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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 2063-2070.doi: 10.13292/j.1000-4890.202606.030

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褐藻发酵生产高附加值产物的研究进展

卞梦阳1,李雅淇2,金灿2,姚淑华1,石中亮1,曾祥峰2,李伟明2*   

  1. 1沈阳化工大学, 辽宁工业排放重金属处理与循环利用工程研究中心, 沈阳 110142; 2中国科学院沈阳应用生态研究所, 污染生态与环境工程重点实验室, 沈阳 110016)
  • 出版日期:2026-06-10 发布日期:2026-12-01

Advances in the production of high value-added products from brown algae fermentation.

BIAN Mengyang1, LI Yaqi2, JIN Can2, YAO Shuhua1, SHI Zhongliang1, ZENG Xiangfeng2, LI Weiming2*   

  1. (1Liaoning Engineering Research Center for Treatment and Recycling of Industrially Discharged Heavy Metals, Shenyang University of Chemical Technology, Shenyang 110142, China; 2Key Laboratory of Pollution Ecology and Environmental Engineering, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 化石能源短缺与环境问题日益严峻,海洋生物质因其可再生性和经济性,已成为生物能源与绿色化工的重要原料。褐藻生物质凭借其独特的化学组成,主要包括褐藻胶、甘露醇和褐藻糖胶等成分,成为高附加值生产的重要原料。其分解效率能够通过物理法、化学法、生物法及联合预处理法等得到进一步提升。本文系统综述了褐藻发酵生产高附加值产物的进展。研究表明,褐藻可通过暗发酵过程,结合高效菌株筛选与改造实现生物燃料(氢气、乙醇、丁醇等)的高效合成。同时,通过微生物选择、发酵条件调控(pH、温度、底物浓度)及纳米零价铁(nZVI)等添加剂的应用,增强关键酶(氢化酶、乙醇脱氢酶)活性进而显著提升产物产率与能源转化效率。文章最后总结了制约褐藻发酵产业化应用的关键因素,并对未来发展方向进行了展望。


关键词: 褐藻生物质, 发酵, 高附加值产物, 预处理, 工艺优化

Abstract: Fossil energy shortages and escalating environmental issues have spurred interest in marine biomass as a renewable and economically viable resource for bioenergy and green chemical production. Brown algae, characterized by their unique chemical composition of alginate, mannitol, and fucoidan, have emerged as critical feedstocks for high value-added applications. Physical, chemical, biological, and combined pretreatment methods can further enhance the decomposition efficiency. We systematically summarize advancements in brown algal fermentation for high value-added product production. Brown algae can efficiently synthesize biofuels (hydrogen, ethanol, and butanol) through dark fermentation, combined with strain screening and genetic engineering. Additionally, optimizing microbial selection, fermentation conditions (pH, temperature, substrate concentration), and incorporating additives such as nanoscale zero-valent iron (nZVI) can enhance the activities of key enzymes (hydrogenase and alcohol dehydrogenase), thereby improving product yield and energy conversion efficiency. We further identify the key factors restricting the industrial application of brown algae fermentation and propose future research directions.

Key words: brown seaweed biomass, fermentation, high value-added product, pretreatment, process optimization