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首页> 外文期刊>Journal of the air & waste management association >Application of Optimally Scaled Target Factor Analysis for Assessing Source Contribution of Ambient PM_(10)
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Application of Optimally Scaled Target Factor Analysis for Assessing Source Contribution of Ambient PM_(10)

机译:最优比例目标因子分析在评估环境PM_(10)源贡献中的应用

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摘要

Speciated coarse particulate matter (PM_(10)) data obtained at three air quality monitoring sites in a highly industrialized area in Spain between 2002 and 2007 were analyzed for assessing source contribution of ambient particulate matter (PM). The source apportionment of PM in this area is an especially difficult task. There are industrial mineral dust emissions that need to be separately quantified from the natural sources of mineral PM. On the other hand, the diversity of industrial processes in the area results in a puzzling industrial emissions scenario. To solve this complex problem, a two-step methodology based on the possibilities of the Multilinear Engine was used. Application of positive matrix factorization to the dataset allowed the identification of nine factors relevant to the study area. This preliminary analysis permitted resolving two mineral factors. As a second step, a target rotation was implemented for transforming the mineral factors into experimentally characterized soil resuspension and industrial clay sources. In addition to improving the physical interpretation of these factors, the target rotation reduced the errors arising from the rotational freedom of the solution and the multicollinearity among sources. In this way, the main primary industrial emissions of PM in the zone were identified by this target factor analysis. A marked decrease was observed between 2002 and 2007 for the contributions of industrial sourcesrncoinciding with the implementation of mitigation measures in their processes. This study supports the utility of source apportionment methodologies for quantitatively evaluating the effectiveness of the abatement programs for air quality improvement.
机译:分析了2002年至2007年期间在西班牙高度工业化地区的三个空气质量监测点获得的特定粗颗粒物(PM_(10))数据,以评估环境颗粒物(PM)的源贡献。在这方面,PM的来源分配是一项特别困难的任务。需要将工业矿物粉尘排放与矿物PM的天然来源分开量化。另一方面,该地区工业过程的多样性导致令人困惑的工业排放情景。为了解决这个复杂的问题,使用了基于多线性引擎可能性的两步方法。将正矩阵因子分解应用于数据集可以识别与研究区域相关的九个因子。初步分析可以解决两个矿物因素。第二步,实施目标轮换,将矿物因子转换为实验表征的土壤重悬浮物和工业黏土源。除了改善对这些因素的物理解释外,目标旋转还减少了由解的旋转自由度和源之间的多重共线性引起的误差。这样,通过该目标因子分析确定了该区域PM的主要主要工业排放。在2002年至2007年间,工业资源的贡献与在其过程中实施缓解措施的贡献显着下降。这项研究支持源分配方法可用于定量评估减排计划对改善空气质量的有效性。

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  • 来源
    《Journal of the air & waste management association》 |2009年第11期|1296-1307|共12页
  • 作者单位

    Institute de Tecnologfa Ceramica-AICE, Castello, Spain;

    Institute de Tecnologfa Ceramica-AICE, Castello, Spain;

    Institute de Tecnologfa Ceramica-AICE, Castello, Spain;

    Institute of Environmental Assessment and Water Research (ID/EA)-CSIC, Barcelona, Spain;

    Institute of Environmental Assessment and Water Research (ID/EA)-CSIC, Barcelona, Spain;

    Institute of Environmental Assessment and Water Research (ID/EA)-CSIC, Barcelona, Spain;

    Department of Chemical and Biomolecular Engineering, Clarkson University, Potsdam, NY;

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  • 正文语种 eng
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