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Modeling the transport and environmental fate of nitrobenzene in the Songhua River

机译:在松花江硝基苯的运输与环境命运建模

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Based on the combination of river water quality model and kinetic mechanism theory of nitrobenzene (NB) in multimedia aquatic ecosystem, a numerical model of transport and environmental fate of NB in river was developed. The proposed model is capable of simulating the physical transportation, and bio-chemical degradation processes of NB in river such as dispersion, volatilization, photolysis, biodegradation, adsorption and desorption. Photolysis and degradation relations and constants in this model were obtained by laboratory experiments, other parameters are obtained from modeling literature. Model calibration and validation were performed sequentially by comparing computed result with field data of hydrology and NB concentration. The model is applied to predict the transportation and fate of NB after the NB spill leak accident of Songhua River, the results indicated that the numerical model would be effective tools for emergency pollution accident analysis and water management.
机译:基于多媒体水生生态系统河水质量模型和硝基苯(NB)动力学机制理论的组合,开发了河流中NB运输与环境命运的数值模型。该拟议模型能够模拟河流中Nb的物理运输和生物化学降解过程,如分散,挥发,光解,生物降解,吸附和解吸。通过实验室实验获得了该模型中的光解和降解关系和常数,从模型文献中获得了其他参数。通过将计算结果与水文和NB浓度的现场数据进行比较来顺序执行模型校准和验证。该模型用于预测松花江NB泄漏事故后Nb的运输和命运,结果表明,数值模型将是应急污染事故分析和水管理的有效工具。

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