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Strategies for enhanced biomass and lipid production by Chlorella pyrenoidosa culture in starch processing wastewater

机译:小球藻培养提高淀粉加工废水中生物质和脂质产量的策略

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Starch wastewater contains various nutrients, as a potential medium for cultivating microalgae. In this study, strategies including wastewater treatments and mixing were investigated to enhance biomass and lipid production. The microalgae Chlorella pyrenoidosa performed normal growth in anaerobic digested and secondary treated starch wastewater. However, their lipid yields were very low (6.7 -22.9 mg L-1.d(-1)) due to the low biomass production or lipid content. Therefore, the strategy for mixing different treatment stages of starch wastewater was tested to improve algal growth and lipid accumulation. In comparison to blank culture, adding 50% acidified starch wastewater into anaerobic and secondary treated starch wastewater significantly increased biomass concentration by 78.1% (to 3.3 g L (-1)) and 105.2% (to 1.2 g L-1), while achieving higher lipid content to 18.7-28.0%. Moreover, the mixed culture improved the degree of saturated fatty acids (typically in palmitic and stearic acid). This provides a promising approach to improve algal lipid yield and quality using starch wastewater. (C) 2019 Elsevier Ltd. All rights reserved.
机译:淀粉废水中含有多种营养物质,是培养微藻的潜在培养基。在这项研究中,研究了包括废水处理和混合在内的策略,以提高生物量和脂质的产生。微藻小球藻小球藻在厌氧消化和二次处理的淀粉废水中可正常生长。但是,由于生物质产量或脂质含量低,它们的脂质产量非常低(6.7 -22.9 mg L-1.d(-1))。因此,测试了混合淀粉废水不同处理阶段的策略,以改善藻类生长和脂质积累。与空白培养相比,在厌氧和二次处理的淀粉废水中添加50%酸化的淀粉废水可显着提高生物量浓度,分别达到78.1%(至3.3 g L(-1))和105.2%(至1.2 g L-1)。较高的脂质含量至18.7-28.0%。此外,混合培养提高了饱和脂肪酸的含量(通常在棕榈酸和硬脂酸中)。这提供了使用淀粉废水提高藻类脂质产量和质量的有前途的方法。 (C)2019 Elsevier Ltd.保留所有权利。

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