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Assessment of diesel engine performance when fueled with biodiesel from algae and microalgae: An overview

机译:用藻类和微藻类生物柴油作为燃料时柴油发动机性能的评估:概述

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Biofuels derived from algae can have lower impact on the environment and the food supply than biofuels produced from crops. The strain selection, cultivation method, culture conditions and the chemical composition strongly influences the production costs but also the engine's performance and the exhaust gas emissions. The scope of this paper is to make a critical review about the impact of the use of biofuels produced from (micro) algae to power diesel engines. There is a huge disparity in the amount of papers published for algae culture, oil extraction, and biodiesel production compared to reporting performance on diesel engines. This paper presents an analysis of the papers published in this specific field. Generally, a reduction of torque and power output is reported. A wide range of blends up to B50 but also pure biodiesel has been tested. The blend showing results closest to diesel fuel appears to be B20. Several pollutants can be reduced if biofuels from different strains are used but an increase in NOx is generally reported, associated to higher temperatures in the combustion chamber. The use of emulsions instead of blends or neat biodiesel reveals a promising alternative with important reductions of CO2 and NOx. However, the few reports for engine tests present some contradictions, or are lacking important information about the experiments. The assessment of biodiesel produced from algae or microalgae is a field hardly explored and until today some reference papers contain contradictory results or non well studied behaviors as this survey demonstrates.
机译:与农作物生产的生物燃料相比,藻类生产的生物燃料对环境和粮食供应的影响较小。菌株的选择,培养方法,培养条件和化学成分会极大地影响生产成本,还会影响发动机的性能和废气排放。本文的范围是对使用(微)藻类生产的生物燃料为柴油发动机提供动力的影响进行严格的审查。与报告柴油机性能相比,有关藻类培养,采油和生物柴油生产的论文数量差距很大。本文对在该特定领域发表的论文进行了分析。通常,据报道扭矩和功率输出降低。已测试了高达B50的各种混合物,而且还测试了纯生物柴油。显示结果最接近柴油的混合气似乎是B20。如果使用来自不同菌株的生物燃料,则可以减少几种污染物,但是据报道,随着燃烧室温度的升高,NOx的增加。使用乳液代替共混物或纯生物柴油揭示了一种有希望的替代方法,它可以显着减少CO2和NOx。但是,很少有关于发动机测试的报告存在一些矛盾,或者缺少有关实验的重要信息。从藻类或微藻类生产的生物柴油的评估是一个几乎没有探索过的领域,直到今天,一些参考文件包含了矛盾的结果或如本调查所示未经充分研究的行为。

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