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Fischer-Tropsch refining

Thesis (PhD (Chemical Engineering))--University of Pretoria, 2008.

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Other Authors: De Vaal, Philip L.
Format: Thesis
Published: University of Pretoria 2013
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access_status_str Open Access
author2 De Vaal, Philip L.
author_browse De Vaal, Philip L.
author_facet De Vaal, Philip L.
collection Thesis
dc_rights_str_mv © University of Pretoria 2008 D459
description Thesis (PhD (Chemical Engineering))--University of Pretoria, 2008.
format Thesis
id oai:repository.up.ac.za:2263/26754
institution University of Pretoria (South Africa)
last_indexed 2026-06-10T12:37:28.861Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from UPSpace — University of Pretoria Institutional Repository
publishDate 2013
publishDateRange 2013
publishDateSort 2013
publisher University of Pretoria
publisherStr University of Pretoria
record_format dspace
source_str UPSpace — University of Pretoria Institutional Repository
spelling oai:repository.up.ac.za:2263/26754 Fischer-Tropsch refining De Vaal, Philip L. arno.deklerk@sasol.com De Klerk, Arno Diesel fuel Syncrude Refining Motor-gasoline Refinery design Fischer-tropsch Jet fuel Refining catalysis UCTD Thesis (PhD (Chemical Engineering))--University of Pretoria, 2008. Energy carriers, such as coal, natural gas and biomass, can be converted by Fischer-Tropsch technology into synthetic crude (syncrude). Fischer-Tropsch derived syncrude can then be refined to transportation fuels, such as motor-gasoline, jet fuel and diesel fuel. These fuels meet the same specifications as crude oil derived transportation fuels. Conventional refining technologies have to be adapted to deal with Fischer-Tropsch syncrudes, because they differ significantly from crude oil with respect to composition. Some of the key differences are the high concentration of oxygenates and olefins and absence of sulphur in Fischer-Tropsch syncrude. Imposing a crude oil refining methodology on syncrude can lead to unwieldy and expensive refineries. Yet, despite an abundance of literature of Fischer-Tropsch synthesis, there is little literature that deals with the refining of Fischer-Tropsch syncrude. The present study investigated current refining practice for both crude oil and Fischer-Tropsch syncrude in order to identify fundamental differences in their refining focus and conversion behaviour. This was followed by a critical evaluation of the compatibility of syncrudes from high temperature Fischer-Tropsch (HTFT) and low temperature Fischer-Tropsch (LTFT) synthesis with the chemistry and catalysis of various conversion processes. The conversion processes that were evaluated include isomerisation, oligomerisation, etherification, alkylation, metathesis, hydrogenation, hydroisomerisation, hydrocracking, catalytic cracking, coking, thermal cracking, catalytic reforming and dehydration. The recommendations from the technology evaluation provided the foundation for the development of Fischer-Tropsch syncrude based refinery designs. Refinery designs were developed to determine configurations that would maximise the production of on-specification motor-gasoline, jet fuel and diesel fuel respectively. It could be shown that less complex refinery designs were required to refine Fischer-Tropsch syncrude to motor-gasoline and jet fuel, than were required for crude oil refining. It was also shown that on a molecular level Fischer-Tropsch syncrude is unsuited for maximising the production of Euro-4 type diesel fuel. The present study illustrates the advantage of considering fundamentals in developing refineries specifically for Fischer-Tropsch syncrude, rather than imposing crude oil design practises on Fischer-Tropsch syncrude refinery designs. Chemical Engineering unrestricted 2013-09-07T07:43:06Z 2008-08-06 2013-09-07T07:43:06Z 2008-04-11 2008-08-06 2008-07-28 Thesis a 2008 D459 gm http://hdl.handle.net/2263/26754 http://upetd.up.ac.za/thesis/available/etd-07282008-130342/ © University of Pretoria 2008 D459 application/pdf application/pdf application/pdf application/pdf application/pdf application/pdf application/pdf application/pdf application/pdf application/pdf University of Pretoria
spellingShingle Diesel fuel
Syncrude
Refining
Motor-gasoline
Refinery design
Fischer-tropsch
Jet fuel
Refining catalysis
UCTD
Fischer-Tropsch refining
title Fischer-Tropsch refining
title_full Fischer-Tropsch refining
title_fullStr Fischer-Tropsch refining
title_full_unstemmed Fischer-Tropsch refining
title_short Fischer-Tropsch refining
title_sort fischer tropsch refining
topic Diesel fuel
Syncrude
Refining
Motor-gasoline
Refinery design
Fischer-tropsch
Jet fuel
Refining catalysis
UCTD
url http://hdl.handle.net/2263/26754
http://upetd.up.ac.za/thesis/available/etd-07282008-130342/