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Mixotrophic cultivation of Chlorella vulgaris using industrial dairy waste as organic carbon source

机译:利用工业乳制品废料作为有机碳源的小球藻混养

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摘要

Growth parameters and biochemical composition of the green microalga Chlorella vulgaris cultivated under different mixotrophic conditions were determined and compared to those obtained from a photoautotrophic control culture. Mixotrophic microalgae showed higher specific growth rate, final biomass concentration and productivities of lipids, starch and proteins than microalgae cultivated under photoautotrophic conditions. Moreover, supplementation of the inorganic culture medium with hydrolyzedcheese whey powder solution led to a significant improvement in microalgal biomass production and carbohydrate utilization when compared with the culture enriched with a mixture of pure glucose and galactose,due to the presence of growth promoting nutrients in cheese whey. Mixotrophic cultivation of C.vulgaris using the main dairy industry by-product could be considered a feasible alternative to reduce the costs of microalgal biomass production, since it does not require the addition of expensive carbohydrates to the culture medium
机译:确定在不同混合营养条件下培养的绿色微藻小球藻的生长参数和生化组成,并将其与从光合自养控制培养物中获得的参数进行比较。混合营养型微藻比光养型条件下培养的微藻显示出更高的比生长速率,最终生物量浓度以及脂质,淀粉和蛋白质的生产率。此外,与富含纯葡萄糖和半乳糖的混合物的培养物相比,添加水解的乳清乳清粉溶液的无机培养基导致微藻生物量的产生和碳水化合物利用的显着改善,这是因为奶酪中存在促进营养的养分乳清。可以认为,使用主要的乳品工业副产品对小菜蛾进行混养栽培是降低微藻生物质生产成本的可行替代方法,因为它不需要向培养基中添加昂贵的碳水化合物

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