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An investigation of mixed oxide combustion catalysts

机译:混合氧化物燃烧催化剂的研究

摘要

A variety of transition metal oxides, consisting of a transition metal (manganese, copper, cerium or cobalt) oxide and zirconia, were investigated for the combustion of methane and propane and attempts were made to associate surface, redox and structural properties with catalytic activity. In particular, the mangancse-zirconia system was studied in detail. The effect of high temperature (800°C) aging on the surface areas, structure, reducibility and activity of the calcined catalysts was determined.ududThe preparation method used had a significant effect on the structures o f all the oxides studied. Ceria-zirconia mixed oxides prepared by a modified sol-gel method had higher surface areas and higher activity than the corresponding samples prepared by the coprecipitation method. Manganese-zirconia, cobalt-zirconia and copper-zirconia mixed oxides were all prepared by the co-precipitation method and the final properties o f the oxides were very sensitive to changes in preparation parameters within this method. Variations investigated included stirring time of precursor solution prior to addition o f base, precursor concentrations, pH or volume of base added and addition o f base to precursor solution or vica versa.ududOf all the mixed oxides studied, the manganese-zirconia system, prepared by addition o f ammonium hydroxide, show the best potential as possible alternatives to noble metal catalysts. Manganese oxide and manganese-zirconia mixed oxides were more active for methane combustion than a 0.5 wt% Pt/A^Os. On aging, the mixed oxides gained activity in propane oxidation, while the temperatures at which 50% conversion o f methane occurred remained the same, despite a significant decrease in surface. An increase in reducibility, as indicated by a decrease in the temperature corresponding to maximum reduction, occurred on aging for the mixed oxides. Under the same conditions, only a small decrease in activity o f manganese oxide for both propane and methane oxidation occurred on aging, suggesting that the preparation method, as well as the presence o f zirconium, may play an important role in the increased activity and reducibility on aging.
机译:研究了由过渡金属(锰,铜,铈或钴)氧化物和氧化锆组成的多种过渡金属氧化物,用于甲烷和丙烷的燃烧,并尝试将表面,氧化还原和结构性质与催化活性相关联。特别是对锰-氧化锆体系进行了详细的研究。确定了高温(800℃)老化对煅烧催化剂的表面积,结构,还原性和活性的影响。 ud ud所用的制备方法对所有研究的氧化物的结构均具有显着影响。通过改进的溶胶-凝胶法制备的二氧化铈-氧化锆混合氧化物比通过共沉淀法制备的相应样品具有更高的表面积和更高的活性。锰-氧化锆,钴-氧化锆和铜-氧化锆混合氧化物均通过共沉淀法制备,并且氧化物的最终性质对这种方法中制备参数的变化非常敏感。研究的变化包括添加碱之前的前体溶液搅拌时间,前体浓度,pH或添加的碱量以及向前体溶液中添加碱,反之亦然。 ud ud在所有研究的混合氧化物中,锰-氧化锆体系通过添加氢氧化铵制备的催化剂显示出最佳的潜力,可以作为贵金属催化剂的替代品。氧化锰和锰-氧化锆混合氧化物比0.5wt%的Pt / A 2 O 5具有更高的甲烷燃烧活性。在老化时,尽管表面明显降低,但混合氧化物在丙烷氧化中具有活性,而发生50%甲烷转化的温度保持不变。如混合氧化物的老化时,还原性的提高,如对应于最大还原的温度降低所表明的。在相同条件下,老化过程中锰和丙烷氧化锰的活性仅小幅下降,这表明制备方法以及锆的存在可能对提高锰的活性和还原性起重要作用。老化。

著录项

  • 作者

    Feeley Mairead U.;

  • 作者单位
  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en
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