首页> 外文学位 >The determination of ultra trace levels of mercury in environmental samples in the northeastern United States: Inferring the past, present, and future of atmospheric mercury deposition (New York, New Hampshire, Vermont).
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The determination of ultra trace levels of mercury in environmental samples in the northeastern United States: Inferring the past, present, and future of atmospheric mercury deposition (New York, New Hampshire, Vermont).

机译:美国东北部环境样品中超痕量汞的测定:推断大气汞沉积的过去,现在和未来(纽约,新罕布什尔州,佛蒙特州)。

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The interest in mercury (Hg) contamination lies primarily in the fact that fish containing high levels of Hg are a part of the human diet. However, the reactions and pathways of Hg before it is assimilated into fish tissue are complex, and in some cases still not well understood. Although Hg is naturally occurring, the concentrations that are measured today, from historical records such as sediment cores and ice cores, are higher than those in preindustrial times. This leads to the conclusion that anthropogenic activities have caused these increases, even in remote areas.; In this study the concentrations of total mercury (HgT) were measured in sediment cores from eight lakes in the Adirondack region of New York. Using the results, historical profiles were created for each lake showing the change in flux of HgT to the sediments over the past 200 years. An increase of 3.5 times above preindustrial values was found, but there has been an evident decline in recent years. The watershed of the lakes was important in the accumulation of Hg in lake sediments.; Another portion of this study involved the analysis of Hg concentrations in water and sediment from 94 lakes in Vermont and New Hampshire. Relationships were developed with physical and chemical data from the lakes in order to elucidate some of the factors that influence the Hg concentrations in lakes in this region. The Hg concentrations were found to be most strongly related to the mean depth, residence time, and pH, and the concentrations of dissolved organic carbon, chloride, and dissolved oxygen of the lakes. The biggest influence of the watershed land use on Hg concentrations was its affect on the chemical characteristics of the lake.; Atmospheric emissions of Hg will be coming under more strict regulations in the forthcoming years. In order to implement regulations with the maximum effectiveness and still be cost effective, a better understanding of Hg behavior is imperative. With an ultimate goal of reducing human health risks from Hg contaminated fish, these results are another step towards shaping the future of atmospheric Hg deposition and its consequences.
机译:对汞(Hg)污染的关注主要在于以下事实:含有高水平汞的鱼是人类饮食的一部分。但是,汞被吸收到鱼类组织中之前的反应和途径很复杂,在某些情况下还没有很好的了解。尽管汞是自然产生的,但今天从历史记录(如沉积物芯和冰芯)中测得的浓度要比工业化前时期的高。由此得出结论,即使在偏远地区,人为活动也造成了这种增加。在这项研究中,测量了纽约阿迪朗达克地区八个湖泊沉积物中的总汞浓度(Hg T )。利用这些结果,为每个湖泊创建了历史剖面图,显示了过去200年中Hg T 到沉积物中通量的变化。发现比工业化前的值增加了3.5倍,但是近年来出现了明显的下降。湖泊的分水岭对于湖泊沉积物中汞的积累非常重要。这项研究的另一部分涉及分析佛蒙特州和新罕布什尔州94个湖泊的水和沉积物中的汞浓度。与湖泊的物理和化学数据建立了联系,以阐明影响该地区湖泊中汞浓度的一些因素。发现汞的浓度与平均深度,停留时间和pH值以及湖泊中溶解的有机碳,氯化物和溶解的氧气的浓度密切相关。流域土地利用对汞浓度的最大影响是对湖泊化学特性的影响。未来几年,汞的大气排放将受到更严格的规定。为了最大限度地执行法规并保持成本效益,必须更好地了解汞行为。最终目的是减少受汞污染的鱼类对人类健康的危害,这些结果是朝着塑造大气汞沉积及其后果的未来迈出的又一步。

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