4.5 Article

Combining continuous near-road monitoring and inverse modeling to isolate the effect of highway expansion on a school in Las Vegas

期刊

ATMOSPHERIC POLLUTION RESEARCH
卷 3, 期 1, 页码 105-111

出版社

TURKISH NATL COMMITTEE AIR POLLUTION RES & CONTROL-TUNCAP
DOI: 10.5094/APR.2012.010

关键词

Near-road; Sustained Wind Incidence Method; Sector apportionment; Inverse model; Environmental forensics

资金

  1. United States Environmental Protection Agency through its Office of Research and Development
  2. Nevada Department of Transportation (NDOT)

向作者/读者索取更多资源

The impact of a highway expansion on a school adjacent to the highway is investigated with a novel method called the Sustained Wind Incidence Method (SWIM). SWIM falls under the broad group of environmental forensics methods where measured concentration data are used to identify possible contributors such as a point, line or a sectional source. SWIM helps to identify potential sources by highlighting spatial domains associated with the markers unique to potential contributors. In this study, SWIM is used to identify sources of traffic related emissions. The marker used to measure the impact of the traffic due to expansion is black carbon (BC), a key traffic related emission mostly associated with large vehicles (>12 m in length), collected both before and after the expanded lanes were open for use. Using this method, multiple source domains may be simultaneously identified. For this study, the data collection site was situated at the school about 20 meters from the sound wall (7 meters high) separating the school and the highway. SWIM results show that the road expansions may have impacted the traffic patterns of the nearby non-highway feeder road and on-ramp (adjacent to the sound wall) traffic to the highway. This sector showed a surprisingly larger change than the highway in the observed increase in their relative contribution to the receptor site. Some domains (apportioned sector) show a dramatic increase ranging roughly from 10% to 50% in relative contributions. Using the output from SWIM and knowledge of local contributors, a local source landscape is painted. (C) Author(s) 2012. This work is distributed under the Creative Commons Attribution 3.0 License.

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