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Variation in iron, aluminum and dissolved organic carbon mass transfer coefficients in lakes

机译:湖泊中铁,铝和溶解有机碳传质系数的变化

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Steady-stale mass balance models have been successfully used to predict annual loads and concentrations of numerous substances in lakes. A major limitation of the model is that the value of the mass transfer coefficient, v_X, for some substance, X, is assumed constant and is taken as a mean value of a set of calibration lakes. The range in mean values between lakes for v_X is typically two- to three-fold. Thus, there is some potential for error in model predictions if the true but unknown value for a given lake differs from the mean, calibration value. Moreover, the use of a region-specific value for v_X for all lakes in a region means that when environmental conditions change, the model will have to be re-calibrated requiring many more years of monitoring. In this study, mass balances for two substances, total iron and aluminum, are presented along with simple empirical relationships that predict mass transfer coefficients for iron as a function of dissolved organic carbon (DOC) concentration and aluminum as a function of DOC and pH. The relationships, which are consistent with current understanding of iron and aluminum behavior, account for > 90% of the variation in v_X. Improvements in mass balance model predictions are expected when these coefficients are used in place of constant values.
机译:稳定的质量平衡模型已成功用于预测湖泊中多种物质的年负荷和浓度。该模型的主要局限性是,对于某些物质X,传质系数v_X的值假定为常数,并作为一组校准色淀的平均值。 v_X在色淀之间的平均值范围通常是两倍或三倍。因此,如果给定湖泊的真实但未知值与均值,校准值不同,则模型预测中可能会出现错误。此外,对于一个区域中的所有湖泊使用v_X的区域特定值意味着当环境条件改变时,将必须重新校准该模型,这需要进行更多年的监测。在这项研究中,介绍了两种物质(总铁和铝)的质量平衡以及简单的经验关系,这些关系预测了铁的质量传递系数与溶解有机碳(DOC)浓度的函数关系,而铝与DOC和pH的关系关系。这些关系与当前对铁和铝行为的理解相一致,占v_X变化的> 90%。当使用这些系数代替恒定值时,可以期望改善质量平衡模型的预测。

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