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Achieving Fast Catalyst Light-Off from a Heavy-Duty Stoichiometric Natural Gas Engine Capable of 0.02 g/bhp-hr NO_X Emissions

机译:从能够为0.02g / bhp-hr No_x排放的重型化学计量天然气发动机实现快速催化剂熄灭

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Recently conducted work has been funded by the California Air Resources Board (CARB) to explore the feasibility of achieving 0.02 g/bhp-hr NO_X emissions for heavy-duty on-road engines. In addition to NO_X emissions, greenhouse gas (GHG), CO_2 and methane emissions regulations from heavy-duty engines are also becoming more stringent. To achieve low cold-start NO_X and methane emissions, the exhaust aftertreatment must be brought up to temperature quickly while keeping proper air-fuel ratio control; however, a balance between catalyst light-off and fuel penalty must be addressed to meet future CO_2 emissions regulations. This paper details the work executed to improve catalyst light-off for a natural gas engine with a close-coupled and an underfloor three-way-catalyst while meeting an FTP NO_X emission target of 0.02 g/bhp-hr and minimizing any fuel penalty. Two methods for achieving fast catalyst light-off were examined: 1) secondary air injection upstream of the front face of the close-coupled catalyst, and 2) operating half of the cylinders rich and the other half of the cylinders lean. Results from this study demonstrate a potential pathway to achieving ultra-low NO_X emissions and future GHG Phase 2 standards on heavy-duty vehicles.
机译:最近进行的工作已由加州空气资源委员会(CARB)提供资金,以探讨为重型役发动机实现0.02克/ BHP-HR NO_X排放的可行性。除了No_X排放,重型发动机的温室气体(GHG),CO_2和甲烷排放法规也变得更加严格。为了实现低冷启动No_X和甲烷排放,必须在保持适当的空燃比控制的同时快速迅速地提高排气后处理;然而,必须解决催化剂灯水和燃料罚款之间的平衡,以满足未来的CO_2排放法规。本文详细执行以改善催化剂起燃用于与天然气发动机的工作紧密连接和地板下三元催化剂同时满足为0.02g /马力 - 小时的一个FTP NO_X排放目标和最小化任何燃料损失。检查了两种实现快速催化剂熄灭的方法:1)紧密耦合催化剂前面上的上游的二次空气喷射,2)富有的汽缸的一半,圆柱体的另一半的汽缸。本研究的结果表明了在重型车辆上实现超低NO_X排放和未来温室气体2标准的潜在途径。

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