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Silicon Carbide-Coated Ceramic Membrane Bioreactor for Sustainable Water Purification

机译:碳化硅涂层陶瓷膜生物反应器可持续水净化

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摘要

In the present study, a submerged ceramic membrane bioreactor was used to effectively treat industrial wastewater. The outcome of membrane coatings on the efficacy of the membrane was investigated using a silicon carbide (SiC) coating. The flux data obtained from the study were fitted into two mathematical models, namely, the standard pore blocking model (SPBM) and the complete pore plugging model (CPPM) in order to determine the fouling mechanism. It was observed that the SPBM fit with a minimum coefficient of regression of 0.95, suggesting that particles retained on the pore walls were smaller than the average size of membrane pores. An increase in dissolved oxygen (DO) of up to 225% was noted. The significant improvement of the water quality in terms of DO, chemical oxygen demand (COD) and turbidity of coated membrane emphasizes the fact that the membrane coating increases the efficacy of water treatment in membrane bioreactors.
机译:在本研究中,采用浸没式陶瓷膜生物反应器有效处理工业废水。使用碳化硅(SiC)涂层研究了膜涂层对膜功效的影响。从研究中获得的通量数据被拟合到两个数学模型中,即标准孔堵塞模型(SPBM)和完整孔堵塞模型(CPPM),以确定结垢机理。观察到SPBM的最小回归系数为0.95,这表明保留在孔壁上的颗粒小于膜孔的平均尺寸。注意到溶解氧(DO)的增加高达225%。就溶解氧,化学需氧量(COD)和被膜的浊度而言,水质的显着改善强调了这样一个事实,即膜被膜提高了膜生物反应器中水处理的效率。

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