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Experimental and statistical investigation on fabrication and performance evaluation of structurally tailored PAN nanofiltration membranes for produced water treatment

机译:结构定制锅纳过滤膜制备和性能评价实验和统计调查生产水处理膜

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摘要

The present study aims at investigating the effects of multiple fabrication and design parameters on the performance of nanofiltration (NF) membranes. By employing the Plackett-Burman design method, obtained results demonstrate that citric acid (0-1.5 wt.%), TiO2 (0-1 wt.%), and solvent evaporation time (1-3 min) are the top dominant factors affecting the pure water flux (PWF) of NF membranes. Also, the effects of the dominant factors and their corresponding interactions are statistically assessed through RSM technique by employing a quadratic model. Based on the ANOVA results the proposed models for the PWF and CaSO4 rejection responses are statistically significant. The calculated optimum values for citric acid, TiO2, and solvent evaporation time are 0.87 wt.%, 0.98 wt.%, and 1.34 min respectively. It is shown that by increasing the concentration of TiO2 both PWF and rejection of membrane enhanced from 108.8-131.5 (lit.m(-2).h(-1)) and from 73.5-83 % respectively. Furthermore, an increment in citric acid concentration leads to the promotion of the surface hydrophilicity and salt rejection of membranes. From the morphological point of view, increasing the TiO2 concentration leads to formation of membranes with more porous sublayers while longer solvent evaporation times results in the formation of membranes with smaller macrovoids.
机译:本研究旨在研究多种制造和设计参数对纳米滤膜性能的影响。通过采用Plackett-Burman设计方法,得到的结果表明柠檬酸(0-1.5重量%),TiO 2(0-1重量%)和溶剂蒸发时间(1-3分钟)是影响的顶级主导因素NF膜的纯净水通量(PWF)。而且,通过采用二次模型,通过RSM技术进行统计评估主导因子及其相应的相互作用的影响。基于ANOVA结果,PWF和CASO4排斥反应的提出模型是统计学上的显着性。计算出的柠檬酸,TiO 2和溶剂蒸发时间的最佳值为0.87重量%,分别为0.98重量%和1.34分钟。结果表明,通过将TiO 2的浓度增加到108.8-131.5(Lit.m(-2).h(-1))和73.5-83%的增强的膜的浓度。此外,柠檬酸浓度的增量导致促进表面亲水性和盐抑制膜。从形态学的角度来看,增加TiO2浓度导致形成具有更多多孔子层的膜,而较长的溶剂蒸发时间导致形成具有较小宏烷的膜。

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