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布鲁克林交通实时环境污染物渗透与环境扩散(B-TRAPPED)实地研究方法

The Brooklyn traffic real-time ambient pollutant penetration and environmental dispersion (B-TRAPPED) field study methodology.

作者信息

Richmond-Bryant Jennifer, Hahn Intaek, Fortune Christopher R, Rodes Charles E, Portzer Jeffrey W, Lee Sangdon, Wiener Russell W, Smith Luther A, Wheeler Michael, Seagraves Jeremy, Stein Mark, Eisner Alfred D, Brixey Laurie A, Drake-Richman Zora E, Brouwer Lydia H, Ellenson William D, Baldauf Richard

机构信息

National Center for Environmental Assessment, U.S. Environmental Protection Agency, 109 T. W. Alexander Drive, MC B243-01, Research Triangle Park, NC 27711, USA.

出版信息

J Environ Monit. 2009 Dec;11(12):2122-35. doi: 10.1039/b907126c. Epub 2009 Nov 6.

Abstract

The Brooklyn Traffic Real-Time Ambient Pollutant Penetration and Environmental Dispersion (B-TRAPPED) field study examined indoor and outdoor exposure to traffic-generated air pollution by studying the individual processes of generation of traffic emissions, transport and dispersion of air contaminants along a roadway, and infiltration of the contaminants into a residence. Real-time instrumentation was used to obtain highly resolved time-series concentration profiles for a number of air pollutants. The B-TRAPPED field study was conducted in the residential Sunset Park neighborhood of Brooklyn, NY, USA, in May 2005. The neighborhood contained the Gowanus Expressway (Interstate 278), a major arterial road (4(th) Avenue), and residential side streets running perpendicular to the Gowanus Expressway and 4(th) Avenue. Synchronized measurements were obtained inside a test house, just outside the test house façade, and along the urban residential street canyon on which the house was located. A trailer containing Federal Reference Method (FRM) and real-time monitors was located next to the Gowanus Expressway to assess the source. Ultrafine particulate matter (PM), PM(2.5), nitrogen oxides (NO(x)), sulfur dioxide (SO(2)), carbon monoxide (CO), carbon dioxide (CO(2)), temperature, relative humidity, and wind speed and direction were monitored. Different sampling schemes were devised to focus on dispersion along the street canyon or infiltration into the test house. Results were obtained for ultrafine PM, PM(2.5), criteria gases, and wind conditions from sampling schemes focused on street canyon dispersion and infiltration. For comparison, the ultrafine PM and PM(2.5) results were compared with an existing data set from the Los Angeles area, and the criteria gas data were compared with measurements from a Vancouver epidemiologic study. Measured ultrafine PM and PM(2.5) concentration levels along the residential urban street canyon and at the test house façade in Sunset Park were demonstrated to be comparable to traffic levels at an arterial road and slightly higher than those in a residential area of Los Angeles. Indoor ultrafine PM levels were roughly 3-10 times lower than outdoor levels, depending on the monitor location. CO, NO(2), and SO(2) levels were shown to be similar to values that produced increased risk of chronic obstructive pulmonary disease hospitalizations in the Vancouver studies.

摘要

布鲁克林交通实时环境污染物渗透与环境扩散(B - TRAPPED)实地研究,通过研究交通排放的产生、空气污染物沿道路的传输与扩散以及污染物渗入住宅的各个过程,来考察室内和室外交通产生的空气污染暴露情况。使用实时仪器获取多种空气污染物的高分辨率时间序列浓度分布。B - TRAPPED实地研究于2005年5月在美国纽约布鲁克林的住宅日落公园社区进行。该社区包含戈瓦纳斯高速公路(278号州际公路)、一条主要干道(第四大道)以及与戈瓦纳斯高速公路和第四大道垂直的住宅侧街。在一个测试房屋内、测试房屋外立面正外部以及房屋所在的城市住宅街道峡谷沿线进行了同步测量。一辆装有联邦参考方法(FRM)和实时监测器的拖车位于戈瓦纳斯高速公路旁以评估污染源。监测了超细颗粒物(PM)、PM₂.₅、氮氧化物(NOₓ)、二氧化硫(SO₂)、一氧化碳(CO)、二氧化碳(CO₂)、温度、相对湿度以及风速和风向。设计了不同的采样方案,以关注沿街道峡谷的扩散或渗入测试房屋的情况。从关注街道峡谷扩散和渗入的采样方案中获得了超细PM、PM₂.₅、标准气体和气象条件的结果。为作比较,将超细PM和PM₂.₅的结果与洛杉矶地区的现有数据集进行了比较,标准气体数据与温哥华一项流行病学研究的测量结果进行了比较。在日落公园的住宅城市街道峡谷沿线以及测试房屋外立面测得的超细PM和PM₂.₅浓度水平,被证明与一条干道的交通水平相当,且略高于洛杉矶一个住宅区的水平。室内超细PM水平比室外水平低大约3至10倍,具体取决于监测器位置。一氧化碳、二氧化氮和二氧化硫水平显示与温哥华研究中导致慢性阻塞性肺疾病住院风险增加的数值相似。

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