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Dynamic coupled metal transport-speciation model: application to assess a zinc-contaminated lake.

机译:动态耦合金属迁移形态模型:用于评估受锌污染的湖泊。

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A coupled metal transport and speciation/complexation model (TRANSPEC) has been developed to estimate the speciation and fate of multiple interconverting species in surface aquatic systems. Dynamic-TRANSPEC loosely, sequentially couples the speciation/complexation and fate modules that, for the unsteady state formulation, run alternatively at every time step. The speciation module first estimates species abundance using, in this version, MINEQL+ considering time-dependent changes in water and pore-water chemistry. The fate module is based on the quantitative water air sediment interaction (QWASI) model and fugacity/aquivalence formulation, with the option of using a pseudo-steady state solution to account for past discharges. Similarly to the QWASI model for organic contaminants, TRANSPEC assumes the instantaneous equilibrium distribution of metal species among dissolved, colloidal, and particulate phases based on ambient chemistry parameters that can be collected through conventional field methods. The model is illustrated with its application to Ross Lake (Manitoba, Canada) that has elevated Zn concentrations due to discharges over 70 years from a mining operation. Using measurements from field studies, the model reproduces year-round variations in Zn water concentrations. A 10-year projection for current conditions suggests decreasing Zn remobilization and export from the lake. Decreasing Zn loadings increases sediment-to-water transport but decreases water concentrations, and vice versa. Species distribution is affected by pH such that a decrease in pH increases metal export from the lake and vice versa.
机译:已经开发了一种耦合的金属迁移和物种形成/复杂化模型(TRANSPEC)来估计表面水生系统中多种相互转化物种的物种和命运。 Dynamic-TRANSPEC松散地按顺序耦合了形态/复杂度和命运模块,对于不稳定状态的表达,它们在每个时间步均交替运行。在这个版本中,物种形成模块首先使用MINEQL +来估计物种的丰度,考虑到水和孔隙水化学反应随时间的变化。命运模块基于定量的水气沉积物相互作用(QWASI)模型和逸度/含水量公式,并可以选择使用拟​​稳态解决方案来解决过去的排放量。与用于有机污染物的QWASI模型相似,TRANSPEC假定可通过常规现场方法收集的环境化学参数基于溶解,胶体和颗粒相之间金属物种的瞬时平衡分布。该模型在罗斯湖(加拿大曼尼托巴)的应用中得到了说明,该锌由于采矿作业排放了70年以上而使锌浓度升高。使用实地研究的测量结果,该模型再现了全年锌水浓度的变化。对当前状况的十年预测表明,锌的迁移和从湖泊的出口减少。减少锌的负载量会增加沉积物到水的传输,但会降低水的浓度,反之亦然。物种分布受pH值的影响,因此pH值的降低会增加湖泊中金属的出口量,反之亦然。

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