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A new approach to evaluate membrane performance: COD and EC rejection rates

机译:评估膜性能的新方法:COD和EC拒绝率

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Olive mill wastewater (OMW), which contains abundant soluble and particulate matter, negatively influences the receiving environment. Membrane processes have the potential to treat OMW. Electrical conductivity (EC), which is very high in OMW, is one of the key factors of membrane processes. The EC value of the OMW sample used in this study was higher than the common values, and this situation resulted in high osmotic pressure. Several samples with different influent EC values were fed to a reverse osmosis (RO) system. The osmotic pressure values for each influent EC were calculated. The relationship between the osmotic pressure and influent EC values was nonlinear. The permeate flux could not be achieved for some applied pressures and influent EC values because of the high osmotic pressure of the feedwater. Moreover, the terms of the chemical oxygen demand (COD) rejection rate and EC rejection rate were developed and observed and predicted values were compared for these terms and permeate fluxes using linear and nonlinear regressions. It was determined that osmotic pressure is a limiting condition in OMW treatment using RO membranes and that COD and EC rejection rates are useful terms to evaluate membrane performance.
机译:橄榄磨废水(OMW),含有丰富的可溶性和颗粒物质,负面影响接收环境。膜过程具有治疗OMW的潜力。在OMW中非常高的电导率(EC)是膜过程的关键因素之一。本研究中使用的OMW样本的EC值高于常见值,并且这种情况导致高渗透压。将几种具有不同进入的EC值的样品送入反渗透(RO)系统。计算每种进水口EC的渗透压值。渗透压和影响因素EC值之间的关系是非线性的。由于进料水的高渗透压,对于某些施加的压力和影响的EC值,不能达到渗透通量。此外,通过使用线性和非线性回归对化学需氧量(COD)排斥率和EC排斥率和EC排斥率的术语进行了比较和预测值,并使用线性和非线性回归进行预测值。确定渗透压是使用RO膜的OMW处理中的限制条件,并且COD和EC排斥率是评估膜性能的有用术语。

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