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首页> 外文期刊>Applied Energy >Mixture of glycerol ethers as diesel bio-derivable oxy-fuel: Impact on combustion and emissions of an automotive engine combustion system
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Mixture of glycerol ethers as diesel bio-derivable oxy-fuel: Impact on combustion and emissions of an automotive engine combustion system

机译:甘油醚作为柴油生物衍生含氧燃料的混合物:对汽车发动机燃烧系统的燃烧和排放的影响

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The effects on combustion and emissions of a bio-derivable glycerol-based ethers mixture (GEM) usable in a compression ignition engine have been investigated. The tests were performed on a single cylinder research engine derived from a Euro5 compliant four cylinder engine for passenger car application. The experimental methodology has considered the comparison among three fuels: (1) a reference diesel; (2) a mixture consisting of 90 vol.% diesel and 10 vol.% of GEM; (3) a blend consisting of 80vol.% diesel and 20 vol.% of GEM. The tests were carried out in some characteristic key points of the New European Driving Cycle (NEDC) emission homologation cycle. These points allowed an estimation of the blend impact on the performance of a real four-cylinder engine (one cylinder of which is represented by the research engine) over the NEDC. Both regulated and unregulated pollutant emissions have been measured during the test campaign. In particular, apart from the regulated emissions, the concentration of aldehydes and carbonaceous particles at the engine exhaust has been determined in some test points. The results have shown the possibility to burn the diesel/GEM blends without any significant impact on combustion characteristics and efficiencies, while, due to the oxygen content of the GEM, important benefits were obtained in terms of Nox-PM trade-off and emissions of particles at the exhaust. At medium-high load conditions, there was a maximum decrease of about 70% in terms of PM emissions compared to a slight increase of Nox. At low load conditions, a maximum increase of HC and CO of about 50% has been detected. Regarding the emissions of aldehydes, the results showed that the GEM addition favoured the increasing of carbonyl compounds at low engine loads, while at higher loads no significant variation has been detected bv burning GEM.
机译:已经研究了可用于压燃式发动机的生物可衍生甘油基醚混合物(GEM)对燃烧和排放的影响。测试是在单缸研究型发动机上进行的,该发动机是从符合Euro5要求的四缸发动机应用于乘用车的。实验方法已经考虑了三种燃料之间的比较:(1)参考柴油; (2)由90%(体积)的柴油和10%(体积)的GEM组成的混合物; (3)由80%(体积)的柴油和20%(体积)的GEM组成的混合物。测试是在新欧洲行驶周期(NEDC)排放认证周期的一些关键特征点上进行的。这些点允许估算混合气对NEDC上实际四缸发动机(其中一个缸由研究发动机代表)的性能的影响。在测试过程中已测量了受管制和不受管制的污染物排放。特别是,除了规定的排放量外,在某些测试点还确定了发动机排气中醛和碳质颗粒的浓度。结果表明,可以燃烧柴油/ GEM混合物而不会对燃烧特性和效率产生任何重大影响,而由于GEM中的氧含量,在Nox-PM的权衡和排放方面获得了重要的好处。排气处有颗粒。在中等高负荷条件下,与PM排放量略有增加相比,PM排放量最大减少约70%。在低负载条件下,已检测到HC和CO的最大增加量约为50%。关于醛的排放,结果表明,在低发动机负荷下,GEM的添加有利于羰基化合物的增加,而在较高的负荷下,燃烧GEM并未发现明显的变化。

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