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Effects of FAME biodiesel and HVORD on emissions from an older-technology diesel engine

机译:FAME生物柴油和HVORD对老式柴油发动机排放的影响

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摘要

The results of laboratory evaluations were used to compare the potential of two alternative, biomass-derived fuels as a control strategy to reduce the exposure of underground miners to aerosols and gases emitted by diesel-powered equipment. The effects of fatty acid methyl ester (FAME) biodiesel and hydrotreated vegetable oil renewable diesel (HVORD) on criteria aerosol and gaseous emissions from an older-technology, naturally aspirated, mechanically controlled engine equipped with a diesel oxidation catalytic converter were compared with those of widely used petroleum-derived, ultralow-sulfur diesels (ULSDs). The emissions were characterized for four selected steady-state conditions. When fueled with FAME biodiesel and HVORD, the engine emitted less aerosols by total particulate mass, total carbon mass, elemental carbon mass and total number than when it was fueled with ULSDs. Compared with ULSDs, FAME biodiesel and HVORD produced aerosols that were characterized by single modal distributions, smaller count median diameters, and lower total and peak concentrations. For the majority of test cases, FAME biodiesel and HVORD favorably affected nitric oxide (NO) and adversely affected nitrogen dioxide (NO2) generation. Therefore, the use of these alternative fuels appears to be a viable tool for the underground mining industry to address the issues related to emissions from diesel engines, and to transition toward more universal solutions provided by advanced engines with integrated exhaust after treatment technologies.
机译:实验室评估的结果用于比较两种替代生物质衍生燃料的潜力,以此作为减少地下采矿者暴露于柴油动力设备排放的气溶胶和气体的控制策略。比较了脂肪酸甲酯(FAME)生物柴油和加氢处理的植物油可再生柴油(HVORD)对采用柴油氧化催化转化器的较老技术,自然吸气,机械控制的发动机产生的标准气溶胶和气态排放物的影响,并比较了广泛使用的石油衍生的超低硫柴油(ULSD)。针对四个选定的稳态条件对排放进行了表征。当使用FAME生物柴油和HVORD燃料时,与使用ULSD燃料相比,发动机的总颗粒质量,总碳质量,元素碳质量和总数量排放的气溶胶更少。与超低硫柴油相比,FAME生物柴油和HVORD生产的气溶胶具有单峰分布,中位数直径较小,总峰浓度和峰浓度较低的特征。对于大多数测试用例,FAME生物柴油和HVORD会对一氧化氮(NO)产生有利影响,而对二氧化氮(NO2)产生不利影响。因此,使用这些替代燃料似乎是解决地下采矿业问题的可行工具,以解决与柴油机排放有关的问题,并向具有集成废气后处理技术的先进发动机提供的更通用解决方案过渡。

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