Optimal compositional and structural design of a LaMnO3/ZrO2/Pd-based catalyst for methane combustion
Optimal compositional and structural design of a LaMnO3/ZrO2/Pd-based catalyst for methane combustion
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DOI:
10.1016/j.cattod.2004.09.062
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发表时间:
2005-02
期刊:
影响因子:
5.3
通讯作者:
A. Civera;G. Negro;S. Specchia;G. Saracco;V. Specchia
中科院分区:
文献类型:
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作者:
A. Civera;G. Negro;S. Specchia;G. Saracco;V. Specchia
The aim of this work was to identify the optimum synthesis conditions and the most effective technique for noble metal deposition in a perovskite/palladium-based catalyst for natural gas combustion. The solution combustion synthesis (SCS) of perovskite/zirconia-based materials was investigated, by starting from metal nitrates/glycine mixtures. Characterization and catalytic activity tests were performed on as-prepared powders and then repeated after calcination for 2h at 900°C in calm air. Calcination appeared to be beneficial in that, despite lowering the specific surface area, it promoted the simultaneous crystallization of both LaMnO3and ZrO2and the half-conversion temperature (T50), regarded as an index of catalytic activity, was lowered. Two phases, both active towards methane oxidation – lanthanum manganate and palladium oxide – were combined so as to evaluate their synergism in terms of catalytic activity. Pd was therefore added either via incipient wetness impregnation on LaMnO3·2ZrO2or through a one-step SCS-based route. Characterization and catalytic activity tests followed suit. Optimal composition and preparation routes were found: T50was lowered from 507°C – pure LaMnO3prepared via SCS – to 432°C attained with a 2% (w/w) Pd load on pre-calcined LaMnO3·2ZrO2.