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首页> 外文期刊>Journal of the American Oil Chemists' Society >Simulation of batch physical refining and deodorization processes
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Simulation of batch physical refining and deodorization processes

机译:模拟批量物理精制和除臭工艺

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摘要

This work presents an application of a differential distillation model for the simulation of batch physical refining and/or deodorization processes in the vegetable oil industry. The vapor-liquid equilibria of these fat systems are described by group contribution equations for vapor pressures and activity coefficients published elsewhere (Ceriani, R., and A.J.A. Meirelles, Predicting Vapor-Liquid Equilibria of Fatty Systems, Fluid Phase Equilib. 215:227-236, 2004; Fredenslund, A., J. Gmehling, and P. Rasmussen, Vapor-Liquid Equilibria Using UNIFAC, Elsevier Scientific, Amsterdam, 1977). The full complexity of the oil, expressed as its total composition of TAG, DAG, MAG, and FFA, is considered within the simulation. This approach permitted us to quantify and qualify distillative neutral oil losses during physical refining. Three different models of differential distillation were tested to develop a good representation of the batch process to be applied to the physical refining and/or deodorization of complex mixtures such as vegetable oils. To evaluate the recommended approach, a case study was performed, namely, a batch deodorizer was simulated for coconut oil refining, and the results were compared with those reported in the literature.
机译:这项工作提出了一种差分蒸馏模型的应用,用于模拟植物油行业中的批量物理精制和/或除臭工艺。这些脂肪系统的气液平衡由蒸汽压力和活度系数的组贡献方程描述(其他地方,Ceriani,R.和AJA Meirelles,《脂肪系统的汽液平衡预测》,液相平衡。215:227- ,第236页,2004年; Fredenslund,A.,J. Gmehling和P. Rasmussen,使用UNIFAC的蒸气-液体平衡,Elsevier Scientific,阿姆斯特丹,1977年)。在模拟中考虑了油的全部复杂性,以其TAG,DAG,MAG和FFA的总成分表示。这种方法使我们能够量化和鉴定物理精炼过程中蒸馏中性油的损失。测试了三种不同的差示蒸馏模型,以很好地说明分批过程,该分批过程将应用于复杂混合物(例如植物油)的物理精制和/或除臭。为了评估推荐的方法,进行了一个案例研究,即模拟了用于椰子油精制的间歇除臭器,并将结果与​​文献报道进行了比较。

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