吸入有害空气污染物从环境烟草烟雾在美国住宅。

William W Nazaroff, Brett C Singer
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引用次数: 146

摘要

在美国,每年有4800万成年人吸烟3.5-5 × 10(11)支。许多人在私人住宅中吸烟,导致大约3100万非吸烟者(占美国人口的11%)经常接触环境烟草烟雾(ETS),其中包括1600万青少年。(上限估计为5300万非吸烟者,其中包括2800万青少年。)ETS包含许多化学物质,其工业排放被美国联邦政府规定为有害空气污染物(HAPs)。在本文中,估计了与吸烟者生活在一起的美国非吸烟者在ETS中16种HAPs的平均每日住宅暴露量和摄入量。评估基于物料平衡模型;利用有关吸烟习惯、人口统计和住房的公开数据;并纳入新报告的与暴露相关的排放因素。丙烯醛、乙醛、1,3-丁二烯和甲醛的估计平均暴露浓度与参考浓度之比接近或大于1,表明可能担心慢性暴露对健康的非癌症影响。此外,对于五种已知或可能的人类致癌物:乙醛、甲醛、苯、丙烯腈和1,3-丁二烯,住宅排放的碳排放交易体系暴露的终生癌症风险估计很大(约为2-500 /百万人)。对六种关键化合物与环境暴露源从住宅排放体系中累积的人口摄入量进行了比较。经研究发现,ETS是丙烯腈和1,3-丁二烯环境吸入的主要来源。它是摄入乙醛、丙烯醛和甲醛的一个重要原因,也是摄入苯的一个重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhalation of hazardous air pollutants from environmental tobacco smoke in US residences.

In the United States, 48 million adults smoke 3.5-5 x 10(11) cigarettes/year. Many cigarettes are smoked in private residences, causing regular environmental tobacco smoke (ETS) exposure to roughly 31 million nonsmokers (11% of the US population), including 16 million juveniles. (Upper bound estimates are 53 million exposed nonsmokers including 28 million juveniles.) ETS contains many chemical species whose industrial emissions are regulated by the US federal government as hazardous air pollutants (HAPs). In this paper, average daily residential exposures to and intakes of 16 HAPs in ETS are estimated for US nonsmokers who live with smokers. The evaluation is based on material-balance modeling; utilizes published data on smoking habits, demographics, and housing; and incorporates newly reported exposure-relevant emission factors. The ratio of estimated average exposure concentrations to reference concentrations is close to or greater than one for acrolein, acetaldehyde, 1,3-butadiene, and formaldehyde, indicating potential for concern regarding noncancer health effects from chronic exposures. In addition, lifetime cancer risks from residential ETS exposure are estimated to be substantial ( approximately 2-500 per million) for each of five known or probable human carcinogens: acetaldehyde, formaldehyde, benzene, acrylonitrile, and 1,3-butadiene. Cumulative population intakes from residential ETS are compared for six key compounds against ambient sources of exposure. ETS is found to be a dominant source of environmental inhalation intake for acrylonitrile and 1,3-butadiene. It is an important cause of intake for acetaldehyde, acrolein, and formaldehyde, and a significant contributor to intake for benzene.

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