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Factors influencing surface atmosphere exchange of gaseous elemental mercury in western Maryland.

机译:影响马里兰州西部气态元素汞表面大气交换的因素。

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摘要

The purpose of this study was to examine the dynamics of the surface -- atmosphere exchange of gaseous elemental mercury (GEM) in western Maryland. The site studied was the Piney Reservoir Ambient Air Monitoring Station (PRAAMS) in Garrett County. I used several different techniques to quantify the exchange, including a soil pore air sampling system that I developed, dynamic flux chambers, and the modified Bowen ratio (MBR) technique. I found that GEM exchange dynamics vary widely from the small scale ( 1 m²) of the flux chambers to the large scale of the MBR technique. When I scaled the flux chamber measurements up to the annual time scale, I predicted a net GEM emission of 2.0 to 5.3 mug m² yr-1 to the atmosphere from PRAAMS, while with the MBR technique I estimated a GEM deposition of 3.3 mug m² y-1. The differences in these estimates highlight the difficulties with measuring the exchange of a substance that can be both deposited to and emitted from soils. It also shows how uncertain the current estimates of this exchange can be. On the other hand, I was able to quantify soil redox potential as an important driver of GEM fluxes and soil pore total gaseous mercury (TGM) concentrations. This had not been previously reported. I was also able to show the importance of soil organic matter (SOM) and soil pore TGM concentration gradients on the surface -- atmosphere exchange of GEM. This work opens the door for other studies on the dynamics of GEM fluxes in all sites with background concentrations of GEM.
机译:这项研究的目的是研究马里兰州西部的气态元素汞(GEM)的表面-大气交换动力学。研究的地点是加勒特县的松树水库环境空气监测站(PRAAMS)。我使用了几种不同的技术来量化交换,包括我开发的土壤孔隙空气采样系统,动态通量室和改进的Bowen比率(MBR)技术。我发现,GEM的交换动力学变化很大,从小规模(<1m²)的助焊剂室到大规模的MBR技术。当我将通量室的测量规模扩大到年度时间尺度时,我预测PRAAMS向大气排放的GEM净排放量为2.0至5.3杯m²yr-1,而采用MBR技术估算的GEM沉积量为3.3杯m²y-1 -1。这些估算值的差异突出说明了测量可同时沉积到土壤和从土壤排放的物质交换的困难。它还显示了此交换的当前估计可能有多不确定。另一方面,我能够量化土壤氧化还原潜能,这是GEM通量和土壤孔隙中总气态汞(TGM)浓度的重要驱动因素。以前没有报告过。我还能够证明土壤有机质(SOM)和土壤孔隙TGM浓度梯度在表面上的重要性-创业板的大气交换。这项工作为所有其他背景下具有GEM浓度的场所中GEM通量的动力学研究打开了大门。

著录项

  • 作者

    Moore, Christopher Warren.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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