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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >A mathematical model based parametric sensitivity analysis of an evaporative crystallizer for lactose monohydrate
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A mathematical model based parametric sensitivity analysis of an evaporative crystallizer for lactose monohydrate

机译:基于数学模型的蒸发结晶器对一水合乳糖的参数敏感性分析

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Lactose is produced from whey by crystallization after a series of concentration steps. Evaporative crystallization is the process where both concentration and crystallization occur simultaneously. There is no current literature on an industrial scale evaporative crystallizer producing lactose monohydrate. Crystal size is the most important output parameter for the lactose crystallization process. In order to understand the effect of various operational and kinetic parameters on the final crystal size coming out of the crystallizer, a mathematical model was developed to mimic the operation of the industrial unit. The model includes mass and crystal population balances along with mutarotation and nucleation kinetics for lactose. A sensitivity analysis was conducted by simulating the developed model for a range of values for parameters like residence time, evaporation rate, crystallizer temperature and growth and nucleation kinetics. It was found that the secondary nucleation rate was the factor most affecting the crystal size. The crystal size and dissolved lactose data from the industrial unit were collected and fitted to the model predictions to estimate the crystallization kinetics of lactose in the industrial unit. Based on the simulation results, operational and design guidelines for an evaporative crystallizer were laid down. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在一系列浓缩步骤后,通过结晶从乳清中生产乳糖。蒸发结晶是浓缩和结晶同时发生的过程。目前没有工业上生产乳糖一水合物的蒸发结晶器的文献。晶体大小是乳糖结晶过程中最重要的输出参数。为了了解各种操作和动力学参数对从结晶器出来的最终晶体尺寸的影响,开发了数学模型来模拟工业装置的操作。该模型包括质量和晶体种群平衡以及乳糖的诱变和成核动力学。通过模拟所开发模型的一系列数值来进行敏感性分析,例如停留时间,蒸发速率,结晶器温度以及生长和成核动力学。发现二次成核速率是最影响晶体尺寸的因素。收集了来自工业装置的晶体大小和溶解乳糖数据,并将其拟合到模型预测中,以估算工业装置中乳糖的结晶动力学。根据模拟结果,制定了蒸发结晶器的操作和设计指南。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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