Graduate School, Khon Kaen University, Khon Kaen 40002, Thailand.
Department of Biotechnology, Faculty of Technology, Khon Kaen University, Khon Kaen 40002, Thailand.
Molecules. 2023 Apr 20;28(8):3603. doi: 10.3390/molecules28083603.
Improving biomass production with the utilization of low-cost substrate is a crucial approach to overcome the hindrance of high cost in developing large-scale microalgae production. The microalga sp. KKU-P1 was mixotrophically cultivated using unhydrolyzed molasses as a carbon source, with the key environmental conditions being varied in order to maximize biomass production. The batch cultivation in flasks achieved the highest biomass production of 3.81 g/L, under an initial pH 5.0, a substrate to inoculum ratio of 100:3, an initial total sugar concentration of 10 g/L, and a sodium nitrate concentration of 1.5 g/L with continuous light illumination at 23.7 W/m. The photobioreactor cultivation results indicated that CO supplementation did not improve biomass production. An ambient concentration of CO was sufficient to promote the mixotrophic growth of the microalga as indicated by the highest biomass production of 4.28 g/L with 33.91% protein, 46.71% carbohydrate, and 15.10% lipid. The results of the biochemical composition analysis suggest that the microalgal biomass obtained is promising as a source of essential amino acids and pigments as well as saturated and monounsaturated fatty acids. This research highlights the potential for bioresource production via microalgal mixotrophic cultivation using untreated molasses as a low-cost raw material.
利用低成本基质提高生物质产量是克服大规模微藻生产高成本障碍的关键途径。混养微藻 sp. KKU-P1 使用未经水解的糖蜜作为碳源进行混合营养培养,通过改变关键环境条件来最大限度地提高生物质产量。在摇瓶批式培养中,初始 pH 值为 5.0、基质接种比为 100:3、初始总糖浓度为 10 g/L、硝酸钠浓度为 1.5 g/L 且持续光照强度为 23.7 W/m 时,实现了最高的生物质产量 3.81 g/L。光生物反应器培养结果表明,CO 补充并没有提高生物质产量。环境 CO 浓度足以促进微藻的混合营养生长,最高生物质产量为 4.28 g/L,蛋白质含量为 33.91%,碳水化合物含量为 46.71%,脂质含量为 15.10%。生化成分分析结果表明,所获得的微藻生物质有望成为必需氨基酸和色素以及饱和和单不饱和脂肪酸的来源。本研究强调了利用未经处理的糖蜜作为低成本原料通过微藻混合营养培养生产生物资源的潜力。