首页> 外文期刊>Journal of occupational and environmental hygiene >A novel personal air sampling device for collecting volatile organic compounds: a comparison to charcoal tubes and diffusive badges.
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A novel personal air sampling device for collecting volatile organic compounds: a comparison to charcoal tubes and diffusive badges.

机译:一种用于收集挥发性有机化合物的新型个人空气采样设备:与木炭管和扩散徽章的比较。

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Evacuated canisters have been used for many years to collect ambient air samples for gases and vapors. Recently, significant interest has arisen in using evacuated canisters for personal breathing zone sampling as an alternative to sorbent sampling. A novel flow control device was designed and built at McGill University. The flow control device was designed to provide a very low flow rate, <0.5 mL/min, to allow a sample to be collected over an extended period of time. Previous experiments run at McGill have shown agreement between the mathematical and empirical models to predict flow rate. The flow control device combined with an evacuated canister (capillary flow control-canister) was used in a series of experiments to evaluate its performance against charcoal tubes and diffusive badges. Air samples of six volatile organic compounds were simultaneously collected in a chamber using the capillary flow control-canister, charcoal tubes, and diffusive badges. Five different concentrations of the six volatile organic compounds were evaluated. The results from the three sampling devices were compared to each other and to concentration values obtained using an online gas chromatograph (GC). Eighty-four samples of each method were collected for each of the six chemicals. Results indicate that the capillary flow control-canister device compares quite favorably to the online GC and to the charcoal tubes, p > 0.05 for most of the tests. The capillary flow control-canister was found to be more accurate for the compounds evaluated, easier to use, and easier to analyze than charcoal tubes and passive dosimeter badges.
机译:抽空的碳罐已经使用了很多年,以收集周围空气样本中的气体和蒸气。近来,对于使用抽空的罐进行个人呼吸区采样作为吸附剂采样的替代方案,引起了极大的兴趣。麦吉尔大学设计并制造了一种新型的流量控制装置。流量控制设备的设计可提供非常低的流速(<0.5 mL / min),从而可以在较长的时间内收集样品。麦吉尔(McGill)先前进行的实验表明,数学模型和经验模型可以预测流量。在一系列实验中使用了与排空的滤罐(毛细管流量控制滤罐)组合的流量控制装置,以评估其对木炭管和扩散徽章的性能。使用毛细管流量控制罐,木炭管和扩散标记将六种挥发性有机化合物的空气样品同时收集在一个室内。评价了六种挥发性有机化合物的五种不同浓度。将三个采样设备的结果相互比较,并与使用在线气相色谱仪(GC)获得的浓度值进行比较。对于六种化学物质,每种方法分别收集了八十四种样品。结果表明,毛细管流量控制罐设备与在线GC和木炭管相比非常有利,大多数测试中p> 0.05。已发现,与炭管和被动剂量计徽章相比,毛细管流量控制罐对所评估的化合物更准确,更易于使用且更易于分析。

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