首页> 美国卫生研究院文献>Molecules >Acetone Prospect as an Additive to Allow the Use of Castor and Sunflower Oils as Drop-In Biofuels in Diesel/Acetone/Vegetable Oil Triple Blends for Application in Diesel Engines
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Acetone Prospect as an Additive to Allow the Use of Castor and Sunflower Oils as Drop-In Biofuels in Diesel/Acetone/Vegetable Oil Triple Blends for Application in Diesel Engines

机译:丙酮展望作为添加剂以允许在柴油机/丙酮/植物油三重混合中使用蓖麻油和向日葵作为柴油中的生物燃料用于柴油发动机的应用

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摘要

The present paper investigates the feasibility of using acetone (ACE) in triple blends with fossil diesel (D) and straight vegetable oils (SVOs) as alternative fuel for diesel engines. In this respect, ACE is selected as an oxygenated additivedue to its favorable propertiesto be mixed with vegetable oils and fossil diesel. In fact, the very low kinematic viscosity allows reduces the high viscosity of SVOs. ACE’s oxygen content, low autoignition temperature, and very low cloud point and pour point values highlight its possibilities as an additive in D/ACE/SVO triple blends. Moreover, ACE can be produced through a renewable biotechnological process, an acetone–butanol–ethanol (ABE) fermentation from cellulosic biomass. The SVOs tested were castor oil (CO), which is not suitable for human consumption, and sunflower oil (SO), used as a standard reference for waste cooking oil. The viscosity measurement of the ACE/SVO double blend was considered crucial to choose the optimum proportion, which better fulfilled the specifications established by European standard EN 590. Moreover, some of the most significant physicochemical properties of D/ACE/SVO triple blends, such as kinematic viscosity, cloud point, pour point, and calorific value, were determined to assess their suitability as fuels. The blends were evaluated in a conventional diesel generator through the study of the following parameters: engine power, smoke emissions, and fuel consumption. Despite the low calorific value of ACE limits its ratio in the mixtures due to engine knocking problems, the experimental results reveal an excellent performance for the blends containing up to 16-18% of ACE and 22-24% of SVO. These blends produce similar engine power as to fossil diesel, but with slightly higher fuel consumption. Considerable reductions in emissions of air pollutants, as well as excellent cold flow properties are also obtained with these triple blends. In summary, the use of these biofuels could achieve a substitution of fossil diesel up to 40%, independently on the SVO employed.
机译:本文调查了使用丙酮(ACE)在三重共混物中使用丙酮(ACE)与化石柴油(D)和直植物油(SVOS)作为柴油发动机的替代燃料。在这方面,将ACE选择为含氧加入物与其有利的性质与植物油和化石柴油混合。实际上,非常低的运动粘度允许降低SVO的高粘度。 ACE的氧气含量,低自燃温度和非常低的浊点和倾点值突出了其作为D / ACE / SVO三重混合中的添加剂的可能性。此外,可以通过可再生的生物技术方法,从纤维素生物质的丙酮 - 丁醇 - 乙醇(ABE)发酵来生产ACE。测试的SVOS是蓖麻油(CO),其不适合人类消费,葵花籽油(SO),用作废物烹饪油的标准参考。 Ace / SVO双共混物的粘度测量被认为是至关重要的,以选择最佳比例,这更好地满足了欧洲标准EN 590所建立的规格。此外,D / ACE / SVO三重混合物的一些最显着的物理化学性质,例如作为运动粘度,浊点,倾点和热值,确定评估其适用性作为燃料。通过研究以下参数,在传统的柴油发电机中评估混合物:发动机电力,烟雾排放和燃料消耗。尽管ACE的低热量值限制了由于发动机敲击问题引起的混合物中的比例,但实验结果揭示了含有高达16-18%ACE和22-24%SVO的混合物的优异性能。这些混合物可以产生类似的发动机功率,即化石柴油,但燃料消耗略高。通过这些三重混合物也获得了空气污染物排放和优异的冷流动性能的大大减少。总之,这些生物燃料的使用可以在使用的SVO上独立地实现高达40%的化石柴油。

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