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Gene expression programming for process parameter optimization during ultrafiltration of surfactant wastewater using hydrophilic polyethersulfone membrane

机译:采用亲水聚醚砜膜超滤过程参数优化过程参数优化的基因表达规划

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摘要

Surfactants are the emerging contaminant and cause a detrimental effect on the ecosystem. In this study, an attempt is made to removal anionic surfactant Sodium dodecyl sulfate (SDS) containing wastewater using hydrophilic polyvinylpyrollidone (PVP) (5-15 wt%) modified polyethersulfone (PES) ultrafiltration membrane. The influence of operating variables on membrane performance was also sequentially analyzed using tests and three numerical modeling methods such as multiple linear regression (MLR), multiple Ln-equation regression (MLnER), and gene expression programming (GEP). Contact angle value of 10 wt% PVP modified PES membrane decreased up to 23.8°, whereas the neat PES membrane is 70.7°. This study indicates that the required hydrophilic property was improved in the modified membrane. The water flux and porosity also enhanced in PVP modified PES membranes. In performance evaluation, the optimum operating variable condition of trans-membrane pressure (TMP), feed concentration, and the temperature is found to be 3 bar, 100 ppm, and 25 °C, respectively. Among the models, GEP has a good correlation with experimental anionic surfactant SDS filtration data. GEP performs better than other model with respect to statistical parameter and error terms. This study provides an insight into an adaptation of novel numerical modeling methods for the prediction of membrane performance to the treatment of surfactant wastewater.
机译:表面活性剂是新兴污染物,对生态系统产生不利影响。在该研究中,使用亲水聚乙烯吡咯烷酮(PVP)(5-15wt%)改性的聚醚砜(PE)超滤膜去除含有废水的阴离子表面活性剂十二烷基硫酸钠(SDS)。使用试验和三个数值建模方法(例如多元线性回归(MLR),多元型转位(MLNER)和基因表达编程(GEP),还顺序地分析了操作变量对膜性能的影响。接触角值为10wt%PVP改性PES膜的膜降低至23.8°,而整齐的PES膜是70.7°。该研究表明,改性膜中所需的亲水性得到改善。 PVP改性PES膜中的水通量和孔隙率也增强。在性能评估中,发现跨膜压力(TMP),进料浓度和温度的最佳工作变量分别为3巴,100ppm和25℃。在模型中,GEP与实验性阴离子表面活性剂SDS过滤数据具有良好的相关性。对于统计参数和错误术语,GEP比其他模型更好。本研究提供了对预测膜性能的新型数值模拟方法的适应性,以治疗表面活性剂废水。

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