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生物质气化经费托路线生产航空煤油技术进展OA

Advances in jet fuel production from biomass gasification via Fischer-Tropsch synthesis

中文摘要英文摘要

利用石油作为原料生产航空煤油(简称航煤)面临环境污染严重及碳排放量高等挑战.绿色低碳的生物质气化并接力费托合成技术是生产可持续航空燃料(SAF)的新路径之一,具有原料适应性广、产物碳链可控、全生命周期碳减排80%以上等优势.本文概述了通过生物质气化生成合成气,后经费托合成制长链烃,再经加氢裂化及异构化转化为标准航煤的技术路线,重点阐述了国内外费托合成催化剂及反应器设计、产物选择性调控方面的主要研究进展及面临的关键挑战,并系统介绍了国家能源集团北京低碳清洁能源研究院近年来围绕上述SAF生产技术的创新成果.未来,该技术路线需进一步优化生物质气化工艺、开发高效费托催化剂,并通过集成绿氢与碳捕集(CCS)实现"负碳航煤",为航空"碳中和"及"废弃物-能源"循环经济提供技术支撑.

Conventional petroleum-based jet fuel urgently needs to be replaced by low-carbon,cleaner fuels due to issues such as high carbon emissions and environmental pollution.Biomass gasification combined with Fischer-Tropsch(FT)synthesis technology has become the core path of sustainable aviation fuel(SAF)due to its wide adaptability of raw materials,controllable carbon chain of products and more than 80%carbon reduction in the whole life cycle.In this review,we summarize the technical pathway for producing standard jet fuel from biomass,which involves biomass gasification to generate syngas,Fischer-Tropsch(FT)synthesis to produce long-chain hydrocarbons,followed by hydrocracking and isomerization for refining.The key advancements and challenges in FT synthesis catalysts,reactor design,and product selectivity control are discussed.Furthermore,we systematically introduce the innovation achievements of National Institute of Clean-and-Low-Carbon Energy in recent years regarding the above-mentioned SAF production technology.Future efforts should optimize biomass gasification process,develop high-efficiency catalysts,and integrate green hydrogen with carbon capture and storage(CCS)to produce"carbon negative aviation kerosene".This will provide critical support for aviation"carbon neutrality"and the"waste-to-energy"circular economy.

张明辉;张惠民;李景;刘意;秦绍东

北京低碳清洁能源研究院,北京 102211北京低碳清洁能源研究院,北京 102211北京低碳清洁能源研究院,北京 102211北京低碳清洁能源研究院,北京 102211北京低碳清洁能源研究院,北京 102211

化学化工

生物质气化费托合成合成气二氧化碳Fe/Co基催化剂航空煤油

biomass gasificationFischer-Tropsch synthesissyngascarbon dioxideFe/Co based catalystsjet fuel

《化工进展》 2026 (7)

3952-3963,封4,13

国家能源集团科技创新项目(GJNY-24-26)国家自然科学基金(22078006).

10.16085/j.issn.1000-6613.2025-1101

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