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Effects of Waste Cooking Oil Biodiesel Use on Engine Fuel Consumption and Emissions: a Study on the Impact on Oxidation Catalyst and Particulate Filter

机译:废料烹饪油生物柴油对发动机燃料消耗和排放的影响 - 氧化催化剂抗冲击与颗粒过滤器的研究

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The wide use of biodiesel has been driven by its reduction potential on greenhouse emissions from diesel engines without significant technological modifications. In this study a diesel engine for non-road applications has been fuelled with Waste Cooking Oil biodiesel blended with commercial fossil fuel at 6% and 30% v/v. In line with literature trends, experimental results indicate a significant reduction of PM emissions and only a slight increase in NO_x emissions. This study has been focused on diesel emissions and in particular on the analysis of PM/NO2 ratio in presence of the Diesel Oxidation Catalyst (DOC). In fact, although the NO2/NOX ratio on raw exhaust is almost unaffected, the use of biodiesel shows a slight reduction of the NO-NO2 light-off temperature. This reduction can ensure more favorable operating conditions for the Diesel Particulate Filter (DPF), and has a positive effect on fuel consumption reduction. In order to deeply analyze these issues, a numerical model of an Aftertreatment system (AS) representing the a DOC and a DPF has been developed and validated with experimental data.
机译:在没有显着的技术修改的情况下,在柴油发动机的温室排放量减少潜力,因此广泛使用了生物柴油。在这项研究中,用于非公路应用的柴油发动机已经用垃圾烹饪油生物柴油混合在6%和30%v / v中混合的废物烹饪油生物柴油。符合文献趋势,实验结果表明PM排放的显着减少,仅略有增加NO_X排放。本研究专注于柴油排放,特别是在柴油氧化催化剂(DOC)存在下PM / NO2比的分析。事实上,尽管原始排气的NO2 / NOx比率几乎不受影响,但使用生物柴油显示出略微减少NO-NO 2光脱液温度。这种减少可以确保柴油颗粒过滤器(DPF)的更有利的操作条件,并且对燃料消耗减少具有积极影响。为了深入分析这些问题,已经开发了一种代表DOC和DPF的后处理系统(AS)的数值模型并用实验数据验证。

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