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Integrated Vacuum Stripping and Adsorption for theEfficient Recovery of (Biobased) 2-Butanol

机译:集成的真空汽提和吸附有效回收(生物基)2-丁醇

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摘要

Biobased 2-butanol offers high potential as biofuel, but its toxicity toward microbial hosts calls for efficient techniques to alleviate product inhibition in fermentation processes. Aiming at the selective recovery of 2-butanol, the feasibility of a process combining in situ vacuum stripping followed by vapor adsorption has been assessed using mimicked fermentation media. The experimental vacuum stripping of model solutions and corn stover hydrolysate closely aligned with mass transfer model predictions. However, the presence of lignocellulosic impurities affected 2-butanol recovery yields resulting from vapor condensation, which decreased from 96 wt % in model solutions to 40 wt % using hydrolysate. For the selective recovery of 2-butanol from a vapor mixture enriched in water and carbon dioxide, silicalite materials were the most efficient, particularly at low alcohol partial pressures. Integrating in situ vacuum stripping with vapor adsorption using HiSiv3000 proved useful to effectively concentrate 2-butanol above its azeotropic composition (>68 wt %), facilitating further product purification.
机译:生物基2-丁醇具有很高的生物燃料潜力,但其对微生物宿主的毒性要求采用有效的技术来减轻发酵过程中的产物抑制作用。针对2-丁醇的选择性回收,已经使用模拟发酵培养基评估了结合原位真空汽提然后进行蒸气吸附的方法的可行性。模型溶液和玉米秸秆水解产物的实验真空汽提与传质模型的预测非常吻合。然而,木质纤维素杂质的存在影响了由蒸汽冷凝产生的2-丁醇回收率,其从模型溶液中的96wt%降低至使用水解产物的40wt%。为了从富含水和二氧化碳的蒸气混合物中选择性回收2-丁醇,硅沸石材料是最有效的,尤其是在低酒精分压下。使用HiSiv3000将原位真空汽提与蒸汽吸附结合在一起,可有效地将2-丁醇有效地浓缩在其共沸组成(> 68 wt%)之上,从而促进进一步的产品纯化。

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