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Effect of Nanoparticle on Cellular Growth and Lipid Production in Chlorella Vulgaris Culture

机译:纳米粒子对小球藻培养中细胞生长和脂质生成的影响

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摘要

Magnetic cobalt ferrite/silica nanoparticles (MSNs) and methyl functionalized MSNs (methyl-MSNs) were used to enhance lipid production in Chlorella vulgaris culture through enhancement of gas-water mass transfer and increased dissolved concentration of CO2. Methyl-MSNs enhanced CO2-water mass transfer rate better than MSNs, and 0.3 wt% methyl-MSNs are more effective than 0.1 wt% MSNs. In the cultivation experiment, 0.3 wt% methyl-MSNs yielded the highest dry cell weight and subsequently, the highest mass transfer rate. However, enhancement of mass transfer rate did not increase lipid content. The volumetric lipid productivity in C. vulgaris culture depends not only on intracellular lipid content but also on the cell mass concentration. Consequently, 0.1 wt% methyl-MSNs yielded the highest volumetric lipid productivity in C. vulgaris cultivation. (C) 2018 American Institute of Chemical Engineers
机译:磁性钴铁氧体/二氧化硅纳米粒子(MSN)和甲基官能化MSNS(甲基MSNS)通过提高气体 - 水传质并增加CO 2的溶解浓度来增强小球藻型培养物中的脂质生产。 甲基-SMSNS增强的CO 2-水传质比MSNS更好,0.3wt%甲基-SMSN更有效于0.1wt%MSN。 在培养实验中,0.3wt%甲基-SMNS产生最高的干细胞重量,随后产生最高的传质速率。 然而,提高传质率并未增加脂质含量。 v语言培养物中的体积脂质生产率不仅取决于细胞内脂质含量,还取决于细胞质量浓度。 因此,0.1wt%甲基-SMS在vulgaris培养中产生最高的体积脂质生产率。 (c)2018美国化学工程研究所

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