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A comprehensive review of renewable energy production from biomass-derived bio-oil

机译:生物量衍生生物油可再生能源生产综述

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Renewable energy production has attracted great attention due to public concerns about the depletion of fossil fuels and the growing emphasis on zero carbon emissions. Two main drivers have pushed renewable energy production to the top of the global agenda: climate change and energy security. Biomass is considered to be the only sustainable source of organic carbon on earth and the perfect equivalent to petroleum for the production of bioenergy, biofuels and fine chemicals with net zero carbon emission in a biorefinery. This review focuses on the potential of producing energy from different biomasses and describes technologies such as direct combustion, microwave technology, hydrothermal liquefaction, and fast pyrolysis to convert biomass into bioenergy. Herein, innovative scalable concepts are provided to perform microwave pyrolysis on a larger scale. Current research is mainly focused on the use of catalysts to enhance the process. Various parameters affect the biomass pyrolysis process, properties, and yields of products. These generally include the biomass source, biomass pretreatment (physical, chemical, and biological), the catalyst, the reaction atmosphere, temperature, the heating rate, and the pressure and vapor residence time. The study also shows how various types of reactors affect the bio-oil yield in the presence of a catalyst.
机译:由于公众对化石燃料的枯竭以及富含零碳排放的强调,可再生能源生产引起了极大的关注。两个主要司机将可再生能源生产推向全球议程的顶端:气候变化和能源安全。生物质被认为是地球上唯一的有机碳的可持续源,以及用于生产生物能源,生物燃料和精细化学品的石油,在生物晶体中净零碳排放。本综述重点介绍了从不同生物量产生能量的潜力,并描述了直接燃烧,微波技术,水热液化和快速热解等技术以将生物质转化为生物能源。这里,提供创新的可扩展概念以在更大的尺度上执行微波热解。目前的研究主要集中在使用催化剂以增强该过程。各种参数会影响生物量热解过程,性质和产量的产量。这些通常包括生物质源,生物质预处理(物理,化学和生物),催化剂,反应气氛,温度,加热速率和压力和蒸汽停留时间。该研究还表明了各种类型的反应器在催化剂存在下影响生物油产量。

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