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Development and Application of a Flow-Through Sampler for Semi-Volatile Organic Compounds in Air.

机译:空气中半挥发性有机化合物的流通式进样器的开发和应用。

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摘要

The investigation of the atmospheric fate and transport of semi-volatile organic compounds (SOCs) often requires the sampling of large volumes of air (>100 m3) in a relatively short period of time. Conventionally high-volume pumps are not suitable for remote areas without access to reliable network power. We have developed a flow through sampler for such situations. It consists of a horizontally-oriented flow-tube, that can collect gaseous and particle-bound SOCs from large volumes of air by turning into the wind and having the wind blow through a porous sampling medium such as polyurethane foam. Through both indoor and outdoor experiments, we quantified its air sampling rate (through battery operated anemometers inside and outside of the flow tube), its sampling efficiency (by theoretical plate number analysis of the break-though curves for PCBs, PAHs, OCPs and PBDEs), and its accuracy (by comparison of concentrations, time trends, temperature dependences and isomer ratios with those obtained by conventional high-volume sampling) under conditions of constant and variable meteorological conditions (wind speed, temperature). The flow-through sampler was deployed to monitor SOC concentrations at a remote Chinese research station located close to Nam Co Lake, Tibet. During the campaign, fifteen 1 month-long samples were taken, corresponding to sample volumes between 5,000 and 20,000 m3. Despite those large sample volumes, only HCB and HCHs experienced break-through, but application of frontal chromatograph theory allows the estimation of breakthrough-corrected air concentrations even for those relatively volatile SOCs. The pesticide levels at Nam Co are generally very low. Most pesticides had higher levels during summer, resulting in a strong temperature dependence. This is correlated with air mass origin across the Himalayas in the Gangetic plains of India and Bangladesh. The flow through sampler constitutes a feasible method for reliably and quantitatively collecting SOCs from large air volumes.
机译:对大气命运和半挥发性有机化合物(SOC)的运输的研究通常需要在相对较短的时间内对大量空气(> 100 m3)进行采样。传统上,大流量泵不适用于无法获得可靠网络电源的偏远地区。我们针对这种情况开发了一种通过采样器的流程。它由一个水平方向的流管组成,该流管可以变成风并使风吹过诸如聚氨酯泡沫的多孔采样介质,从而从大量空气中收集气态和颗粒结合的SOC。通过室内和室外实验,我们量化了其空气采样率(通过流量管内外的电池式风速计),采样效率(通过对PCB,PAH,OCP和PBDE的穿透强度曲线的理论塔板数分析) )及其精度(通过在恒定和可变的气象条件(风速,温度)的条件下比较浓度,时间趋势,温度依赖性和同分异构体比率与常规大容量采样获得的比率)。在靠近西藏纳木错湖的一个偏远的中国研究站,使用了流通式采样器来监测SOC浓度。在运动期间,抽取了15个1个月长的样本,对应于5,000到20,000 m3之间的样本量。尽管样品量很大,但只有六氯代苯和六氯环己烷会遇到突破,但是,即使对于那些相对挥发性的SOC,正面色谱理论的应用也可以估算出经过突破校正的空气浓度。 Nam Co的农药水平通常非常低。夏季,大多数农药含量较高,因此对温度的依赖性强。这与印度和孟加拉国恒河平原喜马拉雅山脉的空气质量成因有关。通过采样器的流量构成了一种可靠的方法,可以从大量空气中可靠地定量收集SOC。

著录项

  • 作者

    Xiao, Hang.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Chemical.;Environmental Sciences.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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