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首页> 外文期刊>Journal of the air & waste management association >Characterization of Spatial Impact of Particles Emitted from a Cement Material Production Facility on Outdoor Particle Deposition in the Surrounding Community
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Characterization of Spatial Impact of Particles Emitted from a Cement Material Production Facility on Outdoor Particle Deposition in the Surrounding Community

机译:水泥材料生产设施排放的颗粒对周围社区室外颗粒沉积的空间影响的表征

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摘要

The objective of this study was to estimate the contribution of a facility that processes steel production slag into raw material for cement production to local outdoor particle deposition in Camden, NJ. A dry deposition sampler that can house four 37-mm quartz fiber filters was developed and used for the collection of atmospheric particle deposits. Two rounds of particle collection (3-4 weeks each) were conducted in 8-11 locations 200-800 m downwind of the facility. Background samples were concurrently collected in a remote area located ~2 km upwind from the facility. In addition, duplicate surface wipe samples were collected side-by-side from each of the 13 locations within the same sampling area during the first deposition sampling period. One composite source material sample was also collected from a pile stored in the facility. Both the bulk of the source material and the <38μm fraction subsample were analyzed to obtain the elemental source profile. The particle deposition flux in the study area was higher (24-83 mg/m~2·day) than at the background sites (13-17 mg/m~2day). The concentration of Ca, a major element in the cement source production material, was found to exponentially decrease with increasing downwind distance from the facility (P < 0.05). The ratio of Ca/Al, an indicator of Ca enrichment due to anthropogenic sources in a given sample, showed a similar trend. These observations suggest a significant contribution of the facility to the local particle deposition. The contribution of the facility to outdoor deposited particle mass was further estimated by three independent models using the measurements obtained from this study. The estimated contributions to particle deposition in the study area were 1.8-7.4% from the regression analysis of the Ca concentration in particle deposition samples against the distance from the facility, 0-11% from the U.S. Environmental Protection Agency (EPA) Chemical Mass Balance (CMB) source-receptor model, and 7.6-13% from the EPA Industrial Source Complex Short Term (ISCST3) dispersion model using the particle-size-adjusted permit-based emissions estimates.
机译:这项研究的目的是评估新泽西州卡姆登市将钢渣加工成水泥生产原料的设施对当地室外颗粒沉积的贡献。开发了可容纳四个37毫米石英纤维过滤器的干沉降采样器,并将其用于收集大气颗粒沉积物。在工厂下风200-800 m的8-11个位置进行了两轮颗粒收集(每次3-4周)。同时在距该设施上风约2 km的偏远地区收集背景样品。此外,在第一个沉积采样期间,从同一采样区内的13个位置中的每一个并排采集了重复的表面擦拭样品。还从存储在设施中的堆中收集了一种复合原料样品。大量的原始材料和<38μm的分数子样品都经过分析以获得元素的原始分布。研究区的颗粒沉积通量(24-83 mg / m〜2·day)高于背景部位的颗粒沉积通量(13-17 mg / m〜2·day)。 Ca的含量随水泥厂顺风距离的增加而呈指数下降(P <0.05),Ca的浓度是水泥原料生产材料中的主要元素。 Ca / Al的比率(在给定样品中由于人为来源引起的Ca富集的指标)显示出相似的趋势。这些观察结果表明该设施对局部颗粒沉积有重大贡献。该设施对室外沉积颗粒质量的贡献通过使用本研究获得的测量值的三个独立模型进一步估算。根据颗粒沉积样品中Ca浓度相对于工厂距离的回归分析,估计对研究区域中颗粒沉积的贡献为1.8-7.4%,美国环境保护总署(EPA)化学物质平衡为0-11% (CMB)的源-受体模型,以及使用基于粒度调整后的许可证的排放估算值,从EPA工业源短期复合物(ISCST3)扩散模型中获得7.6-13%。

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  • 来源
    《Journal of the air & waste management association》 |2011年第10期|p.1015-1025|共11页
  • 作者单位

    Exposure Science Division, Environmental and Occupational Health Sciences Institute, Piscataway, New Jersey, USA;

    Exposure Science Division, Environmental and Occupational Health Sciences Institute, Piscataway, New Jersey, USA;

    Analytical Center, Environmental and Occupational Health Sciences Institute, Piscataway, New Jersey, USA;

    Office of Science, New Jersey Department of Environmental Protection, Trenton, New Jersey, USA;

    Exposure Science Division, Environmental and Occupational Health Sciences Institute, Piscataway, New Jersey, USA;

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