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Speciation of aluminum and zinc in three streams of a forested catchment of the boreal zone: temporal variations assessed through in situ monitoring and geochemical modeling.

机译:北方地区森林集水区的三股水流中铝和锌的形态:通过原位监测和地球化学模型评估了时间变化。

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摘要

This study presents a detailed assessment of the chemical speciation of aluminum and zinc in three streams of a small, acid-sensitive forested catchment on the southern edge of the Precambrian Shield. Speciation analysis was achieved using an in-situ analytical technique known as Diffusive Gradient in Thin film (DGT) which measures labile metals, and a predictive computer algorithm (WHAM VI) which calculates metal species concentrations. Three types of DGT with different metal scavenging capabilities were used and a total of 11 deployments performed across four seasons. WHAM VI predictions showed that the organic fraction of aluminum was the main contributor to the dissolved concentrations in the main inflow stream (PC1) (~ 80 %) and the lake's outflow (PCO) (~ 75%); in the upland stream (PC1-08) the inorganic fraction contributed ~ 75%. For zinc the free ion was the single most important contributor to the dissolved concentration (< 90%) in all three streams. A comparative study of the DGT and WHAM methods showed an agreement between their inorganic concentrations during the spring season. Both methods indicate the greatest environmental impact for Al takes place during snow melt period in PCO and PC1-08 and in the summer for PC1. The greatest environmental impact for Zn predicted with WHAM VI, occurs during the spring in all three streams.
机译:这项研究对前寒武纪盾构南缘的一个小型酸敏感森林集水区的三股水流中的铝和锌的化学形态进行了详细评估。形态分析是使用一种称为“薄膜扩散梯度”(DGT)的原位分析技术(用于测量不稳定金属)和一种用于计算金属物种浓度的预测计算机算法(“ WHAM VI”)实现的。使用了三种具有不同金属清除能力的DGT,并且在四个季节中总共进行了11次部署。 WHAM VI的预测表明,铝的有机成分是主要流入流(PC1)(〜80%)和湖泊流出(PCO)(〜75%)中溶解浓度的主要贡献者。在山地小溪(PC1-08)中,无机部分贡献了〜75%。对于锌,游离离子是所有三个流中溶解浓度(<90%)的唯一最重要的贡献者。 DGT和WHAM方法的比较研究表明,春季期间它们的无机浓度之间是一致的。两种方法都表明,在PCO和PC1-08的融雪期以及在PC1的夏季,铝对环境的影响最大。用WHAM VI预测的对锌的最大环境影响发生在春季的所有三个流中。

著录项

  • 作者

    Kayembe, Aime.;

  • 作者单位

    Trent University (Canada).;

  • 授予单位 Trent University (Canada).;
  • 学科 Environmental Sciences.;Chemistry Analytical.
  • 学位 M.S.
  • 年度 2014
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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