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Optimization of ionic liquid recycling in Ionic Liquid-based Three Phase Partitioning processes

机译:离子液体基于离子液体三相分配过程的离子液体循环的优化

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The economic viability of Ionic Liquid-based Three Phase Partitioning (ILTPP) processes, which have been proposed to recover proteins from waste streams, highly depends on the recyclability of the salt and, especially, the ionic liquid used in this technique. For this reason, the economic optimization of the recovery of ILTPP reagents is carried out, considering the main operational costs (reagents and energy). Results show that the process configuration with which costs are minimized is based on the use of vacuum evaporation to remove water from the salt-rich phase of the process. Therefore, the increase of salt concentration is not an economically efficient alternative to recycle the ionic liquid, even though this alternative is usually proposed in the literature. The optimum costs vary between 51.5 - 307 ? kg protein"1 for almost all protein concentrations in the feed stream, which are significantly lower than the lowest price reported for the target protein (lactoferrin), so ILTPP processes seem to be economically viable. In addition, the price of reagents and energy has very little influence on the optimum solutions, because very large changes of prices are required to modify the obtained results.
机译:已经提出从废物流中回收蛋白质的离子液体三相分配(ILLTPP)方法的经济可行性高度取决于盐的可回收性,并且特别是该技术中使用的离子液体。因此,考虑到主要运营成本(试剂和能量)进行ILTPP试剂的回收率的经济优化。结果表明,最小化成本的过程配置是基于使用真空蒸发,从而从富含盐的过程中除去水。因此,即使在文献中通常提出这种替代方案,盐浓度的增加也不是回收离子液体的经济有效的替代方案。最佳成本在51.5 - 307之间变化? kg蛋白质“1对于进料流中的几乎所有蛋白质浓度,这显着低于针对靶蛋白(Lactoferrin)的最低价格,因此Iltpp工艺似乎在经济上可行。此外,试剂和能量的价格具有对最佳解决方案的影响很小,因为需要非常大的价格变化来修改所获得的结果。

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