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工作场所空气中丙酮的吸附剂采样和分析程序评价:浓度和相对湿度的变化。

Evaluation of Sorbent Sampling and Analysis Procedures for Acetone in Workplace Air: Variations of Concentration and Relative Humidity.

机构信息

Health Effects Laboratory Division, National Institute for Occupational Safety and Health (NIOSH), Centers for Disease Control and Prevention (CDC), MS, Morgantown, WV, USA.

Respiratory Health Division, NIOSH, CDC, Morgantown, WV, USA.

出版信息

Ann Work Expo Health. 2020 Jan 1;64(1):96-105. doi: 10.1093/annweh/wxz087.

Abstract

This study experimentally evaluates the performance of different sorbent tubes for sampling acetone vapor in workplace air. A dynamic atmosphere system produced an acetone alone and a mixture with other analytes containing ~73, 483, and 1898 µg acetone mass loading at 25, 50, and 75% relative humidity (RH) at 25°C. Sorbent samples were analyzed in accordance with OSHA Method 69 (Carbosieve S-III) and NMAM 1501, modified to use Anasorb 747 sorbent. Both methods were modified to include the additional analytes. Additional extraction procedures with and without 1% dimethylformamide and anhydrous magnesium sulfate were included in the modified NMAM 1501 using Anasorb 747. Silica gel sorbent tubes analyzed according to NMAM 2027 were included. There were significant reductions in the recovery of acetone from both Anasorb 747 and Carbosieve S-III collected from air at 75% RH, relative to collection at 25 or 50% RH at very low loading compared with that of samples collected at mid to high loading. Silica gel provided a consistent recovery of acetone at all RHs and in the presence of other chemical interferences at 75% RH. The likely cause of mass dependence may arise from the humidity effect on acetone adsorption onto both beaded active carbon and carbon molecular sieve either in sampling or in analysis. The present study confirms not only previous observations but also adds to the literature showing carbonaceous sorbents are not well suited for sampling ketones at high humidity and low concentration.

摘要

本研究通过实验评估了不同吸附管在采集工作场所空气中丙酮蒸气时的性能。在 25°C 下,动态气氛系统分别产生了单独的丙酮蒸气和含有约 73、483 和 1898 µg 丙酮质量负载的丙酮混合物,相对湿度分别为 25%、50%和 75%。根据 OSHA 方法 69(Carbosieve S-III)和 NMAM 1501 对吸附剂样品进行了分析,方法进行了修改,采用了 Anasorb 747 吸附剂。两种方法都进行了修改,包括了其他分析物。NMAM 1501 中还包括了使用 Anasorb 747 时带有和不带有 1%二甲基甲酰胺和无水硫酸镁的额外提取程序。根据 NMAM 2027 对硅胶吸附管进行了分析。与在中高负载下采集的样品相比,在 75%相对湿度下从空气采集的 Anasorb 747 和 Carbosieve S-III 对丙酮的回收率显著降低,特别是在非常低的负载下。硅胶在所有相对湿度下都能提供稳定的丙酮回收率,并且在 75%相对湿度下存在其他化学干扰物时也是如此。质量依赖性的可能原因可能是湿度对珠状活性炭和碳分子筛吸附丙酮的影响,无论是在采样过程中还是在分析过程中。本研究不仅证实了以前的观察结果,而且还增加了有关文献,表明碳质吸附剂不适合在高湿度和低浓度下采集酮类物质。

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本文引用的文献

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Adsorption of VOCs onto engineered carbon materials: A review.挥发性有机化合物在工程碳材料上的吸附:综述。
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Sorbent trapping of volatile organic compounds from air.空气中挥发性有机化合物的吸附剂捕集
J Chromatogr A. 2000 Jul 14;885(1-2):129-51. doi: 10.1016/s0021-9673(00)00363-0.

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