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首页> 外文期刊>Journal of occupational and environmental hygiene >Performance of small evacuated canisters equipped with a novel flow controller for the collection of personal air samples.
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Performance of small evacuated canisters equipped with a novel flow controller for the collection of personal air samples.

机译:小型疏散罐的性能,配备了用于集合个人空气样本的新型流量控制器。

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Small evacuated canisters have become more common in industrial hygiene personal sampling in recent years. The smaller canisters necessitate a low flow rate to ensure a full-shift air sample can be collected. Evaluation of small evacuated canisters compared to sorbent sampling methods is essential to ensure that the canisters accurately monitor airborne contamination. This data, in a controlled environment, will provide practitioners with valuable reference information when considering air-sampling campaigns. Six 300-mL evacuated canisters were used to collect 6-hour breathing zone samples of styrene on volunteers in a large exposure chamber. The canisters were specially designed with a capillary flow controller developed at McGill University in the mid-1990s. Based on the geometry of the capillary the airflow into the canisters was controlled to a low flow rate, approximately 0.3 mL/min. This low sampling flow rate allowed for the use of small-volume canisters as personal samplers to collect styrene vapors. Charcoal tubes and diffusive badges were simultaneously used to collect side-by-side samples for comparison. In addition, an online gas chromatograph (GC) documented the concentration in the chamber throughout the duration of the exposure. The three methods did not disclose any significant statistical difference when compared to the online GC values and to each other. In addition, linear regression analysis between the charcoal tubes and the canisters resulted in a correlation (R(2) > 0.95). An evaluation of the bias and precision (overall uncertainty) of the capillary-canister method, charcoal tubes, and diffusive badges found them to be within criteria established by European Committee for Standardization 482. The results indicate that the capillary-canister sampling device can be an acceptable alternative to sorbent samplers as a personal sampler providing reliable results that are representative of exposures.
机译:近年来,小型疏散的罐在工业卫生个人采样中变得更加常见。较小的罐需要低流速以确保可以收集全移空气样品。与吸附剂采样方法相比,对小型抽空罐的评估对于确保罐准确地监测空气污染至关重要。在受控环境中,此数据将在考虑空气采样活动时提供具有有价值参考信息的从业者。使用六个300毫升抽空的罐用于在大曝光室中收集6小时呼吸区苯乙烯的血液呼吸区样品。罐专门设计有20世纪90年代中期在麦吉尔大学开发的毛细管流量控制器。基于毛细血管的几何形状,将气流进入罐的低流速,约0.3ml / min。这种低采样流量允许使用小容量罐作为个人采样器来收集苯乙烯蒸汽。木炭管和扩散徽章同时用于收集并排样品进行比较。另外,在曝光的持续时间内,在线气相色谱仪(GC)记录了腔室中的浓度。与在线GC值和彼此相比,这三种方法没有透露任何显着的统计差异。另外,木炭管和罐之间的线性回归分析导致相关性(R(2)> 0.95)。评估毛细管 - 罐方法,木炭管和扩散徽章的偏差和精度(总体不确定性)发现它们在欧洲标准化482委员会建立的标准内。结果表明毛细管 - 罐抽样装置可以是吸附剂采样器作为个人采样器的可接受的替代品,提供了代表暴露的可靠结果。

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