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Multiobjective Optimization of Membrane Networks for Fractionation of Protein Hydrolysate from Fish By-Products

机译:鱼副产品蛋白质水解产物分馏的多目标优化

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Ultrafiltration and nanofiltration can be very useful technologies to fractionate the different protein fractions obtained after hydrolysis of fish by-products. Simple empirical transport equations derived from experimental data were obtained and a process simulation model was developed and employed for the identification of the optimal design and operation conditions to maximize the product purity or the process yield. More complex scenario appeared when other objectives were added to the optimization problem, including economic considerations, such as the total costs of the process, or environmental considerations, such as the total freshwater consumption by the system. Limitations to the total costs implied reduced membrane area in the UF stages and, consequently, lower process yields. Freshwater consumption could be reduced without worsening product purity or process yield, but limits should be imposed in order to avoid excessive protein contents that would cause problems related to membrane clogging.
机译:超滤和纳滤可以是非常有用的技术以分级分离的副产物的鱼的水解后得到的不同的蛋白质级分。获得由实验数据得出简单的经验输运方程和过程仿真模型的开发和用于识别的最佳设计和操作条件,以最大限度地提高产品的纯度或加工产量。当其他的目标被添加到优化问题,包括经济上的考虑,该工艺的总成本,还是环境因素,如由系统占淡水消费,如更复杂的情况出现了。限制的总成本降低了隐含的膜面积在UF阶段,因此,较低的工艺产率。淡水的消耗可在不恶化产物纯度或工艺的产率减少,但限制应以避免过多的蛋白质含量将导致相关的膜堵塞问题的罚款。

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