Department of Chemical and Material Engineering, Tunghai University, Taichung, Taiwan.
Faculty of Biology, Universitas Gadjah Mada, Yogyakarta, Indonesia.
J Ind Microbiol Biotechnol. 2020 May;47(4-5):373-382. doi: 10.1007/s10295-020-02273-9. Epub 2020 Apr 2.
Microalgae are a potential solution to supersede fossil fuels and produce renewable energy. The major obstacle to the commercialization of microalgae-based biofuels is the high production cost, including nutritional requirements, photobioreactor design, and downstream processes. As for the photobioreactor design, open ponds have been adopted by major commercial plants for their economic advantages. Raceway is a popular type among open ponds. Nevertheless, the fluid dynamics of the raceway operation is quite complex. Software simulation based on Computational Fluid Dynamics is an upcoming strategy for optimizing raceway design. The optimization intends to affect light penetration, particle distribution, mass transfer, and biological kinetics. This review discusses how this strategy can be helpful to design a highly productive raceway pond-based microalgal culture system.
微藻是替代化石燃料和生产可再生能源的一种有潜力的方法。基于微藻的生物燃料商业化的主要障碍是高生产成本,包括营养需求、光生物反应器设计和下游工艺。至于光生物反应器设计,开放式池塘由于其经济优势而被主要商业工厂采用。跑道池是开放式池塘中较受欢迎的一种类型。然而,跑道池的流体动力学操作非常复杂。基于计算流体动力学的软件模拟是优化跑道池设计的一种新兴策略。该优化旨在影响光穿透、颗粒分布、质量传递和生物动力学。本文综述了该策略如何有助于设计高产的基于跑道池的微藻培养系统。