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Development of methodology to correct sampling error associated with FRM PM-10 samplers.

机译:开发纠正与FRM PM-10采样器有关的采样误差的方法。

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摘要

Currently, a lack of accurate emission data exits for particulate matter (PM) in agricultural air quality studies (USDA-AAQTF, 2000). PM samplers, however, tend to over estimate the concentration of most agricultural dusts because of the interaction of the particle size distribution (PSD) and performance characteristics of the sampler (Buser, 2004). This research attempts to find a practical method to characterize and correct this error for the Federal Reference Method (FRM) PM10 sampler. First, a new dust wind tunnel testing facility that satisfies the USEPA's requirement of testing PM 10 samplers was designed, built, and evaluated. Second, the wind tunnel testing protocol using poly-dispersed aerosol as the test dust was proved to be able to provide results consistent with mono-dispersed dusts. Third, this study quantified the variation of over sampling ratios for the various cut point and slopes of FRM PM10 samplers and proposed an averaged over sampling ratio as a correction factor for various ranges of PSD. Finally, a method of using total suspended particle (TSP) samplers as a field reference for determining PM10 concentrations and aerosol PSD was explored computationally.; Overall, this dissertation developed successfully the methodology to correct the sampling error associated with the FRM PM10 sampler: (1) wind tunnel testing facilities and protocol for experimental evaluation of samplers; (2) the variation of the oversampling ratios of FRM PM 10 samplers for computational evaluation of samplers; (3) the evaluation of TSP sampler effectiveness as a potential field reference for field evaluation of samplers.
机译:目前,在农业空气质量研究中缺乏针对颗粒物(PM)的准确排放数据(USDA-AAQTF,2000)。然而,由于颗粒大小分布(PSD)和采样器性能特征的相互作用,PM采样器往往会高估大多数农业粉尘的浓度(Buser,2004)。这项研究试图为联邦参考方法(FRM)PM10采样器找到一种表征和纠正此误差的实用方法。首先,设计,建造和评估了一个新的粉尘风洞测试设施,该设施可以满足USEPA的PM 10采样器测试要求。其次,事实证明使用多分散气溶胶作为测试粉尘的风洞测试方案能够提供与单分散粉尘一致的结果。第三,本研究量化了FRM PM10采样器各个切割点和斜率的过采样率的变化,并提出了平均过采样率作为PSD各种范围的校正因子。最后,通过计算探索了一种使用总悬浮颗粒(TSP)采样器作为现场参考来确定PM10浓度和气溶胶PSD的方法。总体而言,本文成功开发了纠正与FRM PM10采样器有关的采样误差的方法:(1)风洞测试设备和用于采样器实验评估的协议; (2)FRM PM 10采样器过采样率的变化,以进行采样器的计算评估; (3)评估TSP采样器的有效性,作为采样器现场评估的潜在现场参考。

著录项

  • 作者

    Chen, Jing.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Agricultural.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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