Civil Engineering Department, New Mexico State University, MSC 3CE, Las Cruces, NM 88003, USA.
Bioresour Technol. 2012 Dec;126:266-73. doi: 10.1016/j.biortech.2012.08.090. Epub 2012 Sep 5.
An internally illuminated photobioreactor (IIPBR) design is proposed for energy-efficient biomass production. Theoretical rationale of the IIPBR design and its advantages over the traditional bubble column photobioreactors (PBRs) are presented, followed by experimental results from prototype scale cultivation of freshwater and marine algal strains in an 18L IIPBR. Based on theoretical considerations, the proposed IIPBR design has the potential to support 160% higher biomass density and higher biomass productivity per unit energy input, B/E, than a bubble column PBR of equal incident area per unit culture volume. Experimental B/E values recorded in this study with fresh water algae and marine algae (1.42 and 0.37 gW(-1)d(-1), respectively) are at least twice as those reported in the literature for comparable species cultivated in bubble column and airlift PBRs.
提出了一种内部照明光生物反应器(IIPBR)设计,以实现节能的生物质生产。介绍了 IIPBR 设计的理论原理及其相对于传统气泡柱光生物反应器(PBR)的优势,然后介绍了在 18L IIPBR 中对淡水和海洋藻类菌株进行原型规模培养的实验结果。根据理论考虑,与单位培养液体积的等面积气泡柱 PBR 相比,所提出的 IIPBR 设计具有支持高出 160%的生物质密度和更高的单位能量输入生物质生产力(B/E)的潜力。本研究中用淡水藻类和海洋藻类记录的实验 B/E 值(分别为 1.42 和 0.37 gW(-1)d(-1))至少是文献中报道的可比物种在气泡柱和空气提升 PBR 中培养的两倍。