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Mathematical model for describing reactions of residual chlorine with organic matter in reclaimed wastewater

机译:描述再生废水中余氯与有机物反应的数学模型

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Among several applications of urban wastewater reuse, use of reclaimed wastewater to sustain stream flows has become attractive in the urban area. Since these rivers are used for recreational purposes and for restoring aquatic eco-system, the adequate control of residual chlorine is essential. Mathematical model for describing reactions between residual chlorine and organic matter in reclaimed wastewater has been developed. The model considers the effect of molecular weight distribution of organic matter on the reaction rate. Lab-scale experiments were performed to estimate reaction rates constants and to examine their temperature dependency. The experiments showed that 1) the smaller organic matter gave the larger reaction rate; 2) temperature effect on reaction rate was described by the Arrhenius formula; 3) decline of free chlorine had more temperature dependency than combined chlorine. The comparison of computed results with data from lab-scale experiments confirmed the validity of the model. We used the one-dimensional dispersion model with proposed reaction model and examined the seasonal variation of residual chlorine profile along the river sustained by reclaimed wastewater in Sapporo. Simulation showed that seasonal variation of nitrification performance in secondary treatment as well as change in temperature caused seasonal variation in residual chlorine profile along the river.
机译:在城市废水回用的几种应用中,使用再生废水来维持水流在城市地区变得有吸引力。由于这些河流用于娱乐目的和恢复水生生态系统,因此对剩余氯的充分控制至关重要。建立了描述再生废水中残余氯与有机物之间反应的数学模型。该模型考虑了有机物分子量分布对反应速率的影响。进行实验室规模的实验以估计反应速率常数并检查其温度依赖性。实验表明:1)有机物越小,反应速率越大; 2)温度对反应速率的影响用阿伦尼乌斯公式描述; 3)游离氯的下降对温度的依赖性比其对氯的依赖性更大。计算结果与实验室规模实验数据的比较证实了该模型的有效性。我们将一维扩散模型与提出的反应模型结合使用,并研究了札幌再生废水沿河残留氯剖面的季节性变化。模拟表明,二级处理中硝化性能的季节性变化以及温度的变化会导致沿河残留氯剖面的季节性变化。

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