CIESC Journal ›› 2025, Vol. 76 ›› Issue (10): 4976-4987.DOI: 10.11949/0438-1157.20250550

• Reviews and monographs • Previous Articles     Next Articles

Progress of molten salt-assisted thermochemical high-value conversion of biomass

Wenxuan CAO1(), Boyang WU2, Jun LI1, Tianji LIU1, Kuo ZENG1,2(), Haiping YANG1,2(), Hanping CHEN1,2   

  1. 1.School of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China
    2.China-EU Institute for Clean and Renewable Energy, Huazhong University of Science and Technology, Wuhan 430074, Hubei, China
  • Received:2025-05-15 Revised:2025-07-07 Online:2025-11-25 Published:2025-10-25
  • Contact: Kuo ZENG, Haiping YANG

熔融盐辅助生物质热化学高值化转化研究进展

曹文轩1(), 吴泊洋2, 李俊1, 刘天冀1, 曾阔1,2(), 杨海平1,2(), 陈汉平1,2   

  1. 1.华中科技大学能源与动力工程学院,湖北 武汉 430074
    2.华中科技大学中欧清洁与可再生能源学院,湖北 武汉 430074
  • 通讯作者: 曾阔,杨海平
  • 作者简介:曹文轩(2001—),男,硕士研究生,1820692947@qq.com
  • 基金资助:
    国家自然科学基金项目(52261135626);国家优秀青年科学基金项目(52422608);华中科技大学“交叉研究支持计划”项目(2024JCYC025)

Abstract:

With the rapid development of new energy under the “dual carbon” goals, molten salt-assisted high-value conversion of biomass has attracted widespread attention. Biomass, as the fourth largest energy source globally and the sole renewable carbon resource, stands as a prominent candidate for replacing traditional fossil fuels. Thermochemical conversion technologies enable the transformation of biomass into value-added products including bio-oil, syngas, and carbon materials, with molten salts serving as reaction media to enhance conversion efficiency and product value. The exceptional heat transfer capabilities of molten salts create optimal reaction environments for fast pyrolysis, significantly improving bio-oil yield. The strong catalytic activity of abundant alkali metal ions in molten salts facilitates chemical bond cleavage and formation, enabling targeted regulation of bio-oil composition and directional enrichment of high-value chemicals. During the gasification process, these alkali metal ions enhance gasification efficiency and promote syngas production, while the tunable composition and types of molten salts establish an optimal reaction environment for the production of syngas with controllable ratios. Furthermore, the etching effects and redox reactions between molten salts and carbon matrices optimize the physicochemical properties of carbon materials, particularly porosity. The innovative thermoelectric synergistic processes in molten salt media further elevate the added value of biochar products. This review systematically summarizes recent advancements in molten salt-assisted valorization of biomass, elucidates the critical roles and mechanisms of molten salts in different product-oriented conversion scenarios, and outlines the challenges and imperative research directions for molten salt-based thermochemical technologies.

Key words: molten salt, biomass, pyrolysis, gasification, bio-oil, syngas, carbon material

摘要:

随着“双碳”目标下新能源的迅猛发展,熔融盐辅助生物质高值化转化受到了广泛关注。鉴于此,综述了熔融盐在辅助生物质高值化转化领域的研究进展,讨论了面向不同产物制备场景下熔融盐的关键作用及机理,并总结概述了熔融盐热化学技术面临的挑战和亟需开展的研究方向,具体结果如下:熔融盐中丰富的金属阳离子能够催化化学键的断裂和形成,实现生物油中高值化学品的定向富集;灵活的熔融盐种类和组成可促进气化反应,提高合成气产量,还为比例可调控的合成气产出提供了良好的反应环境;此外,熔融盐刻蚀作用以及与炭基质的氧化还原反应改善了炭材料的孔隙率等理化特性,且熔融盐介质中热-电协同的新工艺可进一步提高生物炭材料的附加值。

关键词: 熔融盐, 生物质, 热解, 气化, 生物油, 合成气, 炭材料

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