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Updated: Sep 29, 2026

Biogas Purification through the use of a Microalgae-Bacterial System in Semi-Industrial High Rate Algal Ponds
Published on: March 22, 2024
Self-sustaining microalgae-laden hydrogel enables high-efficiency biomass production
Hai Liu1, Ning Ding1, Minwen Jiang1
1College of Biomass Science and Engineering, Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, National Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University, Chengdu 610065, China.
Abstract:
Engineered living materials integrated with photosynthetic microalgae represent an attractive exploration for sustainable biomanufacturing, as these systems couple light-driven biomass production and CO2 assimilation. However, the translation of these systems toward next-stage applications remains largely constrained by the lack of scalable and resource-efficient implementation strategies. Here, we report a biogenic microalgae-laden hydrogel (BMH) platform fabricated via extrusion-based 3D bioprinting for efficient biomass production with improved spatial utilization. Compared to conventional liquid cultivation, the self-sustaining hydrogel system formulated from natural polysaccharides and nutrient medium enables homogeneous cell distribution at centimeter scale under continuous illumination, and enhances the biomass accumulation of Chlorella sp., a fast-growing edible microalgae, by 4.35-fold. Transcriptomic analyses reveal coordinated upregulation of genes associated with photosynthesis pathways, elucidating the molecular mechanism for improved light harvesting and carbon assimilation. This study establishes an efficient platform for high-density microalgal cultivation with scalability potential, advancing the design of photosynthetic living materials and opening new opportunities for sustainable biomanufacturing in food and energy fields.
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