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倒塌建筑物产生的气溶胶的物理特性及健康影响。

Physical characteristics and health effects of aerosols from collapsed buildings.

作者信息

Gavett Stephen H

机构信息

Experimental Toxicology Division, National Health and Environmental Effects Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, USA.

出版信息

J Aerosol Med. 2006 Spring;19(1):84-91. doi: 10.1089/jam.2006.19.84.

Abstract

Airborne pollutants can rise to extreme levels when large buildings fall down. The terrorist attack on New York's World Trade Center (WTC) towers caused the release of an enormous quantity of pulverized building materials and combustion products into the local environment. Particulate matter (PM) from crushed WTC building materials is primarily non-respirable (>96% larger than 10 microm mass median aerodynamic diameter [MMAD]) and composed of fibrous and nonfibrous components such as gypsum, calcite, silica, glass fibers, cellulose, and asbestos. Respirable fine WTC PM (PM(2.5)) may include finely crushed building materials as well as combustion products such as dioxins and polycyclic aromatic hydrocarbons (PAHs). Rescue workers at the WTC site had exposure-related increases in the incidences of nasal congestion, bronchial hyperreactivity to aerosolized methacholine, gastroesophageal reflux disease, and persistent cough. Toxicological studies in mice indicate that WTC PM(2.5) causes airflow obstruction above a critical dose. The review of physical characteristics and health effects of major pollutants derived from the collapse of the WTC towers has assisted in risk assessment efforts related to the collapse of large buildings.

摘要

大型建筑倒塌时,空气中的污染物可能会升至极高水平。对纽约世界贸易中心(WTC)双塔的恐怖袭击导致大量粉碎的建筑材料和燃烧产物释放到当地环境中。世贸中心建筑材料粉碎产生的颗粒物(PM)主要是不可吸入的(>96%大于10微米质量中位空气动力学直径[MMAD]),由纤维和非纤维成分组成,如石膏、方解石、二氧化硅、玻璃纤维、纤维素和石棉。可吸入的世贸中心细颗粒物(PM(2.5))可能包括细碎的建筑材料以及二恶英和多环芳烃(PAHs)等燃烧产物。世贸中心现场的救援人员出现了与接触相关的鼻塞、对雾化乙酰甲胆碱的支气管高反应性、胃食管反流病和持续性咳嗽发病率增加的情况。对小鼠的毒理学研究表明,世贸中心PM(2.5)在超过临界剂量时会导致气流阻塞。对世贸中心双塔倒塌产生的主要污染物的物理特性和健康影响的审查有助于与大型建筑倒塌相关的风险评估工作。

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