A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas

Characterization of jet fuels obtained from sources other than crude oil is a modern area of research that is developing continuously to replace available petroleum-based fuels with ‘drop-in’ alternative fuels. Therefore, reliable composition-property relations are developed to correlate the hydroca...

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Main Author: Al-Nuaimi, Ibrahim Awni Omar Hassan
Other Authors: Elbashir, Nimir
Format: Others
Language:en
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/1969.1/150984
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-1509842013-12-18T03:55:04ZA Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural GasAl-Nuaimi, Ibrahim Awni Omar HassanSynthetic jet fuelsSynthetic Paraffinic Kerosene (SPK)Gas-to-Liquid TechnologyJet A-1Characterization of jet fuels obtained from sources other than crude oil is a modern area of research that is developing continuously to replace available petroleum-based fuels with ‘drop-in’ alternative fuels. Therefore, reliable composition-property relations are developed to correlate the hydrocarbon compositions of formulated synthetic fuels with their properties to be certified for aviation commercial use. Intensive studies have been initiated at Texas A&M University Qatar in collaboration with industry and academia to study synthetic jet fuels derived from natural gas. These studies are being implemented at its Fuel Characterization Lab where the most advanced testing equipment is used and strict Quality Management and safety systems are followed. This study is divided into two tracks. The first track is focused on conducting experimental investigations using in-house formulated synthetic jet fuels derived from natural gas via Gas-to-Liquid technology and Fischer-Tropsch chemistry. Throughout this research work, these fuels will be referred to as Synthetic Paraffinic Kerosene (SPK). These experimental investigations activities are composed of three phases: the first phase focuses on the influence of SPK building blocks (paraffinic hydrocarbons) on fuels’ properties, the second phase concerns evaluating the role of aromatics and cyclo-paraffins on properties, and the third phase studies the influence of mixing SPK with conventional Jet A-1 derived from crude oil. All of the aforementioned experimental investigations are aimed at building an experimental data bank to assist the efforts of the formulation of new generations of SPKs that meet aviation industry standards. On the other hand, the second track is directed towards the development of mathematical correlations for four properties of high importance to SPK certification. These correlations aim at optimizing fuel composition whereby major physical/chemical properties of ASTM D1655 are met at the lowest cost of composed fuel. The primary findings of this study showed that GTL derived SPK paraffinic constituents can improve certain properties while affecting others negatively, and emphasizing the necessity of aromatics in improving specific properties. Further studies compensating the absence of aromatics and sulfur through blended Jet A-1 revealed a practical solution through jet fuels optimization based on cost and technical effective manners.Elbashir, NimirEl-Halwagi, MahmoudQaraqe, Khalid2013-12-16T19:56:53Z2013-082013-05-20August 20132013-12-16T19:56:53ZThesistextapplication/pdfhttp://hdl.handle.net/1969.1/150984en
collection NDLTD
language en
format Others
sources NDLTD
topic Synthetic jet fuels
Synthetic Paraffinic Kerosene (SPK)
Gas-to-Liquid Technology
Jet A-1
spellingShingle Synthetic jet fuels
Synthetic Paraffinic Kerosene (SPK)
Gas-to-Liquid Technology
Jet A-1
Al-Nuaimi, Ibrahim Awni Omar Hassan
A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
description Characterization of jet fuels obtained from sources other than crude oil is a modern area of research that is developing continuously to replace available petroleum-based fuels with ‘drop-in’ alternative fuels. Therefore, reliable composition-property relations are developed to correlate the hydrocarbon compositions of formulated synthetic fuels with their properties to be certified for aviation commercial use. Intensive studies have been initiated at Texas A&M University Qatar in collaboration with industry and academia to study synthetic jet fuels derived from natural gas. These studies are being implemented at its Fuel Characterization Lab where the most advanced testing equipment is used and strict Quality Management and safety systems are followed. This study is divided into two tracks. The first track is focused on conducting experimental investigations using in-house formulated synthetic jet fuels derived from natural gas via Gas-to-Liquid technology and Fischer-Tropsch chemistry. Throughout this research work, these fuels will be referred to as Synthetic Paraffinic Kerosene (SPK). These experimental investigations activities are composed of three phases: the first phase focuses on the influence of SPK building blocks (paraffinic hydrocarbons) on fuels’ properties, the second phase concerns evaluating the role of aromatics and cyclo-paraffins on properties, and the third phase studies the influence of mixing SPK with conventional Jet A-1 derived from crude oil. All of the aforementioned experimental investigations are aimed at building an experimental data bank to assist the efforts of the formulation of new generations of SPKs that meet aviation industry standards. On the other hand, the second track is directed towards the development of mathematical correlations for four properties of high importance to SPK certification. These correlations aim at optimizing fuel composition whereby major physical/chemical properties of ASTM D1655 are met at the lowest cost of composed fuel. The primary findings of this study showed that GTL derived SPK paraffinic constituents can improve certain properties while affecting others negatively, and emphasizing the necessity of aromatics in improving specific properties. Further studies compensating the absence of aromatics and sulfur through blended Jet A-1 revealed a practical solution through jet fuels optimization based on cost and technical effective manners.
author2 Elbashir, Nimir
author_facet Elbashir, Nimir
Al-Nuaimi, Ibrahim Awni Omar Hassan
author Al-Nuaimi, Ibrahim Awni Omar Hassan
author_sort Al-Nuaimi, Ibrahim Awni Omar Hassan
title A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
title_short A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
title_full A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
title_fullStr A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
title_full_unstemmed A Path to the Formulation of New Generations of Synthetic Jet Fuel Derived from Natural Gas
title_sort path to the formulation of new generations of synthetic jet fuel derived from natural gas
publishDate 2013
url http://hdl.handle.net/1969.1/150984
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