首页> 外文会议>Emissions measurement and testing, 2009 >Evaluation of Biodiesel Blends on the Performance and Emissions of a Common-Rail Light-Duty Engine and Vehicle
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Evaluation of Biodiesel Blends on the Performance and Emissions of a Common-Rail Light-Duty Engine and Vehicle

机译:生物柴油共混物对普通轨道轻型发动机和车辆性能和排放的评估

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摘要

Today most of the European member states offer diesel fuel which contains fatty acid methylesters (biodiesel) at a range between 0.5 to 5% vol. In order to meet longer term objectives, the mixing ratio is expected to rise up to 10% vol. in the years to come. The question therefore arises, how current engine technologies, which were not originally designed to operate on biodiesel blends, perform at this relatively high mixing ratio. A number of experiments were therefore performed over several steady-state operation modes, using a 10% vol. biodiesel blend (palm oil feedstock) on a light-duty common-rail Euro 3 engine. The experiments included measurement of the in-cylinder pressure during combustion, regulated pollutants emissions and fuel consumption. The analysis showed that the blends tested present good fuel characteristics. Combustion effects were limited but changes in the start of ignition and heat release rate could still be identified. The palm-oil biodiesel resulted in both higher and lower smoke and NOx emissions over the engine map, depending on the operation point. This was attributed to effects of both the chemistry and the physical properties of the biodiesel. The detailed results collected on the engine bench were then compared against a Euro 3 common-rail light-duty vehicle driven on the chassis dynamometer, to also include the effect of typical diesel emission control system (EGR and oxidation catalyst). In addition to the palm biodiesel, an RME-diesel blend was also tested to examine the effects of a fuel with different characteristics. When used on the vehicle under transient engine operation, both biodiesel blends reduced PM emissions. Marginal effects on NOx over the certification test could be identified, while the palm-oil biodiesel gave higher NOx emissions over more transient driving cycles. The results of this study show that up to 10% biodiesels could be used on current diesel vehicles, without expecting much difference on their emission performance. Of course long-term effects of biodiesel use still need to be considered, further to the direct effects on diesel emissions.
机译:今天,大多数欧洲成员国提供的柴油中所含脂肪酸甲酯(生物柴油)的含量在0.5至5%的范围内。为了达到长期目标,混合比预计将上升至10%vol。在未来的几年中。因此,出现了一个问题,即最初并非设计用于在生物柴油混合物上运行的当前发动机技术如何以这种相对较高的混合比运行。因此,使用10%的体积,在几种稳态操作模式下进行了许多实验。轻型共轨Euro 3发动机上的生物柴油混合物(棕榈油原料)。实验包括燃烧过程中缸内压力的测量,规定的污染物排放和燃料消耗。分析表明,所测试的混合物具有良好的燃料特性。燃烧作用是有限的,但是仍然可以确定点火开始和放热率的变化。棕榈油生物柴油会导致整个发动机图产生更高和更低的烟雾和NOx排放,具体取决于运行点。这归因于生物柴油的化学和物理性质的影响。然后,将在发动机台架上收集的详细结果与在底盘测功机上驱动的Euro 3共轨轻型车辆进行了比较,还包括了典型柴油机排放控制系统(EGR和氧化催化剂)的影响。除棕榈生物柴油外,还对RME-柴油混合物进行了测试,以检验具有不同特性的燃料的效果。当在瞬态发动机运转的车辆上使用时,两种生物柴油混合物都能减少PM排放。可以确定通过认证测试对NOx的边际影响,而棕榈油生物柴油在更多的瞬态驾驶循环中产生了更高的NOx排放。这项研究的结果表明,目前的柴油车辆可以使用多达10%的生物柴油,而不会期望它们的排放性能有很大的不同。当然,除了对柴油机排放的直接影响外,还需要考虑生物柴油使用的长期影响。

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