Affiliation:
1. grid.265231.1 0000 0004 0532 1428 Department of Chemical and Material Engineering Tunghai University Taichung Taiwan
2. grid.8570.a Faculty of Biology Universitas Gadjah Mada Yogyakarta Indonesia
3. grid.64523.36 0000 0004 0532 3255 Department of Chemical Engineering National Cheng Kung University Tainan Taiwan
4. grid.265231.1 0000 0004 0532 1428 Developmental Center for Circular Resources and Valorization Technology Tunghai University Taichung Taiwan
Abstract
Abstract
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.
Funder
Ministry of Science and Technology, Taiwan
Publisher
Oxford University Press (OUP)
Subject
Applied Microbiology and Biotechnology,Biotechnology,Bioengineering
Cited by
18 articles.
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