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Photosynthesis-fermentation hybrid system to produce lipid feedstock for algal biofuel

机译:光合作用-发酵混合系统生产用于藻类生物燃料的脂质原料

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To avoid bacterial contamination due to medium replacement in the expanded application of a photosynthesis-fermentation model, an integrated photosynthesis-fermentation hybrid system was set up and evaluated for algal lipid production using Chlorellaprotothecoides. In this system, the CO_2-rich off-gas from the fermentation process was recycled to agitate medium in the photobioreactor, which could provide initial cells for the heterotrophic fermentation. The cell concentration reached 1.03 ±0.07 g/L during photoautotrophic growth and then the concentrated green cells were switched to heterotrophic fermentation after removing over 99.5% of nitrogen in the medium by a nitrogen removal device. At the end of fermentation in the system, the cell concentration could reach as high as 100.51 ± 2.03 g/L, and 60.05 ± 1.38% lipid content was achieved simultaneously. The lipid yield (60.36 ± 2.63 g/L) in the hybrid system was over 700 times higher than that in a photobioreactor and exceeded that by fermentation alone (47.56 ± 7.31 g/L). The developed photosynthesis-fermentation hybrid system in this study was not only a feasible option to enhance microalgal lipid production, but also an environment-friendly approach to produce biofuel feedstock through concurrent utilization of ammonia nitrogen, CO_2, and organic carbons.
机译:为了避免在光合作用-发酵模型的扩展应用中由于培养基置换而引起的细菌污染,建立了集成的光合作用-发酵杂交系统,并使用原绿藻对藻类脂质的生产进行了评估。在该系统中,将发酵过程中富含CO_2的废气再循环到光生物反应器中,以搅动培养基,这可以为异养发酵提供初始细胞。在光合自养生长过程中,细胞浓度达到1.03±0.07 g / L,然后在用除氮装置去除培养基中超过99.5%的氮后,将浓缩的绿色细胞转换为异养发酵。在系统发酵结束时,细胞浓度可高达100.51±2.03 g / L,同时达到60.05±1.38%的脂质含量。混合系统中的脂质产量(60.36±2.63 g / L)比光生物反应器高700倍以上,超过了单独发酵时的脂质产量(47.56±7.31 g / L)。这项研究中开发的光合作用-发酵混合系统不仅是提高微藻类脂质生产的可行选择,而且还是一种通过同时利用氨氮,CO_2和有机碳来生产生物燃料原料的环境友好方法。

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