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Using Size Fractionation and Pb Isotopes to Study Pb Transport in the Waters of an Organic-Rich Upland Catchment

机译:使用大小分级法和Pb同位素研究富含有机物的陆地集水区中Pb的迁移

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摘要

Processes controlling Pb release from a small organic-rich upland catchment in northeast Scotland were investigated via measurement of Pb concentrations and ~(206)Pb/~(207)Pb ratios in rainwater,throughflow,surface flow,and receiving streamwaters under storm and baseflow conditions.For this catchment,the output of Pb via streams was only 2.0 +- 1.2 kg year~(-1) (11.4 +- 6.8 g ha~(-1) year~(-1)),much lower than the input of 7.5 +- 2.0 kg year~(-1) (42.6 +- 11.4 g ha~(-1) year~(-1)),and so the catchment is still a sinkfor anthropogenic Pb.Most (68-87%) of the output,however,occurred under storm conditions.Size fractionation revealed that 50-60% was in large particulate form (>25 mum) with a ~206Pb/ ~(207)Pb ratio of approx 1.16,similar to that of the surface soils.Some 30-40% of the storm Pb output was associated with dissolved organic matter in the <0.45 mum fraction and had a lower ~(206)Pb/~9207)Pb ratio of approx 1.14,close to the value obtained for near-surface throughflow.Future extreme weather conditions such as prolonged dry or wet periods will increase transport of Pb to receiving waters.Although particulate forms could then rapidly be removed under low flow conditions,Pb associated with dissolved organic matter will persist longer in aquatic systems and may also be more bioavailable.
机译:通过测量雨水,通水,地表水以及在暴雨和底流下的水流中铅的浓度和〜(206)Pb /〜(207)Pb的比率,研究了苏格兰东北部一个富含有机物的小高地流域控制铅释放的过程。对于该流域,Pb通过流的输出仅为2.0 +-1.2 kg年〜(-1)(11.4 +-6.8 g ha〜(-1)年〜(-1)),远低于输入7.5 +-2.0 kg年〜(-1)(42.6 +-11.4 g ha〜(-1)年〜(-1)),因此该流域仍是人为铅的汇。大多数(68-87%)粒度分级显示50-60%是大颗粒形式(> 25 mum),〜206Pb /〜(207)Pb的比率约为1.16,与地表相似在<0.45的妈妈分数中,约有30-40%的风暴Pb产出与溶解有机物有关,〜(206)Pb /〜9207)Pb比率较低​​,约为1.14,接近于近面通流。未来极端的天气条件(例如延长的干燥或潮湿时间)会增加Pb向接收水的运输。虽然在低流量条件下可以迅速去除颗粒形式,但与溶解有机物有关的Pb在水生系统中的存在时间会更长,并且生物利用度也更高。

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  • 来源
    《Environmental Science & Technology》 |2006年第4期|p.1250-1256|共7页
  • 作者单位

    School of GeoSciences,University of Edinburgh,West Mains Road,Edinburgh EH9 3JJ,Scotland,and The Macaulay Institute,Craigiebuckler,Aberdeen AB15 8QH,Scotland;

    School of GeoSciences,University of Edinburgh,West Mains Road,Edinburgh EH9 3JJ,Scotland,and The Macaulay Institute,Craigiebuckler,Aberdeen AB15 8QH,Scotland;

    School of GeoSciences,University of Edinburgh,West Mains Road,Edinburgh EH9 3JJ,Scotland,and The Macaulay Institute,Craigiebuckler,Aberdeen AB15 8QH,Scotland;

    School of GeoSciences,University of Edinburgh,West Mains Road,Edinburgh EH9 3JJ,Scotland,and The Macaulay Institute,Craigiebuckler,Aberdeen AB15 8QH,Scotland;

    School of GeoSciences,University of Edinburgh,West Mains Road,Edinburgh EH9 3JJ,Scotland,and The Macaulay Institute,Craigiebuckler,Aberdeen AB15 8QH,Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:53

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