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Life Cycle Analysis on Fossil Energy Ratio of Algal Biodiesel: Effects of Nitrogen Deficiency and Oil Extraction Technology

机译:藻类生物柴油化石能比的生命周期分析:氮气缺乏和油提取技术的影响

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Life cycle assessment (LCA) has been widely used to analyze various pathways of biofuel preparation from “cradle to grave.” Effects of nitrogen supply for algae cultivation and technology of algal oil extraction on life cycle fossil energy ratio of biodiesel are assessed in this study. Life cycle fossil energy ratio ofChlorella vulgarisbased biodiesel is improved by growing algae under nitrogen-limited conditions, while the life cycle fossil energy ratio of biodiesel production fromPhaeodactylum tricornutumgrown with nitrogen deprivation decreases. Compared to extraction of oil from dried algae, extraction of lipid from wet algae with subcritical cosolvents achieves a 43.83% improvement in fossil energy ratio of algal biodiesel when oilcake drying is not considered. The outcome for sensitivity analysis indicates that the algal oil conversion rate and energy content of algae are found to have the greatest effects on the LCA results of algal biodiesel production, followed by utilization ratio of algal residue, energy demand for algae drying, capacity of water mixing, and productivity of algae.
机译:生命周期评估(LCA)已被广泛用于分析生物燃料制剂的各种途径,从“摇篮到坟墓”。本研究评估了本研究的藻类栽培和藻类油萃取藻类油萃取技术的影响。通过在氮气限制条件下生长藻类生长藻类生命周期化石能量比率通过生长藻类来改善藻类,而生物柴油生产与氮剥夺的生物柴油生成的生命周期化石能量比降低。与来自干燥藻类的油的提取相比,当不考虑油胶干燥时,亚临界阳离子的湿藻类从湿藻类中提取脂肪藻类的提高率为43.83%的化石能量比。敏感性分析的结果表明,发现藻类的藻类油转化率和能量含量对藻类生物柴油生产的LCA结果具有最大的影响,然后是藻类残留物的利用率,藻类干燥能力,水的能力藻类的混合和生产力。

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