4.8 Article

Jatropha curcas for jet biofuel production: Current status and future prospects

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rser.2020.110396

关键词

Jet biofuel; Jatropha; Hydroprocess; Seedcake; Fischer-tropsch; Aviation

资金

  1. Hamad Bin Khalifa University (HBKU) of Qatar
  2. Qatar Foundation (QF)

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Carbon emissions from the aviation sector are projected to double in the next three decades, while fluctuating conventional fuel prices continue to hinder stable commercial strategies for airlines. Jet Biofuel (JBF), particularly from Jatropha oil, is seen as a promising alternative with potential for significant reductions in greenhouse gas emissions. Despite limited in-depth reviews on Jatropha JBF, there is increasing recognition of the need to evaluate Jatropha as a feedstock for JBF production after over a decade of intensive research.
Carbon emissions from the aviation sector are expected to double during the coming three decades as the sector expands rapidly. Besides, the fluctuation of conventional fuel prices continues to obstruct the establishment of stable commercial strategies for the airlines. Meanwhile, Jet Biofuel (JBF) has been identified as a reliable alternative to conventional Jet-A fuel. Amongst the tested promising feedstocks for JBF production, Jatropha oil has gained growing attention and is believed to play a key role in the JBF industry. Though, no in-depth reviews on Jatropha JBF are found in literature, it is believed that there is a need to evaluate Jatropha as feedstock for JBF production after over 10 years of intensive research. Therefore, this article presents a comprehensive stateof-the-art review of Jatropha JBF production. The article offers a thorough review of the hydroprocessing of Jatropha by investigating its optimum operating conditions, recent catalyst application developments, the feasibility of JBF, its performance and environmental impact. This study concludes that Jatropha JBF production by hydroprocessing can achieve up to a 75% reduction in greenhouse gas emissions relative to Jet-A. While Jatropha JBF can be produced with a levelised cost as low as $0.6/kg. The main challenges facing Jatropha JBF industry has been identified to be the availability of feedstock and achieving a competitively priced JBF. As such, alternative routes to utilise the remaining parts of the Jatropha fruit into JBF production are proposed to reduce the land footprint, enhance JBF yield and minimise its selling price. The proposed pathways are expected to achieve a significant fuel yield increment of 24-89% as compared to utilising Jatropha oil alone, which remain to be evaluated in terms of technical and economic aspects.

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