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Trace metal speciation predictions in natural aquatic systems: incorporation of dissolved organic matter (DOM) spectroscopic quality

机译:天然水生系统中的痕量金属形态预测:溶解有机物质(DOm)光谱质量的结合

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摘要

To calculate metal speciation in natural waters, modellers must choose the proportion of dissolved organic matter (DOM) that is actively involved in metal complexation, defined here as the percentage of active fulvic acid (FA); to be able to estimate this proportion spectroscopically would be very useful. In the present study, we determine the free Cd2+, Cu2+, Ni2+ and Zn2+ concentrations in eight Canadian Shield lakes and compare these measured concentrations to those predicted by the Windermere Humic Aqueous Model (WHAM VI). For seven of the eight lakes, the measured proportions of Cd2+ and Zn2+ fall within the range of values predicted by WHAM; the measured proportion of Cu2+ falls within this range for only half of the lakes sampled, whereas for Ni,WHAM systematically overestimated the proportion of Ni2+. With the aim of ascribing the differences between measured and modelled metal speciation to variations in DOM quality, the percentage of active FA needed to fit modelled and measured free metal concentrations was compared with the lake-to-lake variation in the spectroscopic quality of the DOM, as determined by absorbance and fluorescence measurements. Relationships between the percentage of active FA and DOM quality were apparent for Cd, Cu, Ni and Zn, suggesting the possibility of estimating the percentage of active FA spectroscopically and then using this information to refine model predictions. The relationships for Ni differed markedly from those observed for the other metals,suggesting that the DOM binding sites active in Cd, Cu and Zn complexation are different from those involved in Ni complexation. To our knowledge, this is the first time that such a distinction has been resolved in natural water samples.
机译:为了计算天然水中的金属形态,建模者必须选择积极参与金属络合的溶解有机物(DOM)的比例,此处定义为活性富里酸(FA)的百分比;能够通过光谱估计该比例将非常有用。在本研究中,我们确定了八个加拿大希尔德湖中的游离Cd2 +,Cu2 +,Ni2 +和Zn2 +浓度,并将这些测得的浓度与温德米尔腐殖酸水模型(WHAM VI)预测的浓度进行比较。对于八个湖泊中的七个,Cd2 +和Zn2 +的测量比例均在WHAM预测的值范围内;对于仅一半的湖泊,测得的Cu2 +比例就落在该范围内,而对于Ni,WHAM系统地高估了Ni2 +的比例。为了将测量和建模的金属形态之间的差异归因于DOM质量变化,将适合建模和测量的游离金属浓度所需的活性FA百分比与DOM光谱质量中的湖湖变化进行了比较,由吸光度和荧光测量确定。对于Cd,Cu,Ni和Zn,活性FA百分比与DOM质量之间的关系是显而易见的,这表明有可能通过光谱估计活性FA百分比,然后使用此信息完善模型预测。 Ni的关系与其他金属的关系明显不同,这表明Cd,Cu和Zn络合中的DOM结合位点与Ni络合中的不同。据我们所知,这是首次在天然水样品中解决了这种区别。

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