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首页> 外文期刊>SAE International Journal of Fuels and Lubricants >Performance and Emission Characteristics of a Diesel Engine Fueled with Pyrolysis Oil-Ethanol Blend with Diesel and Biodiesel Pilot Injection
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Performance and Emission Characteristics of a Diesel Engine Fueled with Pyrolysis Oil-Ethanol Blend with Diesel and Biodiesel Pilot Injection

机译:柴油和生物柴油先导注入热解油-乙醇混合燃料的柴油机性能和排放特性

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The vast stores of biomass available worldwide have the potential to displace significant amounts of petroleum fuels. Fast pyrolysis of biomass is one of several possible paths by which we can convert biomass to higher value products. Pyrolysis oil (PO) derived from wood has been regarded as an alternative fuel to be used in diesel engines. However, the use of PO in a diesel engine requires engine modifications due to the low energy density, high acidity, high viscosity, and low cetane number of PO. Therefore, PO should be blended or emulsified with other fuels that have a high cetane number or used through pilot injection. PO has poor miscibility with light petroleum fuel oils; the most suitable candidate fuels for direct fuel mixing are alcohol fuels. Early mixing with alcohol fuels has the added benefit of significantly improving the storage and handling properties of the PO. For separate injection co-firing, a PO-ethanol blend can be fired through diesel or biodiesel pilot injection in a dual-injection diesel engine. In this study, the performance and emission characteristics of a dual-injection diesel engine fueled with diesel & biodiesel (pilot injection) and PO-ethanol blend (main injection) were experimentally investigated. Results showed that although stable engine operation was possible with dual injection, the fuel conversion efficiency was slightly decreased compared to that of diesel and biodiesel combustion. Regarding the exhaust emissions, THC & CO emissions were slightly increased and NOx & soot emissions were significantly decreased due to the high water content and oxygen content in the PO-ethanol blend.
机译:世界范围内可利用的大量生物质储备具有取代大量石油燃料的潜力。生物质的快速热解是我们可以将生物质转化为高价值产品的几种可能途径之一。源自木材的热解油(PO)被视为柴油发动机的替代燃料。然而,由于低能量密度,高酸度,高粘度和低十六烷值,PO在柴油发动机中的使用需要对发动机进行修改。因此,PO应该与十六烷值高或通过先导喷射使用的其他燃料混合或乳化。 PO与轻质石油燃料的混溶性差;直接混合燃料最合适的候选燃料是酒精燃料。尽早与酒精燃料混合具有显着改善PO的储存和处理性能的额外好处。对于单独的喷射共点火,可以在双喷射柴油机中通过柴油或生物柴油的先导喷射来燃烧PO-乙醇混合物。在这项研究中,以柴油和生物柴油(先导喷射)和PO-乙醇混合物(主喷射)为燃料的双喷射柴油发动机的性能和排放特性进行了实验研究。结果表明,尽管双喷可以使发动机稳定运行,但与柴油和生物柴油燃烧相比,燃料转换效率略有下降。关于废气排放,由于PO-乙醇混合物中的高水含量和氧含量,THC和CO排放量略有增加,NOx和烟灰排放量显着减少。

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