Environmental Science & Technology · 2015 · 23 citations · 37 references
EngineeringBioenergyAlgal BiotechnologyPhotobiologyBiomass DensityOptimal IntensityAlgal BiomassEnvironmental MicrobiologyBiomass UtilizationAquatic BiofuelsIntegrated Slab WaveguidesStacked Waveguide PhotobioreactorBiomanufacturingAlgal CultivationEnvironmental EngineeringBiotechnologyThin-light-path Stacked PhotobioreactorMicrobiologyMedicineThin-light-path Photobioreactor
Production of competitive microalgal biofuels requires development of high volumetric productivity photobioreactors (PBRs) capable of supporting high-density cultures. Maximal biomass density supported by the current PBRs is limited by nonuniform distribution of light as a result of self-shading effects. We recently developed a thin-light-path stacked photobioreactor with integrated slab waveguides that distributed light uniformly across the volume of the PBR. Here, we enhance the performance of the stacked waveguide photobioreactor (SW-PBR) by determining the optimal wavelength and intensity regime of the incident light. This enabled the SW-PBR to support high-density cultures, achieving a carrying capacity of OD730 20. Using a genetically modified algal strain capable of secreting ethylene, we improved ethylene production rates to 937 μg L(-1) h(-1). This represents a 4-fold improvement over a conventional flat-plate PBR. These results demonstrate the advantages of the SW-PBR design and provide the optimal operational parameters to maximize volumetric production.
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Liliana Rodolfi, Graziella Chini Zittelli, Niccoló Bassi et al. · Biotechnology and Bioengineering · 2008 · 2.8K citations
Low‐cost Photobioreactor, Thirty Microalgal Strains, Engineering +15
Recovery of microalgal biomass and metabolites: process options and economics
E. Molina Grima, El‐Hassan Belarbi, F.G. Acién et al. · Biotechnology Advances · 2002 · 2.2K citations
An Outlook on Microalgal Biofuels
René H. Wijffels, María J. Barbosa · Science · 2010 · 1.8K citations · Full text