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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Heterotrophy of filamentous oleaginous microalgae Tribonema minus for potential production of lipid and palmitoleic acid
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Heterotrophy of filamentous oleaginous microalgae Tribonema minus for potential production of lipid and palmitoleic acid

机译:丝状含量微藻纤维蛋白酶的异育症减去潜在生产脂质和棕榈酰酸

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摘要

Heterotrophic fermentation and high valuable co-product producing are thought to be effective ways to improve the economic viability and feasibility of commercial production of microalgae biofuels. This work reported the heterotrophic cultivation of Tribonema minus for lipid and palmitoleic acid (a novel functional fatty acid) production. Firstly, the heterotrophic ability of T. minus was identified for the first time with significant promotion in biomass and lipid productivity, and glucose and urea were then selected as the optimal carbon and nitrogen sources. Moreover, nutrient concentrations and culture conditions were optimized. Highest biomass and lipid productivity of 30.8 g L (1) and 730 mg L (1) d (1) were obtained respectively by adding 80 g L (1) glucose at once. In addition, 2 g L (1) urea, 0.8 g L (1) K2HPO4, 24 mg L (1) ammonium ferric citrate, initial pH of 6, and temperature of 27 degrees C were determined as the appropriate conditions for heterotrophic growth and lipid production. (C) 2017 Elsevier Ltd. All rights reserved.
机译:杂养发酵和高价值的共同产品被认为是改善微藻生物燃料商业生产经济可行性和可行性的有效方法。这项工作报告了脂质和棕榈酸(一种新型官能脂肪酸)生产的Tribonema减去的异养培养。首先,首次鉴定T.减去的异养能力,并在生物质和脂质生产率的显着促进中鉴定出葡萄糖和尿素作为最佳碳和氮源。此外,优化了营养浓度和培养条件。通过加入80g L(1)葡萄糖,分别通过加入80g L(1)葡萄糖,得到最高生物质和30.8g L(1)和730mg1(1)D(1)的脂质生产率。此外,2g L(1)尿素,0.8g(1)k2HPO4,24mg L(1)柠檬酸氢盐,初始pH值和27℃的温度被确定为异养生长的适当条件脂质生产。 (c)2017 Elsevier Ltd.保留所有权利。

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