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Fermentable sugar production from wet microalgae residual after biodiesel production assisted by radio frequency heating

机译:从射频加热辅助的生物柴油生产后,来自湿法微藻残渣的可发酵糖生产

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In this study, the feasibility of comprehensive recovery of lipid and carbohydrate in wet microalgae Chlorella vulgaris was explored. First, four sets of enzyme combinations of alpha-Amylase, Amyloglucosidase and CTec2 were evaluated for hydrolysis efficiency on microalgae disrupted with radio frequency heating. Then, the most suitable combination was applied to raw microalgae and microalgae residual after biodiesel production, respectively, for saccharification. Adsorption kinetics of the optimized enzyme combination on the aforementioned three samples were determined and adsorption isotherm was analyzed by Freundlich equation. Morphology of microalgae was also investigated by scanning electron microscopy. A yield of reducing sugars in microalgae residual at 54.5% was obtained after 72 h saccharification. The results from enzyme adsorption kinetics, isotherm and SEM images were consistent with each other. This study demonstrated that the microalgae residual after biodiesel production could be used as carbohydrate feedstock for fermentable sugar production through simple enzymatic hydrolysis. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在这项研究中,探讨了湿法微藻中脂肪和碳水化合物综合复苏的可行性。首先,评价四组α-淀粉酶,淀粉葡萄糖苷酶和CTEC2的酶组合,用于用射频加热破坏微藻的水解效率。然后,在生物柴油生产后,将最合适的组合应用于生物柴油生产以进行糖化。测定了上述三个样品上优化酶组合的吸附动力学,并通过Freundlich方程分析了吸附等温线。通过扫描电子显微镜研究了微藻的形态学。在72小时糖化后获得54.5%在54.5%的微藻残留中还原糖的产量。来自酶吸附动力学,等温线和SEM图像的结果彼此一致。本研究证明,通过简单的酶水解,生物柴油产量的微藻残留物可用作可发酵的糖生产的碳水化合物原料。 (c)2020 elestvier有限公司保留所有权利。

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