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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >An Efficient Cu/BaO/La2O3 Catalyst for the Simultaneous Removal of Carbon Soot and Nitrogen Oxides from Simulated Diesel Exhaust
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An Efficient Cu/BaO/La2O3 Catalyst for the Simultaneous Removal of Carbon Soot and Nitrogen Oxides from Simulated Diesel Exhaust

机译:高效的Cu / BaO / La2O3催化剂,可同时去除模拟柴油机废气中的碳烟和氮氧化物

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A three-component Cu/BaO/La2O3 catalyst has been developed as a highly efficient catalyst for the simultaneous removal of carbon soot and NO gas from diesel emissions. The influence of transition metals (Cu, Pd, Ni, Co, and Pt) deposited on BaO/La2O3 supports and cosupports (BaO, SrO, CaO, and CeO2) combined with La2O3 were investigated. The Cu/Ba0/La2O3 catalyst completely combusted SO wt % carbon soot under an O2 atmosphere, with a T50% temperature of 375 °C. This catalyst also exhibited the highest activity among the investigated catalyst systems for the simultaneous removal of carbon soot and NO gas, even at low temperatures. The absence of carbon soot substantially decreased the NO conversion rate that suggested carbon soot acts as a solid reductant for the NO reduction. The high activity of the Cu/BaO/La2O3 system can be attributed to the high oxygen storage capacity (OSC) of the BaO phase on La2O3 and to the redox properties of the Cu species that are attributable to strong Cu— BaO interactions. The Cu/Ba0/La2O3 also exhibits high durability and good recyclability without any appreciable loss of catalytic activity. We propose that the present catalytic reaction consists of two reaction pathways: (i) direct soot oxidation by surface oxygen species and (ii) NO_x-assisted soot oxidation. The use of significantly cheaper Cu rather than noble metals makes the Cu/BaO/La2O3 catalyst a strong candidate to satisfy today's industrial requirements because of its lack of a precious metal.
机译:已经开发出一种三组分Cu / BaO / La2O3催化剂,作为一种高效催化剂,可同时去除柴油机排放的碳烟和NO气体。研究了沉积在BaO / La2O3载体上的过渡金属(Cu,Pd,Ni,Co和Pt)和与La2O3结合的共载体(BaO,SrO,CaO和CeO2)的影响。 Cu / Ba0 / La2O3催化剂在O2气氛下以375°C的T50%温度完全燃烧了SO wt%的碳黑。该催化剂在所研究的催化剂体系中即使在低温下也能同时去除炭黑和NO气体,具有最高的活性。碳烟灰的缺乏显着降低了NO转化率,表明碳烟灰充当了用于NO还原的固体还原剂。 Cu / BaO / La2O3系统的高活性可以归因于BaO相在La2O3上的高储氧能力(OSC),以及归因于强Cu-BaO相互作用的Cu物种的氧化还原特性。 Cu / Ba0 / La2O3还表现出高耐久性和良好的可回收性,而没有任何明显的催化活性损失。我们提出,本催化反应由两个反应途径组成:(i)通过表面氧物种的直接烟灰氧化和(ii)NO_x辅助烟灰氧化。由于铜/ BaO / La2O3催化剂缺乏贵金属,因此使用便宜得多的铜而不是贵金属使之成为满足当今工业要求的有力选择。

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