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首页> 外文期刊>Biofuel Research Journal >Simultaneous effect of nitrate (NO3-) concentration, carbon dioxide (CO2) supply and nitrogen limitation on biomass, lipids, carbohydrates and proteins accumulation in Nannochloropsis oculata
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Simultaneous effect of nitrate (NO3-) concentration, carbon dioxide (CO2) supply and nitrogen limitation on biomass, lipids, carbohydrates and proteins accumulation in Nannochloropsis oculata

机译:硝酸盐(NO3-)浓度,二氧化碳(CO2)的供应和氮限制对拟南芥中生物量,脂质,碳水化合物和蛋白质积累的同时影响

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Biodiesel from microalgae is a promising technology. Nutrient limitation and the addition of CO2 are two strategies to increase lipid content in microalgae. There are two different types of nitrogen limitation, progressive and abrupt limitation. In this work, the simultaneous effect of initial nitrate concentration, addition of CO2, and nitrogen limitation on biomass, lipid, protein and carbohydrates accumulation were analyzed. An experimental design was established in which initial nitrogen concentration, culture time and CO2 aeration as independent numerical variables with three levels were considered. Nitrogen limitation was taken into account as a categorical independent variable. For the experimental design, all the experiments were performed with progressive nitrogen limitation. The dependent response variables were biomass, lipid production, carbohydrates and proteins. Subsequently, comparison of both types of limitation i.e. progressive and abrupt limitation, was performed. Nitrogen limitation in a progressive mode exerted a greater effect on lipid accumulation. Culture time, nitrogen limitation and the interaction of initial nitrate concentration with nitrogen limitation had higher influences on lipids and biomass production. The highest lipid production and productivity were at 582 mgL-1 (49.7 % lipid, dry weight basis) and 41.5 mgL-1d-1, respectively; under the following conditions: 250 mgL-1 of initial nitrate concentration, CO2 supply of 4% (v/v), 12 d of culturing and 2 d in state of nitrogen starvation induced by progressive limitation. This work presents a novel way to perform simultaneous analysis of the effect of the initial concentration of nitrate, nitrogen limitation, and CO2 supply on growth and lipid production of Nannochloropsis oculata, with the aim to produce potential biofuels feedstock.
机译:来自微藻类的生物柴油是一种有前途的技术。营养限制和添加二氧化碳是增加微藻类脂质含量的两种策略。氮限制有两种不同的类型:进行性和突然性氮。在这项工作中,分析了初始硝酸盐浓度,CO2添加和氮限制对生物量,脂质,蛋白质和碳水化合物积累的同时影响。建立了一个实验设计,其中考虑了初始氮浓度,培养时间和CO2通气作为具有三个水平的独立数值变量。氮限制被视为分类自变量。对于实验设计,所有实验均在进行性氮限制下进行。因果响应变量是生物量,脂质产生,碳水化合物和蛋白质。随后,比较了两种限制类型,即进行性限制和突然性限制。渐进模式下的氮限制对脂质积累具有更大的影响。培养时间,氮限制以及初始硝酸盐浓度与氮限制的相互作用对脂质和生物量的产生有较大影响。最高的脂质产量和生产率分别为582 mgL-1(49.7%脂质,以干重计)和41.5 mgL-1d-1。在以下条件下:初始硝酸盐浓度为250 mgL-1,CO2供给量为4%(v / v),培养12 d,在进行性限制导致的2 d氮饥饿状态下。这项工作提出了一种新颖的方法,可以同时分析硝酸盐的初始浓度,氮限制和CO2供应对拟南芥的生长和脂质生产的影响,目的是生产潜在的生物燃料原料。

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