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Catalytic Upgrading of Biomass Model Compounds: Novel Approaches and Lessons Learnt from Traditional Hydrodeoxygenation - a Review

机译:生物质模型化合物的催化升级:从传统水冰氧中吸取的新方法和经验教训 - 评论

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Catalytic hydrodeoxygenation (HDO) is a fundamental process for bio-resources upgrading to produce transportation fuels or added value chemicals. The bottleneck of this technology to be implemented at commercial scale is its dependence on high pressure hydrogen, an expensive resource which utilization also poses safety concerns. In this scenario, the development of hydrogen-free alternatives to facilitate oxygen removal in biomass derived compounds is a major challenge for catalysis science but at the same time it could revolutionize biomass processing technologies. In this review we have analysed several novel approaches, including catalytic transfer hydrogenation (CTH), combined reforming and hydrodeoxygenation, metal hydrolysis and subsequent hydrodeoxygenation along with non-thermal plasma (NTP) to avoid the supply of external H-2. The knowledge accumulated from traditional HDO sets the grounds for catalysts and processes development among the hydrogen alternatives. In this sense, mechanistic aspects for HDO and the proposed alternatives are carefully analysed in this work. Biomass model compounds are selected aiming to provide an in-depth description of the different processes and stablish solid correlations catalysts composition-catalytic performance which can be further extrapolated to more complex biomass feedstocks. Moreover, the current challenges and research trends of novel hydrodeoxygenation strategies are also presented aiming to spark inspiration among the broad community of scientists working towards a low carbon society where bio-resources will play a major role.
机译:催化加氢脱氧(HDO)是生物资源升级以生产运输燃料或增加价值化学品的基本方法。该技术以商业规模实施的这项技术的瓶颈是其对高压氢的依赖性,这是一种昂贵的资源,利用也造成了安全问题。在这种情况下,无氢替代品的开发以促进生物质衍生的化合物中的含氧化合物是催化科学的主要挑战,但同时它可以彻底改变生物量加工技术。在本次综述中,我们分析了几种新方法,包括催化转移氢化(CTH),组合的重整和加氢酰基,金属水解和随后的加氢酰基以及非热等离子体(NTP),以避免外部H-2的供应。从传统的HDO累积的知识设定了催化剂和工艺开发的催化剂和过程开发的基础。在这方面,在这项工作中仔细分析了HDO的机械方面和所提出的替代方案。选择生物质模型化合物,其目的是提供不同方法的深入描述,并且可以进一步推断为更复杂的生物质原料的组合物催化性能的深入描述。此外,还提出了新的加氢脱氧策略的目前的挑战和研究趋势,旨在引起朝向低碳社会的广泛社区中的激发灵感,生物资源将发挥重要作用。

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