In-situ H2O removal via hydorphilic membranes during Fischer-Tropsch and other fuel-related synthesis reactions

The general objective of this thesis was to explore the potential of in-situ H2O removal during fuel-related synthesis reactions with focus on in-situ H2O removal by hydrophilic membranes and by chemical reaction. It is demonstrated that in-situ H2O removal through vapour permeation during CO2 hydro...

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Bibliographic Details
Main Author: Rohde, Martin Philipp (auth)
Format: Electronic Book Chapter
Language:English
Published: KIT Scientific Publishing 2011
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Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a The general objective of this thesis was to explore the potential of in-situ H2O removal during fuel-related synthesis reactions with focus on in-situ H2O removal by hydrophilic membranes and by chemical reaction. It is demonstrated that in-situ H2O removal through vapour permeation during CO2 hydrogenation to Fischer-Tropsch hydrocarbons and during DME/DEE synthesis leads to increased conversion and yield levels, which are directly linked to the degree of H2O recovery. 
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653 |a Fischer-Tropsch synthesis 
653 |a H2O removal 
653 |a membrane reactor 
653 |a water gas shift reaction 
653 |a CO2 hydrogenation 
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