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Major Ion and Stable Isotope Geochemistry of the Bow River, Alberta, Canada.

机译:加拿大艾伯塔省弓河的主要离子和稳定同位素地球化学。

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摘要

Natural and anthropogenic impacts on the major ion and isotope geochemistry of the Bow River were evaluated between 2007 and 2008 using integrated hydrometric, chemical and isotopic analyses. Under the influence of mineral dissolution, calcite-gypsum solubility, and wastewater and prairie tributary discharges, the river water evolved from a Ca-Mg-HCO3 type in the Rocky Mountain headwaters towards compositions elevated in Na, SO4, Cl and NO3 with downstream distance. Mass loads of SO4 and NO3 increased with flow distance, and concentrations of SO 4 and NO3 were highest throughout the river during baseflow periods in fall and early spring. Isotope mass balances using two end-member mixing models demonstrated that riverine SO4 is a mixture of 53-63% of mainly evaporite derived sources from the Rocky Mountains, 27- 37% of oxidized S and wastewater SO4 sources from the prairies, and 10% of wastewater derived SO4 from Calgary. Riverine NO3 is mainly derived from nitrification in forest soil and wastewater effluents, and is more impacted by anthropogenic sources than SO4. Wastewater derived NO3 accounted for 84-92% of the NO3 load downstream of Calgary as opposed to ≤50% in the upstream reaches. This study demonstrates that sources of SO4 and NO3 in the Bow River can be effectively differentiated and apportioned via integrated isotopic techniques.
机译:使用综合的水文,化学和同位素分析,在2007年至2008年之间评估了弓河主要离子和同位素地球化学的自然和人为影响。在矿物溶解,方解石-石膏溶解度以及废水和草原支流的影响下,河水从落基山源水中的Ca-Mg-HCO3型向下游距离的Na,SO4,Cl和NO3升高的组成演变。 SO4和NO3的质量负荷随流动距离的增加而增加,在秋季和初春的基流时期,整个河流中SO 4和NO3的浓度最高。使用两个末端成员混合模型的同位素质量平衡表明,河流SO4混合了53-63%的主要来自落基山脉的蒸发岩来源,27-37%的氧化S和大草原的SO4来源,以及10%来自卡尔加里的SO4废水。河流NO3主要来自森林土壤和废水中的硝化作用,并且比SO4受人为来源的影响更大。源自废水的NO3占卡尔加里下游NO3负荷的84-92%,而上游下游≤50%。这项研究表明,可以通过综合同位素技术有效地区分和分配弓河中的SO4和NO3来源。

著录项

  • 作者

    Chao, Yi-Ju June.;

  • 作者单位

    University of Calgary (Canada).;

  • 授予单位 University of Calgary (Canada).;
  • 学科 Hydrology.;Geochemistry.
  • 学位 M.Sc.
  • 年度 2011
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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