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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Coordinated regulation of nitrogen supply mode and initial cell density for energy storage compounds production with economized nitrogen utilization in a marine microalga Isochrysis zhangjiangensis
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Coordinated regulation of nitrogen supply mode and initial cell density for energy storage compounds production with economized nitrogen utilization in a marine microalga Isochrysis zhangjiangensis

机译:海洋微藻等张线虫的供氮化合物生产中氮供应方式与初始细胞密度的协调调节与节约氮的利用

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Lipids and carbohydrates are main energy storage compounds (ESC) of microalgae under stressed conditions and they are potential feedstock for biofuel production. Yet, the sustainable and commercially successful production of ESC in microalgae needs to consider nitrogen utilization efficiency. Here the impact of different initial cell densities (ICDs) on ESC accumulation in Isochrysis zhangjiangensis under two nitrogen supply modes (an initially equal concentration of nitrogen per-cell in the medium (N1) and an equal total concentration of nitrogen in the culture system (N2)) were investigated. The results demonstrated that the highest ESC yield (1.36 g L-1) at N1, which included a maximal nitrogen supply in the cultivation system, and the highest ESC content (66.5%) and ESC productivity per mass of nitrogen (3.28 g g(-1) (N) day(-1)) at N2, were all obtained under a high ICD of 8.0 x 10(6) cells mL(-1). Therefore I. zhangjiangensis qualifies for ESC-enriched biomass production with economized nitrogen utilization. (C) 2015 Elsevier Ltd. All rights reserved.
机译:脂质和碳水化合物是微藻在压力条件下的主要能量存储化合物(ESC),它们是生物燃料生产的潜在原料。然而,在微藻中可持续且商业上成功地生产ESC需要考虑氮的利用效率。在两种供氮模式下,不同初始细胞密度(ICD)对张江中华线的ESC积累的影响(培养基中每细胞最初的氮浓度(N1)和培养系统中总氮的总浓度相同( N2))被调查。结果表明,在N1处最高的ESC产量(1.36 g L-1),包括耕作系统中的最大氮供应,以及最高的ESC含量(66.5%)和每质量氮的ESC生产率(3.28 gg(- 1)在N2的(N)天(-1))都是在8.0 x 10(6)细胞mL(-1)的高ICD下获得的。因此,张江一号有资格利用氮的节约来富集ESC的生物质。 (C)2015 Elsevier Ltd.保留所有权利。

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