Potential of Pervaporation and Vapor Separation with Water Selective Membranes for an Optimized Production of Biofuels—A Review
Потенциал первапорации и паропроницаемости с использованием водоселективных мембран для оптимизации производства биотоплива: обзор
2017-06-09
SCID: 54.1/8z6udgx2
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catalytic membrane reactorsliquid biofuel productionpervaporationvapor permeationwater-selective membranes
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Abstract (AI)
The development of processes based on the integration of new technologies is of growing interest to industrial catalysis. Recently, significant efforts have been focused on the design of catalytic membrane reactors to improve process performance. In particular, the use of membranes, that allow a selective permeation of water from the reaction mixture, positively affects the reaction evolution by improving conversion for all reactions thermodynamically or kinetically limited by the presence of water. In this paper, how pervaporation (PV) and vapor permeation (VP) technologies can improve the catalytic performance of reactions of industrial interest is considered. Specifically, technological approaches proposed in the literature are discussed with the aim of highlighting advantages and problems encountered in order to address research towards the optimization of membrane reactor configurations for liquid biofuel production in large scale.
Key Findings
1
Integrating membrane separation with catalytic reactors is identified as a strategy to enhance process performance in industrially relevant reactions.
2
Reported advantages and problems are assessed to guide optimization of membrane-reactor configurations for large-scale biofuel production.
3
The review evaluates technological approaches using pervaporation and vapor permeation for catalytic production of liquid biofuels.
4
Water-selective pervaporation and vapor-permeation membranes can improve conversion in reactions limited thermodynamically or kinetically by water.
Research Object
catalytic membrane reactors for liquid biofuel production using water-selective pervaporation and vapor-separation membranes
Research Subject
the effects of selective water removal by pervaporation and vapor permeation on catalytic reaction conversion, process performance, and reactor configuration optimization
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2017-06-09
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