Balancing Photosynthesis and Respiration Increases Microalgal Biomass Productivity during Photoheterotrophy on Glycerol

被引:46
作者
Grama, Borhane S. [1 ,3 ]
Agathos, Spiros N. [1 ,4 ]
Jeffryes, Clayton S. [1 ,2 ,5 ]
机构
[1] Catholic Univ Louvain, Bioengn Lab, Earth & Life Inst, Pl Croix Sud 2,Bte L07-05-19, B-1348 Louvain La Neuve, Belgium
[2] FNRS Belgium, Fonds Rech, 5 Rue Egmont, B-1000 Brussels, Belgium
[3] Univ Oum El Bouaghi, FSNV, BP358, Oum El Bouaghi 04000, Algeria
[4] Yachay Tech Univ, Sch Life Sci & Biotechnolgy, San Miguel De Urcuqui, Ecuador
[5] Lamar Univ, Dan F Smith Dept Chem Engn, POB 10053, Beaumont, TX 77710 USA
关键词
Mixotrophy; Phototrophic; PAM fluorometry; Photosynthesis; Organic substrate; Bioprocess; Wastewater treatment; Dactylococcus; MIXOTROPHIC GROWTH; FATTY-ACID; PHAEODACTYLUM-TRICORNUTUM; CHLORELLA-PROTOTHECOIDES; LIGHT-INTENSITY; CULTIVATION; ASTAXANTHIN; METABOLISM; ALGAE; YIELD;
D O I
10.1021/acssuschemeng.5b01544
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Glycerol was used as an organic substrate to enhance the biomass production rate of a Dactylococcus microalga during photoheterotrophy while simultaneously reducing the need for cell culture gas exchange. Photoheterotrophic cultivations were carried out at concentrations of 6, 30, and 150 mM glycerol in parallel with photoautotrophic and heterotrophic cultivations. The highest biomass productivity was with 30 mM glycerol, the concentration where the net oxygen exchange between the cells and the culture medium was minimized, thus implying a balance between respiration and photosynthesis and internal recycling of O-2 and CO2. The maximum specific growth rate and biomass productivity were subsequently increased by 43 +/- 9% and 108 +/- 16%, respectively, compared to the photoautotrophic cultivations. The net oxygen production rate could be modeled as a function of the light intensity, chlorophyll content, the photosynthetic efficiency as measured by PAM fluorometry, and the respiration rate. Glycerol addition decreased the cellular chlorophyll a content and the photosynthetic efficiency, but increased carbon fixation by respiration. These results show the addition of a waste product, e.g., glycerol from biodiesel, could be used as an algal bioprocess cosubstrate to reduce or eliminate the aeration energy demand while simultaneously increasing biomass production.
引用
收藏
页码:1611 / 1618
页数:8
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