Jo W K, Song K B
Department of Environmental Engineering, Kyungpook National University, Bukgu Taegu, South Korea.
Sci Total Environ. 2001 Mar 26;269(1-3):25-37. doi: 10.1016/s0048-9697(00)00774-9.
Workers who work near volatile organic compounds (VOCs) source(s), motor vehicle exhausts and/or gasoline vapor emissions, are suspected to be exposed to highly-elevated VOC levels during their work-time. This study confirmed this suspicion and evaluated the work-time exposure VOCs for traffic police officers, parking garage attendants, service station attendants, roadside storekeepers and underground storekeepers, by measuring the concentrations of six aromatic VOCs in workplace air, or personal air and breath samples. For nearly all target VOCs, the post-work breath concentrations of the workers were slightly or significantly higher than the pre-work breath concentrations, depending on the compound and occupation. Furthermore, both the pre- and post-work breath concentrations of the workers showed elevated levels compared with a control group of college students. The post-work breath concentrations were significantly correlated with the personal air concentrations, while the pre-work breath concentrations were not. Smoking workers were not always exposed to higher aromatic VOC levels than non-smoking workers. The breath and personal air concentrations for all the target compounds were both higher for underground parking garage attendants than for ground-level parking attendants. For all the target compounds except toluene, storekeepers exhibited similar levels of exposure for all store types. Print shopkeepers recorded the highest toluene exposure.
在挥发性有机化合物(VOCs)源、机动车尾气和/或汽油蒸气排放源附近工作的工人,被怀疑在工作期间接触到高度升高的VOC水平。本研究证实了这一怀疑,并通过测量工作场所空气、个人空气和呼气样本中六种芳香族VOCs的浓度,评估了交通警察、停车场管理员、加油站服务员、路边店主和地下店主在工作时间对VOCs的接触情况。对于几乎所有目标VOCs,根据化合物和职业的不同,工人下班后的呼气浓度略高于或显著高于上班前的呼气浓度。此外,与大学生对照组相比,工人上班前和下班后的呼气浓度均呈现升高水平。下班后的呼气浓度与个人空气浓度显著相关,而上班前的呼气浓度则不然。吸烟工人并不总是比不吸烟工人接触到更高的芳香族VOC水平。地下停车场管理员的所有目标化合物的呼气和个人空气浓度均高于地面停车场管理员。对于除甲苯外的所有目标化合物,各类店主的接触水平相似。印刷店主的甲苯接触量最高。