres. However, sampling must be performed with a pre-tube filled with a drying agent to prevent the loss of the adsorption capacity of the solid adsorbent caused by water vapour. The thermal desorption method has successfully been applied to determine of 1,3-butadiene inside a 1,3-butadiene production plant and at three locations in the vicinity of the same plant.
机译:在这项研究中,评估了两种测定城市和工业环境中1,3-丁二烯含量的分析方法。两种方法都广泛用于确定大气中挥发性有机化合物的浓度,并且涉及通过在固体吸附剂上进行主动吸附富集来收集样品。第一种方法使用活性炭作为吸附剂,并涉及使用二硫化碳进行液体解吸。第二个涉及使用带有两个石墨化碳和一个碳分子筛作为吸附剂的多吸附床,并进行热脱附。通过研究样品量,1,3-丁二烯进入采样管后的稳定性以及湿度影响,对采样程序的优化给予了特别关注。最后,热脱附方法显示出比液体脱附方法更好的可重复性,以及对1,3-丁二烯的检测和定量限制,这使得热脱附方法更适合分析工业和城市大气中的空气样品。但是,必须在装有干燥剂的预管中进行采样,以防止水蒸气引起的固体吸附剂吸附能力的损失。热脱附方法已成功应用于在1,3-丁二烯生产厂内部以及同一工厂附近的三个位置测定1,3-丁二烯。

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