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Electrically Heated Catalysts for Cold-Start Emissions in Diesel Aftertreatment

机译:用于柴油后处理中的冷启动排放的电加热催化剂

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With a tighter regulatory environment, reduction of hydrocarbon (HC) and NO_x emissions during cold-start has emerged as a major challenge for diesel engines. In the complex diesel aftertreatment system, more than 90% of engine-out NO_x is removed in the underfloor SCR. However, the combination of low temperature exhaust and heat sink over DOC delays the SCR light-off during the cold start. In fact, the first 350 seconds during the cold light-duty FTP75 cycle contribute more than 50% of the total NO_x tailpipe emission due to the low SCR temperature. For a fast SCR light-off, electrically heated catalyst (EHC) technology has been suggested to be an effective solution as a rapid warm-up strategy. In this work, the EHC, placed in front of DOC, utilizes both electrical power and hydrocarbon fuel. The smart energy management during the cold-start was crucial to optimize the EHC integrated aftertreatment system. With the EHC warm-up strategy, the underfloor SCR reached the operation temperature within 100 seconds and achieved more than 90% conversion between 150 and 350 seconds during the cold FTP75. Furthermore, the integrated system provides an opportunity to improve fuel economy. In summary, the EHC has been demonstrated as an enabling technology for a clean and energy efficient NO_x aftertreatment system for diesel engines.
机译:通过更严格的监管环境,冷冻开始期间的碳氢化合物(HC)和NO_X排放已成为柴油发动机的主要挑战。在复杂的柴油后处理系统中,在底层SCR中除去超过90%的发动机输发NO_X。然而,低温排气和散热器的组合在冷启动期间延迟了SCR熄灭。事实上,由于低SCR温度,冷光型FTP75周期的前350秒涉及总NO_X尾管发射的50%以上。对于快速的SCR熄灭,已经提出了电加热的催化剂(EHC)技术是作为快速预热策略的有效解决方案。在这项工作中,将EHC放置在Doc面前,采用电力和烃燃料。冷启动期间的智能能量管理至关重要,优化EHC集成的后处理系统。通过EHC预热策略,下层克拉机械速度在100秒内达到了操作温度,并且在冷FTP75期间在150和350秒之间实现了超过90%的转换。此外,综合系统提供了改善燃油经济性的机会。总之,EHC已被证明为柴油发动机清洁和节能NO_X后处理系统的启用技术。

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