Collaborative Research: Mercury in the Atmosphere Over the Eastern United States
Collaborative Research: Mercury in the Atmosphere Over the Eastern United States
批准号:
1216743
负责人:
Christopher Cantrell
金额:
$44.58万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-10-01 至 2016-09-30
中文摘要
该项目包括第一次以北美上空汞为重点的大规模空中实验。该项目有两个主要目标:1)限制美国东部主要来源地区的汞排放,2)量化对流层低层中汞的分布和化学转化。为了实现这些目标,NSF/国家大气研究中心的C-130飞机将配备一套最先进的仪器,用于测量气态元素汞(GEM)、气态氧化汞(GOM)、颗粒结合汞(pHg)和一套用于空气质量表征的其他化合物。飞行计划的目的是研究俄亥俄州河谷的工业汞源、北美汞向大西洋的外流以及对流降水对美国东南部汞表面湿沉积的影响。C-130观测数据将在使命完成后与几种化学输运和拉格朗日模型进行综合和分析。这些模型将用于检查观测与排放清单之间的一致性,使地面观测与飞机观测能够在一个统一的框架中结合起来,限制源-受体关系,并检验关于汞的化学变化和全球循环的不同假设,人类接触汞是一个重大的健康风险,也是一个具有国家和全球意义的问题。项目结果将减少源-受体关系的不确定性,以及美国东部大气汞清单中国内、国外和自然来源的相对贡献。该研究将涉及来自美国几个不同机构的研究生和本科生,从而使这些学生接触到具有重大国家意义的高水平科学问题。除了来自美国的核心科学家小组外,来自加拿大、意大利、德国和俄罗斯的汞科学家也将在这项工作中进行合作,从而加强在全球环境问题上的国际科学合作。
英文摘要
This project comprises the first large-scale airborne experiment focused on mercury over North America. The project has two primary objectives: 1) Constrain emissions of mercury from major source regions in the eastern United States, 2) Quantify the distribution and chemical transformations of mercury in the lower troposphere. To address these goals the NSF/National Center for Atmsopheric Research C-130 aircraft will be equipped with a suite of state-of-the-art instrumentation to measure gaseous elemental mercury (GEM), gaseous oxidized mercury (GOM), particle-bound Hg (pHg) and a suite of other compounds for air mass characterization. Flight plans will be designed to study industrial mercury sources over the Ohio River Valley, outflow of North American mercury to the Atlantic, and the impact of convective precipitation on surface wet deposition of mercury over the Southeast U.S. Operational planning will utilize regional and global forecast models to optimize the use of flight time. The C-130 observations will be integrated and analyzed after the mission with several chemical transport and Lagrangian models. These models will be used to examine the consistency between observations and emission inventories, allow the integration of ground-based observations with aircraft observations in a unified framework, constrain source-receptor relationships, and test different hypotheses about the chemical transformations and global cycling of mercury.Human exposure to mercury is a significant health risk and a problem of national and global significance. Project results will reduce the uncertainties concerning source-receptor relationships and the relative contributions of domestic, foreign and natural sources to the inventory of atmospheric mercury over the eastern U.S. The research will involve a number of graduate and undergraduate students from several different U.S. institutions and thus will expose these students to working on high-level scientific problems of great national significance. In addition to a core group of scientists from the U.S., mercury scientists from Canada, Italy, Germany and Russia will also collaborate in the work, thus strengthening international scientific cooperation on global environmental problems.
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