中国化学工程学报 ›› 2019, Vol. 27 ›› Issue (6): 1296-1306.DOI: 10.1016/j.cjche.2018.09.025
• Special Issue: Separation Process Intensification of Chemical Engineering • 上一篇 下一篇
Peiyao Zheng1, Chong Li2, Naixin Wang2, Jie Li2, Quanfu An1,2
收稿日期:
2018-07-06
修回日期:
2018-09-15
出版日期:
2019-06-28
发布日期:
2019-08-19
通讯作者:
Quanfu An
基金资助:
Peiyao Zheng1, Chong Li2, Naixin Wang2, Jie Li2, Quanfu An1,2
Received:
2018-07-06
Revised:
2018-09-15
Online:
2019-06-28
Published:
2019-08-19
Contact:
Quanfu An
Supported by:
摘要: Recovering alcohols from dilute fermentation broth is an emergent task in bio-fuel production process. Since they are primary planned for fuels, energy required to separate these alcohols should be considered in evaluating the potential of a separation technology. A membrane-based process, pervaporation, is of special interest because of its environmental friendliness and easy integrating character. This review probes into the fundamentals of pervaporation especially in terms of the heat required for evaporation. Meanwhile, the separation data of the most representative alcohol-selective pervaporation membranes reported in the literatures are collected and compared with the vapor-liquid equilibrium curve, which represents the distillation selectivity. They include:inorganic membranes, silicon rubber based membranes, Mixed Matrix Membranes and some other special materials. By doing so, the status of alcohol recovery via pervaporation would be more clear for researchers. For ethanol recovery, it is selectivity rather than flux that is in urgent need of solution. While for butanol recovery, membranes with satisfactory selectivity have been developed, increasing the separation capacity would be more pressing.
Peiyao Zheng, Chong Li, Naixin Wang, Jie Li, Quanfu An. The potential of pervaporation for biofuel recovery from fermentation: An energy consumption point of view[J]. 中国化学工程学报, 2019, 27(6): 1296-1306.
Peiyao Zheng, Chong Li, Naixin Wang, Jie Li, Quanfu An. The potential of pervaporation for biofuel recovery from fermentation: An energy consumption point of view[J]. Chinese Journal of Chemical Engineering, 2019, 27(6): 1296-1306.
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