Evaluation of wavelength selective photovoltaic panels on microalgae growth and photosynthetic efficiency

被引:50
作者
Detweiler, Angela M. [1 ,2 ]
Mioni, Cecile E. [3 ]
Hellier, Katie L. [4 ]
Allen, Jordan J. [5 ]
Carter, Sue A. [4 ]
Bebout, Brad M. [1 ]
Fleming, Erich E. [6 ]
Corrado, Carley [4 ]
Prufert-Bebout, Leslie E. [1 ]
机构
[1] NASA, Ames Res Ctr, Exobiol Branch, Moffett Field, CA 94035 USA
[2] Bay Area Environm Res Inst, Petaluma, CA 94952 USA
[3] Calif State Univ Monterey Bay, Sci & Environm Policy Div, Seaside, CA 93955 USA
[4] Univ Calif Santa Cruz, Dept Phys, Santa Cruz, CA 95064 USA
[5] Colorado State Univ, Dept Atmospher Sci, Ft Collins, CO 80523 USA
[6] Calif State Univ Channel Islands, Dept Biol, Camarillo, CA 93012 USA
来源
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS | 2015年 / 9卷
基金
美国国家科学基金会;
关键词
Microalgae cultivation; Growth rate; Wavelength selective luminescent solar concentrators; Photovoltaic cells; Greenhouse; LIGHT-EMITTING-DIODES; SOLAR CONCENTRATORS; NITROGEN LIMITATION; ENERGY-CONVERSION; DUNALIELLA-SALINA; IRRADIANCE; ALGAE;
D O I
10.1016/j.algal.2015.03.003
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Large-scale cultivation of microalgal biomass in open systems can benefit fromthe lowcost of using natural sun-light, as opposed to artificial light, but may encounter problems with photoinhibition, high evaporation rates, potential contamination and high energy demand. Wavelength selective luminescent solar concentrator (LSC) panels can solve some of these problems when incorporated into low-cost sheltered structures for algal biomass production that concurrently produce their own electricity by harnessing select portions of solar energy, not used for algal growth. The LSC panels in this study contained a fluorescent dye, Lumogen Red 305, which transmits blue and red wavelengths used for photosynthesis with high efficiency, while absorbing the green wavelengths and re-emitting them as red wavelengths. The fluorescently generated red wavelengths are either transmitted to boost algal growth, or waveguided and captured by photovoltaic cells to be converted into electricity. We found that different strains of microalgae (currently used commercially) grew equally well under the altered spectral conditions created by the luminescent panels, compared to growth under the full solar spectrum. Thus this technology presents a new approach wherein algae can be grown under protected, controlled conditions, while the cost of operations is offset by the structure's internal electrical production, without any loss to algal growth rate or achievable biomass density. Published by Elsevier B.V.
引用
收藏
页码:170 / 177
页数:8
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