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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Effect of periodic lean/rich switch on methane conversion over a Ce-Zr promoted Pd-Rh/Al2O3 catalyst in the exhausts of natural gas vehicles
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Effect of periodic lean/rich switch on methane conversion over a Ce-Zr promoted Pd-Rh/Al2O3 catalyst in the exhausts of natural gas vehicles

机译:Ce / Zr促进的Pd-Rh / Al2O3催化剂在天然气汽车尾气中周期性稀薄/富集转换对甲烷转化的影响

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摘要

The behavior of a commercial Ce-Zr promoted Pd-Rh/Al2O3 catalyst for the abatement of methane from the exhausts of natural gas vehicles (NGVs) is studied in presence of large amounts of water under both stationary conditions and by periodically switching from lean to rich feed. Under stationary conditions with both stoichiometric (λ = 1.00) and lean (λ = 1.02) feed catalyst deactivation is observed after prolonged exposure to the reaction mixture. Periodic rich pulses in a constant lean feed gas result in the stabilization of catalytic performances. A higher methane conversion than those obtained with stoichiometric and lean feed mixtures is observed under rich conditions, during an experiment carried out by performing lean pulses (λ= 1.02) in a constant rich feed gas (λ = 0.98). The analysis of reactants conversion and products distribution suggests that different chemistries are involved under lean and rich conditions. Only reactions of complete oxidation of H2, CO, CH4 and NO occur under excess of oxygen, whereas under rich conditions NO reduction, CH4 steam reforming and water gas shift also occur. The effect of symmetric oscillation of the exhausts composition around stoichiometry is also addressed by periodically switching from slightly rich to slightly lean composition with different oscillation amplitudes (Δλ = ±0.01, ±0.02 and ±0.03). Higher and more stable methane conversion performances are obtained than those observed under constant λ operations. The presence of a more active PdO/Pd~0 state is suggested to explain the enhancement of catalytic performances.
机译:研究了商用Ce-Zr促进的Pd-Rh / Al2O3催化剂在天然气中存在的大量水,在两种固定条件下,并通过定期从稀油转换为稀油,以减少天然气车辆(NGVs)废气中的甲烷的行为。丰富的饲料。在化学计量比(λ= 1.00)和稀溶液(λ= 1.02)的稳定条件下,长时间暴露于反应混合物后,进料催化剂失活。恒定的稀进料气中的周期性浓脉冲导致催化性能的稳定。在通过在恒定浓进气中(λ= 0.98)进行稀脉冲(λ= 1.02)进行的实验期间,在浓条件下观察到的甲烷转化率高于化学计量和稀进气混合物获得的甲烷转化率。对反应物转化率和产物分布的分析表明,在贫油和富油条件下会涉及不同的化学物质。在氧气过量的情况下,仅发生H2,CO,CH4和NO完全氧化的反应,而在富氧条件下,NO还原,CH4蒸汽重整和水煤气变换也会发生。还可以通过周期性地从具有不同振荡幅度(Δλ=±0.01,±0.02和±0.03)的略富到略稀的成分周期性切换来解决排气成分围绕化学计量对称振动的影响。与在恒定λ操作下观察到的相比,可以获得更高和更稳定的甲烷转化性能。建议存在更活泼的PdO / Pd〜0状态来解释催化性能的提高。

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