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首页> 外文期刊>The Korean journal of chemical engineering >Optimization of preparation conditions of polyamide thin film composite membrane for organic solvent nanofiltration
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Optimization of preparation conditions of polyamide thin film composite membrane for organic solvent nanofiltration

机译:有机溶剂纳滤聚酰胺薄膜复合膜制备条件的优化

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摘要

Separation performance of polyamide composite membranes is affected by several parameters during formation of thin upper layer via interfacial polymerization. We investigated the effect of various polyamide synthesis conditions on the performance of organic solvent resistant polyamide composite membranes through the model equations designed by 2-level fractional factorial design. The dewaxing solvent recovery was selected as separation process. Five factors were changed in two level includin; TMC concentration (0.05-0.1%), MPD concentration (1-2%), support immersion time in organic solution (2-4 min), support immersion time in aqueous solution (1-2 min), and curing temperature (70-80℃). The resultant equations showed 93.48% and 94.82% of the variability (R_(adj)~2) in data used to fit oil rejection and permeate flux models, respectively. The analysis of variance revealed that both models were high significant. It was also observed that TMC concentration, MPD concentration and immersion time in TMC have more pronounced effect on the oil rejection and permeate flux than other factors and interactions. Optimal polyamide preparation conditions were obtained using multiple response method for 94% oil rejection as target value. According to the results, the best value of permeate flux (8.86 l/(m~2.h)) was found at TMC concentration of 0.1%, MPD concentration of 1.94%, immersion time in TMC of 3.88 min, immersion time in MPD of 1.95 min and curing temperature of 71.96℃ with desirability factor of 1.
机译:在通过界面聚合形成薄的上层的过程中,聚酰胺复合膜的分离性能受到几个参数的影响。我们通过2-级分数因子设计设计的模型方程研究了各种聚酰胺合成条件对耐有机溶剂聚酰胺复合膜性能的影响。选择脱蜡溶剂回收作为分离工艺。改变了两个层次的五个因素。 TMC浓度(0.05-0.1%),MPD浓度(1-2%),载体在有机溶液中的浸泡时间(2-4分钟),载体在水溶液中的浸渍时间(1-2分钟)和固化温度(70- 80℃)。所得方程在用于拟合排油模型和渗透通量模型的数据中分别显示了93.48%和94.82%的变异性(R_(adj)〜2)。方差分析表明,两个模型均具有很高的显着性。还观察到,TMC浓度,MPD浓度和在TMC中的浸泡时间对除油率和渗透通量的影响比其他因素和相互作用更为明显。使用多重响应方法获得最佳的聚酰胺制备条件,以94%的脱油率为目标值。根据结果​​,在TMC浓度为0.1%,MPD浓度为1.94%,在TMC中的浸入时间为3.88分钟,在MPD中的浸入时间时,发现渗透通量的最佳值(8.86 l /(m〜2.h))。固化时间为1.95分钟,固化温度为71.96℃,理想因子为1。

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