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Influences upon the lead isotopic composition of organic and mineral horizons in soil profiles from the National Soil Inventory of Scotland (2007-09)

机译:苏格兰国家土壤清单对土壤剖面中有机层和矿物层的铅同位素组成的影响(2007-09)

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摘要

Some 644 individual soil horizons from 169 sites in Scotland were analyzed for Pb concentration and isotopic com-positioa There were three scenarios: (ⅰ) 36 sites where both top and bottom (i.e. lowest sampled) soil horizons were classified as organic in nature, (ⅱ) 67 with an organic top but mineral bottom soil horizoa and (ⅲ) 66 where both top and bottom soil horizons were mineral. Lead concentrations were greater in the top horizon relative to the bottom horizon in all but a few cases. The top horizon ~(206)Pb/~(207)Pb ratio was lesser (outside analytical error) than the corresponding bottom horizon ~(206)Pb/~(207)Pb ratio at (ⅰ) 64%, (ⅱ) 94% and (ⅲ) 73% of sites, and greater at only (ⅰ) 8%, (ⅱ) 3% and (ⅲ) 8% of sites. A plot of ~(208)Pb/~(207)Pb vs. ~(208)Pb/~(206)Pb ratios showed that the Pb in organic top (i, ii) and bottom (ⅰ) horizons was consistent with atmospherically deposited Pb of anthropogenic origin. The ~(206)Pb/~(207)Pb ratio of the organiC top horizon in (ⅱ) was unrelated to the ~(206)Pb/~(207)Pb ratio of the mineral bottom horizon as demonstrated by the geographical variation in the negative shift in the ratio, a result of differences in the mineral horizon values arising from the greater influence of radiogenic Pb in the north. In (ⅲ), the lesser values of the ~(206)Pb/~(207)Pb ratio for the mineral top horizon relative to the mineral bottom horizon were consistent with the presence of anthropogenic Pb, in addition to indigenous Pb, in the former. Mean anthropogenic Pb inventories of 1.5 and 4.5 g m~(-2) were obtained for the northern and southern halves of Scotland, respectively, consistent with long-range atmospheric transport of anthropogenic Pb (mean ~(206)Pb/~(207)Pb ratio -1.16). For cultivated agricultural soils (Ap), this corresponded to about half of the total Pb inventory in the top 30 cm of the soil column.
机译:分析了苏格兰169个站点的大约644个单独的土壤层中的Pb浓度和同位素组成,共有以下三种情况:(ⅰ)36个站点的顶部和底部(即最低采样)土壤层均被归类为自然有机土壤,( ⅲ)67处有有机的顶部但有矿物的底部土壤horizo​​a,(ⅲ)66处的顶部和底部土壤层均为矿物。除少数情况外,其他所有情况下,顶视线中的铅浓度均高于底视线。在(ⅰ)64%,(ⅱ)94时,顶视界〜(206)Pb /〜(207)Pb比(外部分析误差)小于对应的底视界〜(206)Pb /〜(207)Pb比%和(ⅲ)73%的网站,仅在(ⅰ)8%,(ⅱ)3%和(ⅲ)8%的网站上更高。 〜(208)Pb /〜(207)Pb与〜(208)Pb /〜(206)Pb比的图表明,有机顶(i,ii)和底(ⅰ)层中的Pb与大气层一致人为来源沉积的Pb。如(in)中的有机顶视界的〜(206)Pb /〜(207)Pb比值与矿物底视界的〜(206)Pb /〜(207)Pb比值无关比率的负向变化是由于北部放射源铅的更大影响而导致的矿物视界值差异的结果。在(ⅲ)中,相对于矿物底部视界而言,矿物顶部视界相对于矿物底部视界的〜(206)Pb /〜(207)Pb比值较小的值与人为存在的Pb和天然Pb的存在相一致。前任的。苏格兰北半部和南半部的人为铅平均库存分别为1.5和4.5 gm〜(-2),这与人为铅的长期大气迁移相一致(平均值〜(206)Pb /〜(207)Pb比-1.16)。对于耕作的农业土壤(Ap),这大约对应于土壤柱顶部30 cm的总Pb存量的一半。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第15期|730-743|共14页
  • 作者单位

    School of GeoSciences, The University of Edinburgh Crew Building, Alexander Crum Brown Road, Edinburgh, EH9 3FF Scotland, UK;

    School of GeoSciences, The University of Edinburgh Crew Building, Alexander Crum Brown Road, Edinburgh, EH9 3FF Scotland, UK;

    School of Chemistry, The University of Edinburgh, Joseph Black Building, David Brewster Road, Edinburgh, EH9 3FJ Scotland, UK;

    James Button Institute, Craigiebuckler, Aberdeen, AB15 8QH Scotland, UK;

    James Button Institute, Craigiebuckler, Aberdeen, AB15 8QH Scotland, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pb; Isotope ratios; Organic soil; Mineral soil; Scotland;

    机译:铅;同位素比;有机土壤;矿质土壤;苏格兰;

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