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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fatty acid rich effluent from acidogenic biohydrogen reactor as substrate for lipid accumulation in heterotrophic microalgae with simultaneous treatment
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Fatty acid rich effluent from acidogenic biohydrogen reactor as substrate for lipid accumulation in heterotrophic microalgae with simultaneous treatment

机译:产酸生物氢反应器中富含脂肪酸的流出物,作为脂质在异养微藻中积累的基质,同时进行处理

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摘要

Acid-rich effluent generated from acidogenic biohydrogen production process was evaluated as substrate for lipid synthesis by integrating with heterotrophic cultivation of mixed microalgae. Experiments were performed both with synthetic volatile fatty acids (SVFA) and fermented fatty acids (FFA) from biohydrogen producing reactor. Fatty acid based platform evidenced significant influence on algal growth as well as lipid accumulation by the formation of triglycerides through fatty acid synthesis. Comparatively FFA documented higher biomass and lipid productivity (1.42 mg/ml (wet weight); 26.4%) than SVFAs ((HAc + HBu + HPr), 0.60 mg/ml; 23.1%). Lipid profiles varied with substrates and depicted 18 types of saturated and unsaturated fatty acids with wide fuel and food characteristics. The observed higher concentrations of Chl b over Chl a supports the biosynthesis of triacylglycerides. Microalgae diversity visualized the presence of lipid accumulating species viz., Scenedesmus sp. and Chlorella sp. Integration of microalgae cultivation with biohydrogen production showed lipid productivity for biodiesel production along with additional treatment.
机译:通过与混合微藻的异养培养相结合,评估了产酸生物氢生产过程中产生的富酸废水作为脂质合成的底物。用来自生物制氢反应器的合成挥发性脂肪酸(SVFA)和发酵脂肪酸(FFA)进行了实验。基于脂肪酸的平台通过脂肪酸合成形成甘油三酸酯,证明对藻类生长以及脂质蓄积具有重大影响。相对而言,FFA记录的生物量和脂质生产率(SVC)为(HAc + HBu + HPr,0.60 mg / ml; 23.1%),高于SVFAs(1.42 mg / ml(湿重); 26.4%)。脂质谱随底物而变化,并描绘了18种具有广泛燃料和食物特性的饱和和不饱和脂肪酸。观察到的Chlb高于Chla的较高浓度支持甘油三酸酯的生物合成。微藻多样性可视化了脂质积累种的存在,即Scenedesmus sp.。和小球藻微藻培养与生物氢生产的结合显示出生物柴油生产的脂质生产率以及附加处理。

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