School of Water and Environment, Chang'an University, Xi'an 710054, Shaanxi, PR China.
School of Water and Environment, Chang'an University, Xi'an 710054, Shaanxi, PR China; Key Laboratory of Subsurface Hydrology and Ecological Effects in Arid Region, Ministry of Education, Chang'an University, PR China.
Bioresour Technol. 2024 Aug;406:130996. doi: 10.1016/j.biortech.2024.130996. Epub 2024 Jun 15.
Microalgae immobilization in alginate beads shows promise for biomass production and water pollution control. However, carrier instability and mass transfer limitations are challenges. This study introduces buoyant barium alginate bubble beads (BABB), which offer exceptional stability and enhance Chlorella vulgaris growth. In just 12 days, compared to traditional calcium alginate beads, BABB achieved a 20 % biomass increase while minimizing cell leakage and simplifying harvesting. BABB optimization involved co-immobilization with BG-11 medium, enrichment of CO in internal bubbles, and the integration of Fe nanoparticles (FeNPs). In the open raceway pond reactor, these optimizations resulted in a 39 % increase in biomass over 7 days compared to the unoptimized setup in closed flasks. Furthermore, enhancements in pigment and organic matter production were observed, along with improved removal of ammonia nitrogen and phosphate. These results highlight the overall advantages of BABB for microalgae immobilization, offering a scientific foundation for their effective utilization.
藻细胞固定化在藻酸盐珠中显示出在生物量生产和水污染控制方面的应用潜力。然而,载体不稳定和传质限制是挑战。本研究介绍了浮性的钡藻酸盐气泡珠(BABB),它提供了卓越的稳定性并促进了普通小球藻的生长。在短短 12 天内,与传统的钙藻酸盐珠相比,BABB 实现了 20%的生物量增加,同时最小化了细胞泄漏并简化了收获过程。BABB 的优化涉及与 BG-11 培养基的共固定化、内部气泡中 CO 的富集以及铁纳米粒子(FeNPs)的集成。在开放跑道池反应器中,与封闭瓶中的未优化设置相比,这些优化在 7 天内使生物量增加了 39%。此外,观察到色素和有机物的产量增加,以及氨氮和磷酸盐的去除得到改善。这些结果突出了 BABB 用于藻细胞固定化的总体优势,为其有效利用提供了科学基础。