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Exhaust emissions and engine performance analysis of a marine diesel engine fuelledwith Parinari polyandra biodiesel–diesel blends

机译:船用柴油机Fuelledwith Parinari Polyandra生物柴油 - 柴油混合物的废气排放和发动机性能分析

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The sustainability of biodiesel adoption in diesel engines are dependent on its environmental friendliness relative to lower pollutant emissions. Biodiesel was produced from extracted Parinari polyandra oil via alkali catalyzed methanolysis. Performance and emission analysis of a diesel engine was conducted on a diesel engine, operated under different operating conditions, using varied Parinari polyandra biodiesel blends. Exhaust emissions, like total hydrocarbons, carbon dioxide, carbon monoxide, sulphur dioxide, and nitrogen oxides were measured. The biodiesel properties were found to be similar to fossil diesel. B10 was found to be the optimal blend in improving the engine performance in terms of speed, power and thermal efficiency. B30 demonstrated stable performance characteristics without any modification of the diesel engine. The exhaust emissions from biodiesel blends combustion were found to be lower than that of diesel, except nitrogen oxides. High percentage reduction of greenhouse gases, carbon monoxide and carbon dioxide, was recorded at 81.7% and 65.7%, respectively. The utilization of Parinari polyandra biodiesel for engine application was found to be a viable means of heightening adoption of sustainable biofuels and minimizing pollutant emissions from the combustion of fossil fuels.
机译:生物柴油采用在柴油发动机的可持续性取决于其相对于污染物排放的环境友好性。生物柴油由碱催化甲醇溶液从提取的Parinari Polyandra油制成。柴油发动机的性能和排放分析在柴油发动机上进行,在不同的操作条件下操作,使用各种Parinari Polyandra生物柴油混合物。测量废气排放,如总碳氢化合物,二氧化碳,一氧化碳,二氧化硫和氮氧化物。发现生物柴油属性与化石柴油相似。 B10被发现是在速度,功率和热效率方面提高发动机性能的最佳混合。 B30证明了柴油发动机的任何修改的稳定性能特征。发现生物柴油混合物燃烧的废气排放量低于除氮氧化物外的柴油的排放。减少温室气体,一氧化碳和二氧化碳的高百分比分别以81.7%和65.7%记录。发现对发动机施用的Parinari Polyandra生物柴油的利用是一种可行的采用可持续生物燃料的可行方法,并从而最大限度地减少化石燃料燃烧的污染物排放。

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