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Zirconia-based ceramic, in-cylinder coatings and aftertreatment oxidation catalysts for reduction of emissions from heavy-duty diesel engines

机译:基于氧化锆的陶瓷,缸内涂层和后处理氧化催化剂,用于减少重型柴油发动机的排放

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Diesel engines are coming under stricter requirements to reduce emissions, particularly those of particulates and nitrogen oxides (NO_x). Recently, the U.S. EPA put into place staged requirements for heavy-duty diesel engines in urban bus applications which are aimed at ultimately bringing pre-1994 engines into particulate emissions compliance with 1994 heavy-duty on-road truck standards (0.1 g/bhp-hr TPM). This ref the need to control emissions in crowded urban environments. Zirconia-based ceramic combustion management coatings, although originally developed for adiabatic or low-heat-rejection engines to boost thermal efficiency, have also been shown to contribute to the reduction in diesel emissions. Heavy-duty transient testing of rebuilt 2-stroke MUI diesel bus engines equipped with stabilized zirconia-based coatings applied by thermal spray process have shown significant reduction in exhaust opacity relative to a baseline, uncoated engine. This was a reflection of the reduction in the dray carbon (soot)component of the particulate emission. The combination of the zirconia in-cylinder coatings and an efficient diesel oxidation catalyst h allowed the 0.1 g/bhp-hr TPM standard to be met for rebuilt pre-1994 MY 2-stroke bus engine. Testing also showed that N emissions could also be reduced significantly via fuel injection timing retard without substantial increase in particulate emissions. Several years of field experience have been gained in diesel engines in urban bus applications equipped with in-cylinder zirconia-based ceramic coatings and postmortem examination of coatings with over 100,000 miles service has shown very good durability.
机译:柴油发动机正在受到更严格的要求,以减少排放,特别是颗粒和氮氧化物(NO_X)。最近,美国EPA对城市总线应用中的重型柴油发动机进行了分阶段要求,该公司旨在最终将1994年的发动机符合1994年重型的路上卡车标准(0.1克/ BHP- HR TPM)。这方面需要控制拥挤的城市环境中的排放。氧化锆基陶瓷燃烧管理涂料虽然最初为绝热或低耐排水发动机推动热效率,但也已被证明有助于柴油排放的减少。重建的重建瞬态测试,配备有通过热喷涂工艺施加的稳定的基于氧化锆的涂层的2英尺的柴油机发动机表明,相对于基线未涂覆发动机的排气不透明度显着降低。这反映了颗粒发射的散发碳(烟灰)组分的减少。氧化锆罐涂层的组合和有效的柴油氧化催化剂H允许满足0.1g / BHP-HR TPM标准,用于重建1994年我的2行程总线发动机。测试还表明,通过燃料喷射正时延迟也可以显着减少N排放,而不会大幅增加颗粒排放。柴油发动机在城市总线应用中获得了几年的现场经验,配备了基于缸氧化锆型陶瓷涂料和涂层涂层的后期检查,具有超过100,000英里的服务表现出非常好的耐用性。

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