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首页> 外文期刊>The Korean journal of chemical engineering >Developing a new model to predict mass transfer coefficient of salicylic acid adsorption onto IRA-93: Experimental and modeling
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Developing a new model to predict mass transfer coefficient of salicylic acid adsorption onto IRA-93: Experimental and modeling

机译:开发新模型以预测水杨酸在IRA-93上的吸附传质系数:实验和建模

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An experimental breakthrough curve for Salicylic acid in an adsorption recovery process was determined by an anion-exchange resin IRA-93. The volumetric mass transfer coefficients were calculated by employing constant wave propagation theory. Meanwhile, the effects of volumetric feed flow rates on this break through curve and mass transfer coefficients at different flow rates were also studied in order to develop three new models to predict mass transfer coefficient. The results demonstrated that by the increase in the feed flow rates, the amount of adsorption reduces. However, while the volumetric feed flow rates increase the overall volumetric mass transfer coefficients will increase. This grows the feeling that the feed flow rate should be optimized. The optimum flow rate for the adsorption was found to be 7 mg/1 in this study. In addition, three new models to predict the mass transfer coefficient in respect of feed rates were developed in this research work which showed very high fittings with R~2>0.99. These models could fully support the experimental data obtained.
机译:水杨酸在吸附回收过程中的实验突破曲线由阴离子交换树脂IRA-93确定。体积传质系数采用恒定波传播理论计算。同时,还研究了体积进料流速对这种突破曲线的影响以及在不同流速下的传质系数,以建立三个新的模型来预测传质系数。结果表明,通过进料流速的增加,吸附量减少。然而,当体积进料流速增加时,整体体积传质系数将增加。这增加了应该优化进料流速的感觉。在这项研究中,吸附的最佳流速为7 mg / 1。此外,在这项研究工作中,开发了三种新的模型来预测进料速率下的传质系数,显示出非常高的拟合,R〜2> 0.99。这些模型可以完全支持所获得的实验数据。

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