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Sweeping gas membrane distillation of sucrose aqueous solutions: Response surface modeling and optimization

机译:蔗糖水溶液的吹扫气膜蒸馏:响应面建模和优化

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Response surface methodology and desirability function approach have been applied for modeling and multi-response optimization of sweeping gas membrane distillation process used for concentration of sucrose aqueous solutions. Response surface models have been developed to predict the permeate flux and the sucrose concentration rate. The models have been statistically validated by ANOVA. The sucrose rejection factor was found to be greater than 98.9% and therefore the response surface model can not be developed for this response. The models have been used to perform the overall desirability function. In addition, the overlap contour plots have been drawn to study the interaction effects between operating parameters on both the permeate flux and the sucrose concentration rate, to identify the desirability zone and to determine the optimal point. The optimal operating conditions were found to be 70.9 °C feed temperature, 2.09 m/s air circulation velocity and an initial sucrose concentration of 223 g/L Under these conditions the measured permeate flux 1.077 x 10~(-3) kg/m~2 s and the sucrose concentration rate 4.686 g/L h were found to be the highest values in this study confirming the validity of the applied sweeping gas membrane distillation optimization procedure.
机译:响应面方法学和合意函数法已被用于建模和多反应优化用于浓缩蔗糖水溶液的吹扫气膜蒸馏过程。已经开发出响应表面模型来预测渗透通量和蔗糖浓度速率。该模型已通过ANOVA进行了统计验证。发现蔗糖排斥因子大于98.9%,因此无法针对该响应建立响应面模型。这些模型已用于执行总体合意性功能。此外,已经绘制了重叠等高线图,以研究操作参数对渗透通量和蔗糖浓度速率的相互作用影响,从而确定所需区域并确定最佳点。最佳操作条件为进料温度为70.9°C,空气循环速度为2.09 m / s,蔗糖初始浓度为223 g / L。在这些条件下,测得的渗透通量为1.077 x 10〜(-3)kg / m〜。本研究发现2 s和蔗糖浓度速率为4.686 g / L h为最高值,证实了应用吹扫气膜蒸馏优化程序的有效性。

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