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Selection and optimization of a salting-out extraction system for recovery of biobutanol from fermentation broth

机译:从发酵液中回收生物丁醇的盐析萃取系统的选择和优化

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High separation cost of biobutanol from the fermentation broth has become a bottleneck in acetone-butanol-ethanol (ABE) industrial production due to low ABE concentration. In this study, a suitable salting-out extraction (SOE) system was selected and optimized for the recovery of biobutanol from the fermentation broth. From the different SOE systems investigated, the acetone/K2HPO4 system appeared to be more favorable. To examine the potential of this SOE system, the partition coefficient combined with concentration fold of butanol in synthetic solutions was optimized by the response surface methodology. The optimum conditions were found to be 17.51% w/w acetone, 21.44% w/w dipotassium hydrogen phosphate at ABE concentration of 17.3 g/L (butanol = 9.5 g/L). Under these conditions, a favorable partition coefficient, extraction yield, and concentration fold of butanol were determined as 70, 99.08%, and 1.48, respectively. The optimum extraction conditions were then used to direct the recovery of biobutanol from a real fermentation broth. The partition coefficient, extraction yield, and concentration fold of butanol reached 63.13, 98.10%, and 1.53, respectively; while the removal ratio of cells and proteins were 99.12 and 95.70%, respectively. The SOE system of acetone/K2HPO4 appeared to be effective and feasible for the downstream processing of butanol from fermentation broth.
机译:由于低的ABE浓度,从发酵液中分离生物丁醇的高成本已成为丙酮-丁醇-乙醇(ABE)工业生产中的瓶颈。在这项研究中,选择了合适的盐析提取(SOE)系统,并对其进行了优化,以从发酵液中回收生物丁醇。从研究的不同SOE系统来看,丙酮/ K2HPO4系统似乎更有利。为了检验该SOE系统的潜力,通过响应面方法优化了分配系数以及合成溶液中丁醇的浓度倍数。发现最佳条件是在17.3 g / L(丁醇= 9.5 g / L)的ABE浓度下为17.51%w / w丙酮,21.44%w / w磷酸氢二钾。在这些条件下,丁醇的有利分配系数,提取收率和浓度倍数分别确定为70、99.08%和1.48。然后使用最佳提取条件指导从真实发酵液中回收生物丁醇。丁醇的分配系数,提取得率和浓度倍数分别达到63.13、98.10%和1.53。细胞和蛋白质的去除率分别为99.12和95.70%。丙酮/ K2HPO4的SOE系统对于从发酵液中丁醇的下游加工似乎是有效和可行的。

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