首页> 外文会议>SAE World Congress and Exhibition >Development of Non-Copper Advanced Spinel Mixed Metal Oxides for Zero-Precious Metal and Ultra-Low Precious Metal Next-Generation TWC
【24h】

Development of Non-Copper Advanced Spinel Mixed Metal Oxides for Zero-Precious Metal and Ultra-Low Precious Metal Next-Generation TWC

机译:用于零贵金属和超低贵金属的非铜高级尖晶石混合金属氧化物的开发下一代TWC

获取原文

摘要

In the context of evolving market conditions, the three-way catalyst (TWC) design is entering an exciting new phase. It remains the main emission control strategy for gasoline powered vehicles; in the meantime a rapid period of evolving engine developments, the constrained tailpipe regulations and the material supply issues present a unique challenge to the catalyst developers. A key approach here is to achieve highly beneficial emission performance based on the ultra-low PGM levels. In this regard, we mainly focus on the materials design and have developed the advanced spinel oxides for zero precious metals (ZPGM) and synergized precious metals (SPGM) TWCs. These advanced spinel materials showed improved thermal stability compared to that of PGM based standard materials. Fundamental studies on the microstructure of spinel oxide with newly developed composition confirm the aging stability. The vehicle test data are reported for 10 g/ft3 SPGM close-coupled (CC) and 2 g/ft3 SPGM Underfloor (UF) catalysts based on the advanced spinel material. Prior to testing on tier2 bin 4 turbo gasoline direct injection (TGDi) vehicle using FTP and US06 drive cycles, the tested SPGM CC and UF catalysts are aged under standard 4-mode aging cycle. Our initial data show that SPGM UF performs as effectively as the standard high PGM technology UF catalyst, with lower weighted tailpipe NOx. In addition, SPGM CC catalyst with the low PGM loading (10 g/ft3) performs as effectively as the standard high PGM (>100 g/ft3) technology CC catalyst for NOx and CO conversions, but leaving a room for the improvement of non-methane hydrocarbon (NMHC) conversion performance.
机译:在不断发展的市场条件的背景下,三元催化剂(TWC)设计正在进入令人兴奋的新阶段。它仍然是汽油动力车辆的主要排放控制策略;同时,在不断发展的发动机发展的快速期间,受限制的尾气法规和材料供应问题对催化剂开发人员带来了独特的挑战。这里的一个关键方法是基于超低PGM水平实现高益性的发射性能。在这方面,我们主要专注于材料设计,并开发了零贵金属(ZPGM)和协同贵金属(SPGM)TWCs的先进尖晶石氧化物。与基于PGM的标准材料相比,这些先进的尖晶石材料显示出改善的热稳定性。具有新开发成分的尖晶石氧化物微观结构的基本研究证实了老化稳定性。基于先进的尖晶石材料,报道了车辆测试数据10g / ft3 spgm近耦合(cc)和2g / ft3 spgm底板(Uf)催化剂。在使用FTP和US06驱动循环的TIER2箱4涡轮汽油直喷(TGDI)载体上进行测试之前,在标准的4型老化循环下老化了测试的SPGM CC和UF催化剂。我们的初始数据表明,SPGM UF作为标准高PGM技术UF催化剂进行有效地执行,下重尾管NOx。此外,具有低PGM负载(10g / FT3)的SPGM CC催化剂作为NOx和CO转换的标准高pGM(> 100g / FT3)技术CC催化剂,但留下了改善非 - 甲烷烃(NMHC)转化性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号