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Thermochemical production of bio-oil: A review of downstream processing technologies for bio-oil upgrading, production of hydrogen and high value-added products

机译:生物油的热化学生产:生物油升级下游加工技术综述,氢气生产和高附加值产品

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Bio-oil produced from biomass pyrolysis and hydrothermal liquefaction is considered as the most sustainable alternative for depleting fossil fuels. However, the poor bio-oil properties, such as high viscosity, presence of solid particles, low calorific value and high instability are restricting its use as a drop-in fuel. The bio-oil properties can be significantly improved using different methods, such as catalytic upgrading, biomass pretreatment and downstream bio-oil upgrading. This article focusses on the widely used methods for downstream bio-oil upgrading, such as hydrotreatment, solvent addition, emulsification, microfiltration and electrocatalytic hydrogenation. The bio-oil upgrading using non-polar solvents or preparing emulsions using surfactants have shown a significant increase in the calorific values and a considerable decrease in viscosity of the bio-oil. On the other hand, filtration of the bio-oil using membranes can remove the char particles and alkali and alkali earth metals from the bio-oil, consequently, leading to higher stability of the bio-oil. Electrocatalytic hydrogenation of the bio-oil has shown promising results to increase the content of hydrocarbons and increased pH by removing the carbonyl group-containing compounds from the bio-oil. The bio-oil can also be upgraded to other clean fuels, such as H2 using steam reforming approach, has been critically reviewed. Basic principles of the processes and effects of different parameters on bio-oil upgrading are thoroughly discussed. In addition, techno-economic analysis, policy analysis, challenges and future recommendations related to downstream processes are provided in the article. Overall, this review article provides critical information about downstream bio-oil upgrading and production of other high value-added fuels.
机译:从生物质热解和水热液化产生的生物油被认为是耗尽化石燃料的最可持续的替代品。然而,差的生物油性质,例如高粘度,固体颗粒的存在,低热值和高不稳定性的粘度是限制用作燃料的用途。使用不同方法可以显着改善生物油性能,例如催化升级,生物质预处理和下游生物油升级。本文侧重于广泛使用的下游生物油升级方法,例如加氢处理,溶剂加法,乳化,微滤和电催化氢化。使用非极性溶剂或使用表面活性剂制备乳液的生物油升级已经显示出热值的显着增加,并且生物油的粘度显着降低。另一方面,使用膜的生物油的过滤可以从生物油中除去炭颗粒和碱和碱土金属,从而导致生物油的稳定性更高。生物油的电催化氢化已经显示有望的结果,通过从生物油中除去含羰基化合物来增加烃的含量和增加的pH。生物油也可以升级到其他清洁燃料,例如使用蒸汽重整方法,如H2,已经受到严格审查。彻底讨论了不同参数对生物油升级的过程和影响的基本原理。此外,文章提供了与下游进程相关的技术经济分析,政策分析,挑战和未来建议。总体而言,本综述文章提供有关下游生物油升级和生产其他高增值燃料的关键信息。

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