利用微藻生物量合成适销产品。第五部分:利用微藻生物质生产喷气燃料

IF 0.7 Q4 ENGINEERING, CHEMICAL
Yu. V. Samoylova, K. N. Sorokina, V. N. Parmon
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引用次数: 0

摘要

综述了利用微藻生物质生产航空燃料的研究进展。介绍了利用微藻生物质生产生物喷气燃料应达到的现代标准。讨论了利用微藻合成喷气燃料的主要方法,即油制喷气、气制喷气和糖制喷气,以及通过生物质的综合转化生产该燃料和其他有价值产品。介绍了微藻生物质合成的生物燃料与常规石油燃料混合使用的潜在用途数据。给出了在现代航空中使用这种替代燃料的前景的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Use of Microalgae Biomass to Synthesize Marketable Products. Part 5: Production of Jet Fuel from Microalgae Biomass

Use of Microalgae Biomass to Synthesize Marketable Products. Part 5: Production of Jet Fuel from Microalgae Biomass

The review discusses the production of jet fuel from microalgae biomass. The modern standards that should be met by biojet fuel produced from microalgae biomass are described. The main methods for synthesizing jet fuel from microalgae, namely, the oil-to-jet, gas-to-jet, and sugar-to-jet processes, and the production of this fuel along with other valuable products by the integrated conversion of biomass are discussed. Data on the potential use of biofuel synthesized from microalgae biomass in blends with conventional petroleum fuel are described. Data on the prospects for using this alternative fuel in modern aviation are given.

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来源期刊
Catalysis in Industry
Catalysis in Industry ENGINEERING, CHEMICAL-
CiteScore
1.30
自引率
14.30%
发文量
21
期刊介绍: The journal covers the following topical areas: Analysis of specific industrial catalytic processes: Production and use of catalysts in branches of industry: chemical, petrochemical, oil-refining, pharmaceutical, organic synthesis, fuel-energetic industries, environment protection, biocatalysis; technology of industrial catalytic processes (generalization of practical experience, improvements, and modernization); technology of catalysts production, raw materials and equipment; control of catalysts quality; starting, reduction, passivation, discharge, storage of catalysts; catalytic reactors.Theoretical foundations of industrial catalysis and technologies: Research, studies, and concepts : search for and development of new catalysts and new types of supports, formation of active components, and mechanochemistry in catalysis; comprehensive studies of work-out catalysts and analysis of deactivation mechanisms; studies of the catalytic process at different scale levels (laboratory, pilot plant, industrial); kinetics of industrial and newly developed catalytic processes and development of kinetic models; nonlinear dynamics and nonlinear phenomena in catalysis: multiplicity of stationary states, stepwise changes in regimes, etc. Advances in catalysis: Catalysis and gas chemistry; catalysis and new energy technologies; biocatalysis; nanocatalysis; catalysis and new construction materials.History of the development of industrial catalysis.
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