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Download In-Situ H2O Removal Via Hydorphilic Membranes During Fischer-Tropsch and Other Fuel-Related Synthesis Reactions fb2, epub

by Martin Philipp Rohde

Download In-Situ H2O Removal Via Hydorphilic Membranes During Fischer-Tropsch and Other Fuel-Related Synthesis Reactions fb2, epub

ISBN: 3866446403
Author: Martin Philipp Rohde
Language: English
Publisher: KIT Scientific Publishing (April 12, 2012)
Pages: 258
Subcategory: No category
Rating: 4.1
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Size Fb2: 1957 kb
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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.

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.

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Choose file format of this book to download: pdf chm txt rtf doc. Download this format book. In-situ H2O removal via hydrophilic membranes during Fischer-Tropsch and other fuel-related synthesis reactions. Book's title: In-situ H2O removal via hydrophilic membranes during Fischer-Tropsch and other fuel-related synthesis reactions. International Standard Book Number (ISBN)

as high-value automotive fuels or petrochemicals. The findings could be extrapolated to other fuel related reactions where H 2O-induced deactivation phenomena and equilibrium limitations occur.

In-situ H2O removal via hydrophilic membranes during Fischer–Tropsch and other fuel-related synthesis reaction. The opportunity to selectively control and maximize the production of the desired fuel fractions from the FTS hydrocarbons spectrum, by tuning either reaction temperature and reaction pressure, was investigated. This study also covers an attempt to understand and model the enhanced chain growth probability in the supercritical phase FTS that resulted in significant deviations from the standard Anderson–Shultz–Flory (ASF) model (specifically within the middle distillate hydrocarbons).

Martin Philipp, "In-Situ H2O Removal via Hydrophilic Membranes During Fischer-Tropsch and Other. Fuel-Related Synthesis Reactions", Doctorate of Engineering, Karlsruher Institute of Technology, Germany, 2011. Appendix A: Nomenclatures. The kinetic model considers the reaction of methanol dehydration to be elementary. Thirteen different models have been tested.

In this study, a mathematical model describing Fischer–Tropsch synthesis over . Rohde MP (2010) In-situ H2O removal via hydrophilic membranes during Fischer–Tropsch and other fuel-related synthesis.

In this study, a mathematical model describing Fischer–Tropsch synthesis over an iron catalyst carried out in two configurations of membrane reactors was developed to predict the process performance. Rohde MP (2010) In-situ H2O removal via hydrophilic membranes during Fischer–Tropsch and other fuel-related synthesis reaction. KIT Scientific Publishing, KarlsruheGoogle Scholar.

In-Situ H2O Removal Via Hydorphilic Membranes During Fischer-Tropsch and Other Fuel-Related . Fongarland, "Dimethyl Ether Synthesis with in Situ H2O Removal in Fixed- Bed Membrane Reactor Model and Simulations. I. Iliuta, F. Larachi.

In-Situ H2O Removal Via Hydorphilic Membranes During Fischer-Tropsch and Other Fuel-Related Synthesis Reactions. Enhancement of DME Production in an Optimized Membrane Isothermal Fixed-Bed Reactor. Mohammad Farsi, Abdolhossein Jahanmiri. Jahanmiri, "Modeling and Optimization of Methanol to Dimethyl Ether in Isothermal Fixed-Bed Reactor. Mohammad Farsi, Abdolhossein.

Keywords: FischereTropsch synthesis Water perm-selective membrane layer Fluidized-bed membrane reactor FT reactor .

Keywords: FischereTropsch synthesis Water perm-selective membrane layer Fluidized-bed membrane reactor FT reactor combination In situ water removal GTL technology. The WGS reaction can be displaced selectively in favor of CO by in situ H2O removal (Rohde et al. H-SOD is a zeolite-like material which consists of sodalite cages exclusively (Fernandes and Soares. 1. The exceptional property of H-SOD membrane in comparison with the other widely studied membranes (Rohde et al. Peters et al. Moreover.

Discover Book Depository's huge selection of Martin Rohde books online. Free delivery worldwide on over 20 million titles. In-situ H2O removal via hydorphilic membranes during Fischer-Tropsch and other fuel-related synthesis reactions. Martin Philipp Rohde.

The Fischer–Tropsch process is a collection of chemical reactions that converts a mixture of carbon monoxide and hydrogen into liquid hydrocarbons

The Fischer–Tropsch process is a collection of chemical reactions that converts a mixture of carbon monoxide and hydrogen into liquid hydrocarbons. These reactions occur in the presence of metal catalysts, typically at temperatures of 150–300 °C (302–572 °F) and pressures of one to several tens of atmospheres. The process was first developed by Franz Fischer and Hans Tropsch at the tut für Kohlenforschung in Mülheim an der Ruhr, Germany, in 1925.

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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