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Catalytic thermochemical conversion of biomass for biofuel production: A comprehensive review

机译:用于生物燃料生产的生物质的催化热化学转化:综合综述

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The increasing demand for energy and diminishing sources of fossil fuels have called for the discovery of new energy sources. The effective energy conversion process of biomass is able to fulfill energy needs. Among the advanced biomass conversion technologies, thermochemical processes hold considerable potential approaches and needed for optimization. Thus, this study presents a comprehensive review of the research and development on the effects of catalysts on the thermochemical conversion of biomass to determine the progress of catalytic thermochemical conversion processes. The effects of catalysts on torrefaction, pyrolysis, hydrothermal liquefaction, and gasification are highlighted. Aspects related to reaction conditions, reactor types, and products are discussed comprehensively with the reaction mechanisms involved in the catalytic effects. Hydrogenation and hydrodeoxygenation can occur in the presence of zeolite catalysts during fast pyrolysis while producing highly aromatic bio-oil. A heterogeneous catalyst in liquefaction increases the hydrocarbon content and decreases viscosity, acid value, and oxygenated compounds in the bio-oil. Thus, expanding and enhancing knowledge about catalyst utilization in the thermochemical conversion technologies of biomass will play an important role in the generation of renewable and carbon-neutral fuels.
机译:对能源的需求不断增长,而化石燃料的来源日益减少,这就要求发现新的能源。生物质的有效能量转化过程能够满足能量需求。在先进的生物质转化技术中,热化学工艺具有相当大的潜在途径,并且需要进行优化。因此,本研究对催化剂对生物质热化学转化的影响的研究与开发进行了全面综述,以确定催化热化学转化过程的进展。突出了催化剂对焙干,热解,水热液化和气化的影响。与反应条件,反应器类型和产物有关的方面,与涉及催化作用的反应机理进行了全面讨论。加氢和加氢脱氧可以在快速热解过程中在沸石催化剂存在下发生,同时产生高度芳香的生物油。液化的非均相催化剂会增加烃含量,并降低生物油中的粘度,酸值和含氧化合物。因此,在生物质热化学转化技术中,扩大和增强有关催化剂利用的知识将在可再生和碳中和燃料的产生中发挥重要作用。

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