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MULTIPHASE DISTRIBUTION OF COHESIVE SEDIMENTS AND HEAVY METALS IN ESTUARINE SYSTEMS

机译:泥质系统中粘性沉积物和重金属的多相分布

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Characterization of the types and concentrations of heavy metals in their various phases is needed to assess potential adverse effects on the aquatic environment and its ecosystems, and thereby to assure cost-effective mitigation and waste-allocation strategies. A two-dimensional vertically averaged finite-element model was extended to predict the spatial and temporal distribution of cohesive sediments and associated toxic heavy metals as a result of a pollutant input into an estuarine system. Constitutive relationships for cohesive sediment deposition and erosion, heavy metal adsorption and desorption, and the governing hydromechanical transport mechanisms were incorporated in an existing sediment transport model. Formulation and validation of a new relationship for deposition was based on data derived from experiments carried out by previous investigators. The fate and transport of cohesive sediments and associated nickel was simulated for south San Francisco Bay. The comparison of model performance against field observations indicated that the model is capable of representing important phenomena governing the fate of cohesive sediments and associated nickel. [References: 19]
机译:需要对不同阶段的重金属类型和浓度进行表征,以评估对水生环境及其生态系统的潜在不利影响,从而确保具有成本效益的减缓和废物分配策略。扩展了二维垂直平均有限元模型,以预测由于污染物进入河口系统而导致的粘性沉积物和相关有毒重金属的时空分布。在现有的泥沙输送模型中,结合了粘性泥沙的沉积和侵蚀,重金属的吸附和解吸的本构关系以及主导的水力输送机制。新的沉积关系的公式化和验证是基于先前研究人员进行的实验得出的数据。模拟了南旧金山湾的粘性沉积物和相关镍的结局和运移。模型性能与现场观测结果的比较表明,该模型能够代表控制粘性沉积物和相关镍命运的重要现象。 [参考:19]

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