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首页> 外文期刊>Energy Conversion & Management >Optimization and lipid production enhancement of microalgae culture by efficiently changing the conditions along with the growth-state
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Optimization and lipid production enhancement of microalgae culture by efficiently changing the conditions along with the growth-state

机译:通过有效改变条件和生长状态来优化和提高微藻培养的脂质产量

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摘要

Specifically growth-state-based schemes for cultivation optimization of microalgae Chlorella sp. were researched for the lipid enhancement in biodiesel production, compared with common optimization experiments. The optimized conditions of initial cell density, light intensity and aeration flow in common optimization were about 0.45 cm~(-1) (in OD686, i.e. 0.15 g/L), 6000 lux and 0.2 vvm (mL mL~(-1) min~(-1)) respectively, taking into account the lipid yield and energy consumption. The maximum dry weight and lipid content were 1.2 g/L and 33.6% respectively. Then three specific schemes for cultivation conditions adjustment were conducted to study the effects of changing conditions along with growth state for the potential enhancement of biomass and lipid production. The results showed that excellent enhancement of both biomass dry weight of 1.9 g/L and lipid yield of 0.6 g/L was achieved. The new and specific cultivation method significantly improved the biomass and lipid production by 52.7% and 64.7% respectively, compared with the aforementioned three common optimization experiments. The GC-MS analysis indicated that C16-C18 components accounted for more than 90% of fatty acid, and the fatty acid had better properties than that in common cultivation.
机译:基于生长状态的计划,用于微藻小球藻的优化培养。与常见的优化实验相比,我们研究了生物柴油生产中脂质的增强作用。普通优化的初始细胞密度,光强度和曝气流量的优化条件约为0.45 cm〜(-1)(在OD686中,即0.15 g / L),6000 lux和0.2 vvm(mL mL〜(-1)min 〜(-1)),分别考虑脂质产量和能量消耗。最大干重和脂质含量分别为1.2 g / L和33.6%。然后进行了三种具体的栽培条件调整方案,以研究条件变化以及生长状态对生物量和脂质产量潜在增强的影响。结果表明,实现了1.9 g / L的生物量干重和0.6 g / L的脂质产量的优异提高。与上述三个常见的优化实验相比,新的和特定的培养方法分别将生物量和脂质的产量分别提高了52.7%和64.7%。 GC-MS分析表明,C16-C18成分占脂肪酸的90%以上,并且该脂肪酸具有比普通栽培更好的性能。

著录项

  • 来源
    《Energy Conversion & Management》 |2015年第1期|315-322|共8页
  • 作者单位

    School of Environmental Science and Engineering, Shandong University, No. 27 Shanda South Road, Jinan 250100, China;

    School of Environmental Science and Engineering, Shandong University, No. 27 Shanda South Road, Jinan 250100, China,Shandong Provincial Engineering Centre on Environmental Science and Technology, No. 17923 Jingshi Road, Jinan 250061, China;

    School of Environmental Science and Engineering, Shandong University, No. 27 Shanda South Road, Jinan 250100, China,Shandong Provincial Engineering Centre on Environmental Science and Technology, No. 17923 Jingshi Road, Jinan 250061, China;

    School of Environmental Science and Engineering, Shandong University, No. 27 Shanda South Road, Jinan 250100, China;

    School of Environmental Science and Engineering, Shandong University, No. 27 Shanda South Road, Jinan 250100, China;

    Department of Civil and Environmental Engineering, The University of Texas at San Antonio, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microalgae cultivation; Efficiently lipid production; Biodiesel; Conditions change based on growth-state; New cultivation method;

    机译:微藻栽培;有效的脂质生产;生物柴油条件根据增长状态而变化;新栽培方法;

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