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Speciation and distribution of atmospheric mercury: Significance of reactive gaseous mercury in the the global mercury cycle.

机译:大气汞的形态和分布:反应性气态汞在全球汞循环中的意义。

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摘要

The importance of reactive gaseous mercury (RGHg) to Hg biogeochemistry has been neglected until recently, mainly due to the lack of proper sampling techniques. However, although low ambient RGHg concentrations are generally assumed, the dry depositional flux of RGHg can still be a significant source of Hg to many environmental systems because of its high dry deposition velocity. Recent advancement in RGHg sampling techniques has improved the situation and enabled researchers to explore the significance of RGHg. In this study, three commonly used RGHg sampling techniques, including the filter pack method, the refluxing mist chamber method, and the KCl-coated denuder method, have been tested in field side-by-side with comparable results being obtained. These results demonstrate that the use of the filter pack method for the rest of the study was appropriate. The speciation and distribution of atmospheric Hg around and over the Chesapeake Bay was studied. Elevated concentrations of total atmospheric Hg (THg), RGHg, and particulate Hg (Hg-P) were detected in downtown Baltimore, as compared to the rural sites. Therefore, Baltimore's urban air is an important source of Hg to the northern Chesapeake Bay, and the estimated dry depositional flux of Hg was the same magnitude as that of the wet flux measured. Even at rural sites, the dry depositional flux was a significant portion of the total depositional flux. It is generally assumed that the anthropogenic emission is the major source of RGHg to the atmosphere. Since both wet and dry depositional processes efficiently remove RGHg, its concentration should be low in marine air if the assumption was valid. However, substantial amounts of RGHg were often detected in marine air over the Atlantic Ocean, and sometimes they reached the level measured in polluted urban air. A laboratory-based oxidation study was conducted at the Chesapeake Biological Laboratory. It was demonstrated that in the presence of light and deliquescent NaCl, gaseous Hg0 was quickly oxidized. The results of this study support the contention that halogen radical-mediated Hg0 oxidation could be an important RGHg source in the marine boundary layer; that Hg may be quickly recycled at the air-ocean interface; and that the dry deposition of RGHg is an important flux of Hg to the open ocean.
机译:直到最近,反应性气态汞(RGHg)对Hg生物地球化学的重要性一直被忽略,主要是由于缺乏适当的采样技术。但是,尽管通常假定环境中RGHg的浓度较低,但由于RGHg的干沉降速度高,其干沉降通量仍可能是许多环境系统中汞的重要来源。 RGHg采样技术的最新进展改善了这种状况,并使研究人员能够探索RGHg的重要性。在这项研究中,已经并排测试了三种常用的RGHg采样技术,包括滤池法,回流雾室法和KCl涂层的剥蚀剂法,并获得了可比的结果。这些结果表明,在其余的研究中使用滤袋法是合适的。研究了切萨皮克湾及其周围地区大气汞的形态和分布。与农村地区相比,巴尔的摩市中心的大气总Hg(THg),RGHg和颗粒Hg(Hg-P)浓度升高。因此,巴尔的摩的城市空气是通往切萨皮克湾北部的汞的重要来源,估计的汞干沉降通量与测得的湿通量相同。即使在农村地区,干燥的沉积通量也占总沉积通量的很大一部分。通常认为,人为排放是向大气排放RGHg的主要来源。由于湿法和干法沉积过程均能有效去除RGHg,因此,如果该假设成立,则其在海洋空气中的浓度应较低。但是,经常在大西洋上空的海洋空气中检测到大量的RGHg,有时甚至达到污染的城市空气中的水平。切萨皮克生物实验室进行了基于实验室的氧化研究。结果表明,在轻度潮解性NaCl存在下,气态Hg 0 迅速被氧化。研究结果支持以下观点:卤素自由基介导的Hg 0 氧化可能是海洋边界层中重要的RGHg来源。汞可在海洋界面迅速回收; RGHg的干燥沉积是Hg向远洋的重要通量。

著录项

  • 作者

    Sheu, Guey-Rong.;

  • 作者单位

    University of Maryland College Park.;

  • 授予单位 University of Maryland College Park.;
  • 学科 Geophysics.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;环境科学基础理论;
  • 关键词

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