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Impact of Ethanol and N-Butanol Addition on Fuel Properties and Exhaust Emissions of a Stationary Diesel Engine

机译:添加乙醇和正丁醇对固定式柴油机燃料特性和废气排放的影响

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摘要

Ethanol and n-butanol are promising oxygenates to be used in blends with fossil diesel fuel because they have the potential to significantly decrease the particulate matter emissions of compression ignition engines. Moreover, they can be produced from renewable sources, which can help reduce dependence on fossil fuels. In this work, ethanol and n-butanol were each used in four blends with a standard ultra-low-sulfur diesel. The eight samples created are characterized by the same oxygen content per pair, obtained either by use of ethanol or n-butanol, respectively. The effects of each alcohol in terms of mixture stability, ignition quality, and other physicochemical properties were investigated. Finally, the effects of the eight samples on the performance and exhaust emissions of a typical stationary diesel engine operating at steady-state conditions were studied. The results showed that both alcohols contribute to the reduction of particulate matter emissions while causing minor changes to most physicochemical properties.
机译:乙醇和正丁醇是有希望的含氧化合物,可与化石柴油混合使用,因为它们有潜力显着减少压燃式发动机的颗粒物排放。此外,它们可以由可再生资源生产,这有助于减少对化石燃料的依赖。在这项工作中,乙醇和正丁醇分别与标准超低硫柴油混合使用了四种混合物。所产生的八个样品的特征是每对氧含量相同,分别通过使用乙醇或正丁醇获得。研究了每种醇在混合物稳定性,点火质量和其他理化特性方面的影响。最后,研究了这八个样品对在稳态条件下运行的典型固定式柴油发动机的性能和废气排放的影响。结果表明,两种醇均有助于减少颗粒物排放,同时对大多数理化性质造成较小的变化。

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