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Atmospheric Metal Pollutants-Archives,Methods,and History

机译:大气金属污染物-档案,方法和历史

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Pollution of the atmosphere with cadmium (Cd),mercury (Hg),and lead (Pb) is a consequence of human activities.Natural archives are necessary to reconstruct the long-term history of metal deposition because accurate measurement of atmospheric deposition is a recent accomplishment.Reconstructions require: (1) accurate determination of concentrations of elements and isotopes,(2) accurate chronology of archives,and (3) archives that faithfully record atmosphere deposition.The most useful long-term archives are accumulations of ice and snow,peat,and lake sediment.Quantification of Cd deposition is uncommon because of its low concentration and substantial chemical mobility.Nonetheless,trends in peat and lake sediment are similar to those of Hg and Pb since ca.1800 A.D.Both Hg and Pb are relatively chemically immobile and thus the peat and lake archives are believed to record historic trends of atmospheric deposition.Isotopic and concentration studies of Pb indicate a history of northern hemisphere atmospheric pollution extending back prior to 0 A.D.Although measurements of Hg concentration are now routine,isotopic measurements are in their infancy.Some Hg pollution sources have unique isotopic ratios,thereby contributing unique signals to the total Hg.Maximum accumulation rates of Hg and Pb occur up to 10 years later than for Cd (1970s versus 1960s in eastern North America,perhaps slightly later in Europe).By 2004,deposition of Cd,Hg,and Pb had declined from peak values in eastern North America more than 75,75,and 90%,respectively.
机译:镉(Cd),汞(Hg)和铅(Pb)对大气的污染是人类活动的结果。自然的档案对于重建金属沉积的长期历史是必不可少的,因为对大气沉积的精确测量是近来的事重建需要:(1)准确确定元素和同位素的浓度,(2)准确的档案年代,和(3)忠实记录大气沉积的档案。最有用的长期档案是冰和雪的积累,由于Cd的浓度低且化学迁移率高,因此对Cd沉积的定量分析并不常见。尽管如此,泥炭和湖泊沉积物中的趋势与Hg和Pb相似,因为大约1800 ADBoth Hg和Pb在化学上相对固定的泥炭和湖泊档案记录了大气沉积的历史趋势。铅的同位素和浓度研究表明了北半干旱的历史。球形大气污染可追溯到0 AD之前尽管现在已开始常规测量汞浓度,但同位素测量仍处于起步阶段。某些汞污染源具有独特的同位素比,因此对总汞具有独特的信号。最大的Hg和Pb累积速率发生时间比镉晚10年(北美东部是1970年代与1960年代,欧洲可能稍晚一些)。到2004年,镉,汞和铅的沉积量已从北美东部的峰值下降了75,75以上。 ,分别为90%。

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