Innovation in Fischer-Tropsch: A Sustainable Approach to Fuels Production : A cost-effective method of converting any carbon source into high-quality liquid hydrocarbon fuels

Author:

Pearson Richard1,Coe Andrew1,Paterson James2

Affiliation:

1. Johnson Matthey 10 Eastbourne Terrace, London, W2 6LG UK

2. bp, Centre of Expertise in Applied Chemistry and Physics, Innovation & Engineering, Saltend Chemicals Park Saltend Lane, Hull, HU12 8DS UK

Abstract

A sustained global effort is required over the next few decades to reduce greenhouse gas emissions, in order to address global warming as society seeks to deliver the Paris Agreement temperature goals. The increasing availability of renewable electricity will reduce our reliance on fossil fuels. However, some applications, such as long-haul aviation, are particularly challenging to decarbonise. The conversion of waste, biomass or existing CO2 emissions into sustainable fuels via Fischer-Tropsch (FT) synthesis offers one solution to this problem. This paper describes some of the challenges associated with this route to these alternative fuels and how Johnson Matthey and bp have solved them.

Publisher

Johnson Matthey

Subject

Electrochemistry,Metals and Alloys,Process Chemistry and Technology

Reference24 articles.

1. ‘Renewable Energy’,

2. ‘A History of the BP Fischer-Tropsch Catalyst from Laboratory to Full Scale Demonstration in Alaska and Beyond’, in “Studies in Surface Science and Catalysis”,;Font Freide,2007

3. “BP Energy Outlook”,,2019

4. “Carbon Intensity of Crude Oil in Europe: Executive Summary”,,November, 2010

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