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Technological and commercial maturity of aviation biofuels: Emerging options to produce jet from lignocellulosic biomass

机译:航空生物燃料的技术和商业成熟度:从木质纤维素生物质生产喷射的新兴选择

摘要

The aviation sector is responsible for an increasing share of anthropogenic CO2 emissions. Wider adoption of aviation biofuels (biojet) is imperative for the reduction of greenhouse-gas emissions, however it represents a radical departure from the existing technological regime of petroleum-based fuels. Further market deployment will require significant techno-economic breakthroughs, as well as adaptation of the existing supply chains and infrastructure. Although a large number of technologies which have the capability to produce such fuels are being developed, many of these are unlikely to be suitable for EU-based production in the short-term. Biojet production pathways vary considerably in terms of their techno-economic features, with the most highly developed being in the very early stages of commercialisation. In this article, the authors map current development and manufacturing efforts within five emerging biojet technological pathways. The research draws upon a comprehensive review of the international academic and grey literature in order to characterise the pathways according to their technological and commercial maturity, as well as progress towards international certification. By implementing the Fuel Readiness Level (FRL) methodology, the authors provide insights regarding not only the current status of the biojet sector, but also potential opportunities for the short-term development of supply chains in the EU.
机译:航空部门是造成人为二氧化碳排放量增加的原因。为了减少温室气体排放,航空生物燃料(biojet)的广泛采用是必不可少的,但是,这与现有的石油基燃料技术体系存在根本性的背离。进一步的市场部署将需要重大的技术经济突破,以及对现有供应链和基础设施的适应。尽管正在开发具有生产这种燃料能力的大量技术,但其中许多技术短期内不太适合基于欧盟的生产。 Biojet生产途径的技术经济特征差异很大,其中发展最快的是商业化的早期阶段。在本文中,作者介绍了五种新兴生物喷射技术途径中的当前开发和制造工作。该研究基于对国际学术和灰色文献的全面回顾,以便根据其技术和商业成熟度以及通向国际认证的进展来表征这些途径。通过实施“燃油准备水平”(FRL)方法,作者不仅提供有关生物喷气机行业当前状况的见解,而且还提供有关欧盟供应链短期发展的潜在机会的见解。

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