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Prediction of power consumption and performance in ultrafiltration of simulated latex effluent using non-uniform pore sized membranes

机译:非均匀孔径膜对模拟乳胶废水超滤的能耗和性能的预测

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摘要

Tha aim of the present study was to develop a series of numerical models for an accurate prediction of the power consumption in ultrafiltration of simulated latex effluent. The developed power consumption model incorporated fouling attachment, as well as chemical and physical factors in membrane fouling, in order to ensure accurate prediction and scale-up. This model was applied to heterogeneous membranes with non-uniform pore sizes at a given operating conditions and mem- brane surface charges. Polysulfone flat membrane, with a membrane molecular weight cutoff (MWCO) of 60,000 dalton, at different surface charges was used under a constant flow rate and cross-flow mode. In addition, the developed models were examined using various membranes at a variety of surface charges so as to test the overall reliability and accuracy of these models. The power consumption predicted by the models corresponded to the calculated values from the experimental data for various hydrophilic and hydrophobic membranes with an error margin of 6.0% up to 19.1%.
机译:本研究的目的是开发一系列数值模型,以准确预测模拟乳胶废水超滤过程中的能耗。为了确保准确的预测和扩大规模,已开发的功耗模型将结垢附件以及膜结垢中的化学和物理因素纳入考虑范围。该模型适用于在给定的操作条件和膜表面电荷的情况下孔径不均匀的异质膜。在恒定流速和错流模式下,使用聚砜平膜,膜截留分子量(MWCO)为60,000道尔顿,在不同的表面电荷下使用。另外,使用各种膜在各种表面电荷下检查了开发的模型,以测试这些模型的整体可靠性和准确性。通过模型预测的功耗与各种亲水性和疏水性膜的实验数据的计算值相对应,误差范围为6.0%至19.1%。

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