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Phase separation in a salting-out extraction system of ethanol-ammonium sulfate

机译:乙醇-硫酸铵盐析萃取体系中的相分离

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The effects of tie line length, phase volume ratio, phase continuity, degree of mixing and equipment geometry size on the kinetics of phase separation in the ethanol-ammonium sulfate salting-out extraction system were studied with tie line lengths of 42.5%, 51.4% and 56.6% and phase volume ratio in the range of 1:9-9:1. The time for product distribution and phase equilibrium was also investigated. It was found that the rate of phase separation increased as the tie line length increased and the shortest separation time was obtained at the phase inversion point for all the tie lines at a constant phase volume ratio. The phase continuity was determined not only by the phase volume ratio, but also by the degree of mixing. An ambiguity area where gentle vortex produced a top-continuous system and intense mixing produced a bottom-continuous system was observed and its scope was extended as the mixing intensity decreased. Additionally, increasing the cross-sectional area of equipment had a significant effect on the rate of phase separation because the coalescence process determined the separation rate in the salting-out extraction system. By comparing the concentration of target product (butanol) and phase-forming component (ethanol) in the top phase at different time intervals, it was concluded that this system can achieve complete phase equilibrium within 10 min. The knowledge of kinetics of phase separation is important to the deep understanding of this system and beneficial to process scale up for industrialization. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了领带线长度分别为42.5%,51.4%的乙醇-硫酸铵盐析萃取体系中领带线长度,相体积比,相连续性,混合程度和设备几何尺寸对相分离动力学的影响。 56.6%,相体积比为1∶9-9∶1。还研究了产物分布和相平衡的时间。已经发现,随着连接线长度的增加,相分离的速率增加,并且对于所有连接线,在恒定相体积比下,在相变点处获得了最短的分离时间。相连续性不仅由相体积比决定,而且还由混合程度决定。观察到模糊区域,在该区域中,柔和的涡旋产生了顶部连续系统,而剧烈的混合产生了底部连续系统,并且随着混合强度的降低,其范围扩大了。另外,增加设备的截面积对相分离率有重要影响,因为聚结过程决定了盐析萃取系统中的分离率。通过比较目标产物(丁醇)和相形成组分(乙醇)在不同时间间隔内的浓度,可以得出结论,该系统可以在10分钟内达到完全的相平衡。相分离动力学的知识对于深入了解该系统非常重要,并且有利于工业规模化生产。 (C)2015 Elsevier B.V.保留所有权利。

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