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生物基环烷烃:高性能可持续喷气燃料的缺失环节。

Bio-Based Cycloalkanes: The Missing Link to High-Performance Sustainable Jet Fuels.

机构信息

US NAVY, NAWCWD, Research Department, Chemistry Branch, China Lake, California, 93555, USA.

出版信息

ChemSusChem. 2020 Nov 20;13(22):5777-5807. doi: 10.1002/cssc.202001641. Epub 2020 Sep 25.

DOI:10.1002/cssc.202001641
PMID:32810345
Abstract

The development of sustainable energy solutions that reduce global carbon emissions, while maintaining high living standards, is one of the grand challenges of the current century. Transportation fuels are critical to economic development, globalization, and the advancement of society. Although ground vehicles and small aircraft are beginning a slow transition toward electric propulsion with energy sourced from solar radiation or wind, the extreme power requirements of jet aircraft require a more concentrated source of energy that is conveniently provided by liquid hydrocarbon fuels. This Review describes recent efforts to develop efficient routes for the conversion of crude biomass sources (e. g., lignocellulose) to cycloalkanes. These cycloalkanes impart advantageous properties to jet fuels, including increased density, higher volumetric heat of combustion, and enhanced operability. The combination of bio-based cycloalkanes and synthetic paraffinic kerosenes allows for the preparation of 100 % bio-based fuels that can outperform conventional petroleum-based fuels. In this Review methods are described that convert biomass-derived small molecules, including furfural, furfuryl alcohol, 5-hydroxymethylfurfural, cyclic ketones, phenolics, acyclic ketones, cyclic alcohols, furans, esters, and alkenes to high-density cycloalkanes. In addition to describing the chemical transformations and catalysts that have been developed to efficiently produce various cycloalkanes, this Review includes summaries of key fuel properties, which highlight the ability to generate fuels with customized performance metrics. This work is intended to inspire other researchers to study the conversion of sustainable feedstocks to full-performance aviation fuels. An acceleration of this research is critical to reducing the carbon footprint of commercial and military aviation on a timescale that will help blunt the impacts of global warming.

摘要

开发可持续能源解决方案,减少全球碳排放,同时保持高生活水平,是本世纪的重大挑战之一。运输燃料对经济发展、全球化和社会进步至关重要。虽然地面车辆和小型飞机正开始缓慢向电动推进过渡,其能量来自太阳辐射或风,但喷气式飞机的极端功率需求需要更集中的能源,而液体碳氢燃料则方便地提供了这种能源。本综述描述了最近为开发将粗生物质源(例如木质纤维素)转化为环烷烃的有效途径所做的努力。这些环烷烃赋予喷气燃料一些有利的特性,包括增加密度、更高的体积燃烧热和增强的可操作性。生物基环烷烃和合成石蜡基煤油的组合可制备 100%生物基燃料,其性能优于传统的石油基燃料。本综述介绍了将生物质衍生的小分子(包括糠醛、糠醇、5-羟甲基糠醛、环酮、酚类、无环酮、环醇、呋喃、酯和烯烃)转化为高密度环烷烃的方法。除了描述为高效生产各种环烷烃而开发的化学转化和催化剂外,本综述还包括关键燃料性能的总结,突出了生成具有定制性能指标的燃料的能力。这项工作旨在激励其他研究人员研究将可持续原料转化为全性能航空燃料。加速这一研究对于减少商业和军事航空的碳足迹至关重要,这一时间尺度将有助于减轻全球变暖的影响。

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