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Emissions of Regulated Pollutants and PAHs from Waste-cooking-oil Biodiesel-fuelled Heavy-duty Diesel Engine with Catalyzer

机译:带有催化剂的废烹饪油用生物柴油为燃料的重型柴油机的排放污染物和多环芳烃

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The development of biodiesels is being driven by the need for reducing emissions from diesel engines without modifying engines and for saving energy. The major obstacle to biodiesel commercialization is the high cost of raw materials. Biodiesel from waste cooking oil is an economical source and an effective strategy for reducing the raw material cost. Although biodiesels made from waste cooking oil have been previously investigated, PAH emissions from heavy-duty diesel engines (HDDEs) with catalyzer fueled with biodiesel from waste cooking oil and its blend with ultra-low sulfur diesel (ULSD) for the US-HDD transient cycle have seldom been addressed. Experimental results indicate that ULSD/WCOB (biodiesel made from waste cooking oil) blends had lower PM, HC, and CO emissions but higher CO2 and NOx emissions when compared with that of ULSD. Using ULSD/WCOB blends instead of ULSD decreased PAHs by 14.1%–53.3%, PM by 6.80%–15.1%, HC by 6.76%–23.5%, and CO by 0.962%–8.65% but increase CO2 by 0.318–1.43% and NOx by 0.384–1.15%. Using WCOB is an economical source and an effective strategy for reducing cost, and solves the problem of waste oil disposal.
机译:生物柴油的发​​展是由减少柴油发动机排放而不改变发动机和节约能源的需求所驱动的。生物柴油商业化的主要障碍是原材料的高成本。废弃食用油中的生物柴油是一种经济来源,也是降低原材料成本的有效策略。尽管以前已经研究过用废食用油制得的生物柴油,但对于废旧食用油及其与超低硫柴油(ULSD)混合的重型柴油发动机(HDDE)的催化活性成分中的PAH排放,该催化剂由废食用油中的生物柴油为燃料。周期很少得到解决。实验结果表明,与ULSD相比,ULSD / WCOB(由废食用油制成的生物柴油)混合物的PM,HC和CO排放量较低,但CO2和NOx排放量较高。使用ULSD / WCOB混合物代替ULSD可使PAHs降低14.1%-53.3%,PM降低6.80%-15.1%,HC降低6.76%-23.5%,CO降低0.962%-8.65%,但CO2升高0.318-1.43%, NOx降低0.384–1.15%。使用WCOB是降低成本的经济来源和有效策略,并解决了废油处理问题。

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