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Use of low-cost PM monitors and a multi-wavelength aethalometer to characterize PM_(2.5) in the Yakama Nation reservation

机译:使用低成本PM监视器和多波长聚体仪表在Yakama Nation预订中表征PM_(2.5)

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摘要

Rural lower Yakima Valley, Washington is home to the reservation of the Confederated Tribes and Bands of the Yakama Nation, and is a major agricultural region. Episodic poor air quality impacts this area, reflecting sources of particulate matter with a diameter of less than 2.5 mu m (PM2.5) that include residential wood smoke, agricultural biomass burning and other emissions, truck traffic, backyard burning, and wildfire smoke. University of Washington partnered with the Yakama Nation Environmental Management Program to investigate characteristics of PM2.5 using 9 months of data from a combination of low-cost optical particle counters and a 5-wavelength aethalometer (MA200 Aethlabs) over 4 seasons and an episode of summer wildfire smoke. The greatest percentage of hours sampled with PM2.5 12 mu g/m(3) occurred during the wildfire smoke episode (59%), followed by fall (23%) and then winter (21%). Mean (SD) values of Delta-C (mu g/m(3)), which has been posited as an indicator of wood smoke, and determined as the mass absorbance difference at 375-880 nm, were: summer wildfire smoke 0.34 (0.52), winter 0.27 (0.32), fall 0.10 (0.22), spring 0.05 (0.11), and summer - no wildfire smoke 0.04 (0.14). Mean (95% confidence interval) values of the absorption Angstrom exponent, an indicator of the wavelength dependence of the aerosol, were: winter 1.5 (1.2-1.8), summer - wildfire smoke 1.4 (1.0-1.8), fall 1.3 (1.1-1.4), spring 1.2 (1.1-1.4), and summer - no wildfire smoke 1.2 (1.0-1.3). The trends in Delta-C and absorption Angstr_om exponents are consistent with expectations that a higher value reflects more biomass burning. These results suggest that biomass burning is an important contributor to PM2.5 in the wintertime, and emissions associated with diesel and soot are important contributors in the fall; however, the variety of emissions sources and combustion conditions present in this region may limit the utility of traditional interpretations of aethalometer data. Further research on the interpretation of aethalometer data in regions with complex emissions would contribute to much-needed understanding in communities impacted by air pollution from agricultural as well as residential sources of combustion.
机译:农村下雅基谷,华盛顿是保留雅库纳国家联合部落和乐队的家园,是一个主要的农业区域。巨大的空气质量会影响这一领域,反映了直径小于2.5亩(PM2.5)的颗粒物质来源,包括住宅木烟,农业生物量燃烧等排放,卡车交通,后院燃烧和野火烟雾。华盛顿大学与雅库玛国家环境管理计划合作,以研究来自低成本光学粒子计数器和5波长聚体(MA200 Aethlabs)的9个月的数据,从4个月和一集夏季野火烟。在野火烟雾集(59%)期间发生了与PM2.5>12μg/ m(3)采样的最大百分比。随后是秋季(23%),然后冬季(21%)。 δ-c(mu g / m(3))的平均值(sd)值,其被定位为木烟的指标,并确定为375-880 nm的质量吸光度差异,是:夏季野火烟雾0.34( 0.52),冬季0.27(0.32),下降0.10(0.22),弹簧0.05(0.11),夏季 - 没有野火烟雾0.04(0.14)。平均值(95%置信区间)吸收埃斯克隆指数的值,气溶胶波长依赖性的指标,是:冬季1.5(1.2-1.8),夏季 - 野火烟1.4(1.0-1.8),下降1.3(1.1- 1.4),弹簧1.2(1.1-1.4),夏季 - 没有野火烟1.2(1.0-1.3)。 Delta-C和吸收Angstr_om指令的趋势与预期相一致,即更高的值反映更多的生物质燃烧。这些结果表明,生物质燃烧是冬季冬季PM2.5的重要贡献者,与柴油和烟灰相关的排放是秋季的重要贡献者;然而,该地区中存在的各种排放来源和燃烧条件可能限制传统解释的聚体仪表数据的效用。进一步研究具有复杂排放地区的区域中的聚体仪表数据的解释将有助于在农业空气污染影响的社区以及住宅燃烧污染影响的社区中有贡献。

著录项

  • 来源
    《Atmospheric environment》 |2020年第3期|117292.1-117292.11|共11页
  • 作者单位

    Univ Washington Dept Environm & Occupat Hlth Sci 4225 Roosevelt Way NE STE 301 Seattle WA 98105 USA;

    Univ Washington Dept Environm & Occupat Hlth Sci 4225 Roosevelt Way NE STE 301 Seattle WA 98105 USA;

    Yakama Nat Environm Management Program POB 151 Toppenish WA 98948 USA;

    Yakama Nat Environm Management Program POB 151 Toppenish WA 98948 USA;

    Univ Washington Dept Environm & Occupat Hlth Sci 4225 Roosevelt Way NE STE 301 Seattle WA 98105 USA;

    Univ Washington Dept Environm & Occupat Hlth Sci 4225 Roosevelt Way NE STE 301 Seattle WA 98105 USA|Univ Washington Dept Pediat 4250 Roosevelt Way NE Seattle WA 98105 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass burning; Aethalometer; Low-cost sensor; PM2.5; Rural; Agricultural;

    机译:生物质燃烧;聚体仪;低成本传感器;PM2.5;农村;农业;

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