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Conversion of Exhaust Gases from Dual-Fuel (Natural Gas-Diesel) Engine under Ni-Co-Cu/ZSM-5 Catalysts

机译:在Ni-Cu-Cu / ZSM-5催化剂下将废气从双燃料(天然气 - 柴油)发动机转换

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Natural gas (NG), which consists of mostly methane, can be co-combusted with diesel fuel in existing compression ignition engines through dual fuel technology with reasonable engine modifications. The removal of short-chain alkanes (e.g. CH_4, C_2H_6 and C_3H_8) of a dual fuel (natural gas and diesel) engine raises a distinctive topic to the exhaust aftertreatment system (ATS). However, there are few studies reported based on tests with real engine exhaust. This present study focuses on the conversion of short-chain alkanes by Co, Ni and Cu/ZSM-5 catalysts, which are commonly used for oxidation/partial oxidation and reforming. These catalysts are tested with exhaust of a dual-fuel (natural gas and diesel) engine. The complicated and dynamic exhaust composition, determined by the engine loading and natural gas substitution, can result in different components in the exhaust and various conversions for species. Co-Ni-Cu/ZSM-5 had the highest conversion of CH_4 and non-methane hydrocarbon (NMHC) at 30000 h~(-1) space velocity (SV) when the engine was operated at 1000 RPM, 25% loading, 70% natural gas substitution. Significant amounts of CO and formaldehyde were generated by the dual fuel engine, but can be mostly converted starting at 450 °C. Methane conversion of up to 42% was attainable at a higher temperature of 500 °C by using Co-Ni-Cu/ZSM-5 in the aftertreatment system.
机译:由大多数甲烷组成的天然气(NG)可以通过具有合理发动机修改的双燃料技术与现有的压缩点火发动机中的柴油燃料共燃烧。去除双燃料(天然气和柴油)发动机的短链烷烃(例如CH_4,C_2H_6和C_3H_8)对排气后处理系统(ATS)引起了独特的话题。然而,几乎没有基于真实发动机排气的测试的研究。本研究侧重于CO,Ni和Cu / ZSM-5催化剂的短链烷烃的转化,其通常用于氧化/部分氧化和重整。用双燃料(天然气和柴油)发动机的废气测试这些催化剂。由发动机负载和天然气取代确定的复杂和动态的排气组合物可以导致排气中的不同部件和各种换算。当发动机以1000rpm运行时,CO-Ni-Cu / ZSM-5在30000h〜(-1)空间速度(SV)时,CH_4和非甲烷烃(NMHC)的转化率最高,25%负荷,70 %天然气替代。通过双燃料发动机产生大量的CO和甲醛,但可以在450℃下开始大致转化。通过在后处理系统中使用Co-Ni-Cu / ZSM-5,在500℃的较高温度下可获得高达42%的甲烷转化率。

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