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The prediction of particle size distribution for the effluent polydisperse particle in staining-dominate deep bed filtration process

机译:染色沉淀深床过滤过程中流出物多分散颗粒粒度分布的预测

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A power law relation between the filtration coefficients of straining and flux through small pores based on percolation theory has been reported. It was a monodisperse particle filtration theory, while the actual colloidal suspension is polydisperse particles. In this study, a formula of particle size distribution for the effluent polydisperse particle in staining-dominate deep bed filtration (DBF) process is proposed based on preliminary results of the monodisperse filtration theory. In order to validate this formula, a numerical staining-dominate DBF model is established to obtain particle size distribution for the effluent polydisperse particle, using the parameters of experimental data set to configure the simulation conditions. The numerical simulation is consistent with the predicted results calculated from the formula. It's indicated that the formula applied for the prediction of particle size distribution for the effluent polydisperse particle in staining-dominate DBF process is relatively accurate and effective.
机译:据报道,通过基于渗滤理论的小孔通过小孔的滤波和助焊剂之间的电力律关系。它是单分散颗粒过滤理论,而实际的胶体悬浮液是多分散颗粒。在该研究中,基于单分散过滤理论的初步结果,提出了污染沉淀深床过滤(DBF)工艺中的污水多分散颗粒的粒度分布的公式。为了验证该公式,建立了一个数值染色支配DBF模型,以使用实验数据集的参数来获得流出的多分散粒子的粒度分布来配置模拟条件。数值模拟与从公式计算的预测结果一致。结果表明,施加用于预测染色DBF过程中流出物多分散颗粒的粒度分布的公式相对准确和有效。

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