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Improving and testing geochemical speciation predictions of metal ions in natural waters

机译:改善和测试天然水中金属离子的地球化学形态预测

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The ability of WHAM Ⅶ and NICA-Donnan models to predict free-ion activities of Cu in natural waters was examined from two perspectives, (ⅰ) the presence of EDTA and NTA contaminants, (ⅱ) the need to improve estimates of HA and FA concentrations. Potentio-metric responses of a Cu(Ⅱ) ion-selective electrode were investigated in five assays containing dissolved organic matter (DOM) isolated from a series of polluted (urban) and relatively unpolluted (upland) streams in northern England. The [Cu]/[DOC] ratio in these assays spanned an environmentally realistic range of ~1-500 μmol/g. Reasonably good agreement between measured and predicted Cu~(2+) activities was obtained with both WHAM Ⅶ and NICA-Donnan models, assuming 65% of DOM as fulvic acid and including the measured EDTA and NTA concentrations, but generally the models overestimated the activities by a factor of ~2. In contrast, the models over-predicted the Cu~(2+) activities by up to 2 orders of magnitude at low [Cu]/[DOC] ratios in urban waters if anthropogenic ligands were not included in the model simulations. Three-dimensional fluorescence excitation -emission matrix (EEM) spectroscopy was used to measure the functional properties of the isolated DOM and to estimate the fractions of FA and HA present. Using these fractions in the models gave improvements in predictions compared to the 65% FA assumption, as shown by higher correlations, reduced error and reduced bias. These results highlight various issues with the use of the available speciation models for predicting free ion concentrations in natural waters, such as the use of the Biotic Ligand Model (BLM) for the derivation of environmental standards. It is clearly necessary to measure EDTA and NTA in waters with urban influences, while fluorescence measurements offer the possibility of appreciably improving the accuracy of predictions.
机译:从两个角度检查了WHAMⅦ和NICA-Donnan模型预测天然水中Cu的自由离子活性的能力,(ⅰ)EDTA和NTA污染物的存在,(ⅱ)需要改进HA和FA的估计值浓度。在五种含有溶解有机物(DOM)的测定法中,研究了Cu(Ⅱ)离子选择性电极的电位响应,该测定法是从英格兰北部一系列污染(城市)和相对未污染(山地)的河流中分离出来的。在这些测定中,[Cu] / [DOC]的比值在约1-500μmol/ g的环境现实范围内。在WHAMⅦ和NICA-Donnan模型中,假定DOM中的65%为富里酸,并包括测得的EDTA和NTA浓度,在测得的Cu〜(2+)和预测的Cu〜(2+)活性之间均取得了合理的良好一致性,但通常该模型高估了活性约2倍。相反,如果模型模拟中不包括人为配体,则在城市水中低[Cu] / [DOC]比时,该模型会高估Cu〜(2+)活性达2个数量级。三维荧光激发-发射矩阵(EEM)光谱用于测量分离的DOM的功能特性,并估计存在的FA和HA的比例。与更高的相关性,减少的误差和减少的偏差所示,与65%的FA假设相比,在模型中使用这些分数可以改善预测。这些结果凸显了使用可用的物种模型预测自然水中游离离子浓度的各种问题,例如使用生物配体模型(BLM)推导环境标准。显然有必要在有城市影响的水中测量EDTA和NTA,而荧光测量提供了显着提高预测准确性的可能性。

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