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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Effects of n-Hexadecane Concentration and a Two-Stage Oxygen Supply Control Strategy on Arachidonic Acid Production by Mortierella Alpina ME-1
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Effects of n-Hexadecane Concentration and a Two-Stage Oxygen Supply Control Strategy on Arachidonic Acid Production by Mortierella Alpina ME-1

机译:正十六烷浓度和两阶段供氧策略对Mortierella Alpina ME-1生产花生四烯酸的影响

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摘要

Dissolved oxygen (DO) concentration is one of the most important factors affecting microbial cell growth and metabolite formation. In this study, a novel two-stage oxygen supply control strategy was applied to enhance oxygen transfer and promote the ability of arachidonic acid production by Mortierella alpina ME-1. Based on process analysis, a two-stage oxygen supply control strategy was proposed in arachidonic acid production in which n-hexadecane was added as an oxygen vector with a final concentration of 4 % at the first of cultivation, the agitation speed was controlled at 180 rpm in the first 96 h, and then switched to 100 rpm. This strategy was experimentally proven to be successful in arachidonic acid fermentation, relatively high arachidonic acid production (15.9 g/L) and dry cell weight (42.5 g/L) was achieved by applying this strategy. The arachidonic acid productivity (2.27 g/L/d) was also successfully improved by 50.3 % and 28.9 %, respectively, compared with fermentations in which agitation speed was kept constant at 180 rpm and under a two-stage agitation speed control strategy.
机译:溶解氧(DO)浓度是影响微生物细胞生长和代谢产物形成的最重要因素之一。在这项研究中,采用了一种新颖的两阶段供氧控制策略,以增强氧转移并提高高山被孢霉ME-1生成花生四烯酸的能力。在工艺分析的基础上,提出了花生四烯酸生产的两阶段供氧控制策略,即在培养的第一阶段加入正十六烷作为氧载体,终浓度为4%,搅拌速度控制在180℃。在最初的96小时内以rpm旋转,然后切换到100 rpm。实验证明该策略在花生四烯酸发酵中是成功的,通过应用该策略可以实现较高的花生四烯酸产量(15.9 g / L)和干细胞重量(42.5 g / L)。与将发酵速度保持恒定在180 rpm并采用两阶段搅拌速度控制策略的发酵相比,花生四烯酸的生产率(2.27 g / L / d)也分别成功提高了50.3%和28.9%。

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