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Growth optimization of algae for biodiesel production

机译:用于生物柴油生产的藻类生长优化

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Aims: Algae are favourable as a biofuel source because of the potential high oil content and fast generation of biomass. However, one of the challenges for this technology is achieving high oil content while maintaining exponential or high growth of the organism. Introducing a two-stage reactor to optimize both growth and oil content of the algae could be a solution to this hurdle. The aim of this study was to determine the reactor design parameters of the first-stage reactor, which would optimize growth of two algal strains, Oocystis sp. and Amphora sp.Methods and Results: Growth kinetics were monitored by in vivo fluorescence and correlated to dry mass for both cultures under several environmental conditions during exponential growth. Temperatures of 25 and 30 degrees C and light intensities of 150 and 80 mu mol m(-2) s(-1) provided the most robust growth for Oocystis sp. and Amphora sp., respectively. Both strains showed optimized growth at a light : dark cycle of 16 : 08. At these conditions, the doubling rate for Oocystis sp. was 0 333 d(-1) and for Amphora sp. was 0 179 d(-1).Conclusions: For both cultures, growth rate was more dependent on light : dark cycle and temperature than light intensity. Both strains grew slower in this work than data reported in the literature, however agitation and air/CO2 sparging were not incorporated in the system under study. The highest doubling rate for Amphora sp. was observed near the maximum tolerable temperature, and it is suggested to grow this strain at 30 degrees C for a consistent high growth rate.Significance and Impact of Study: Optimized growth conditions were determined for two lipid producing strains identified in the Aquatic Species Program summary report. An optimized, first-stage growth reactor operating at these conditions would thus offer the maximum productivity for an algal biomass feed stream into a lipid-optimized second-stage reactor.
机译:目的:由于潜在的高油含量和快速产生生物质,藻类作为生物燃料来源是有利的。然而,该技术的挑战之一是在保持生物的指数或高生长的同时实现高含油量。引入两级反应器来优化藻类的生长和含油量可能是解决这一难题的方法。这项研究的目的是确定第一阶段反应器的反应器设计参数,该参数将优化两个藻种Oocystis sp。的生长。方法和结果:通过体内荧光监测生长动力学,并与两种培养物在指数生长过程中的几种环境条件下的干重相关。 25和30摄氏度的温度和150和80摩尔mol m(-2)s(-1)的光强度为Oocystis sp。提供了最强劲的增长。和Amphora sp。分别。两种菌株在16:08的明暗循环中均显示出优化的生长。在这些条件下,Oocystis sp。的倍增速率。是0 333 d(-1),对于Amphora sp。结论是:0 179 d(-1)。结论:两种培养物的生长速率都比光强度更依赖于光:黑暗周期和温度。两种菌株在这项工作中的生长都比文献中报道的数据要慢,但是,搅拌和空气/ CO2喷射未纳入正在研究的系统中。 Amphora sp。的最高倍增速率。在最高耐受温度附近观察到了这种细菌,建议将其在30摄氏度下生长以保持稳定的高生长速率。研究的意义和影响:确定了水生物种计划摘要中确定的两种产脂菌株的最佳生长条件报告。因此,在这些条件下运行的优化的一级生长反应器将为进入脂质优化的第二级反应器的藻类生物质进料流提供最大的生产率。

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