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Effect of Drying Methods on the Structure and Combustion Activity of Mn-Substituted Hexaaluminate Catalysts
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作者 JinguangXu ZhijianTian +3 位作者 JunweiWang YunpengXu ZhushengXu LiwuLin 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2003年第2期105-112,共8页
Conventional oven drying (COD) and supercritical drying (SCD) methods wereapplied to the preparation of Mn-substituted hexaaluminate (BaMnAl_(11)O_(19-α)) catalysts. Theeffect of drying methods on phase composition, ... Conventional oven drying (COD) and supercritical drying (SCD) methods wereapplied to the preparation of Mn-substituted hexaaluminate (BaMnAl_(11)O_(19-α)) catalysts. Theeffect of drying methods on phase composition, specific surface area, pore structure, reductionbehavior of Mn^(3+) ions, and combustion activity of the samples was investigated. The homogenousmixing of the components in the sol-gel process could be maintained by SCD, and the hexaaluminatephase was almost the only phase of the resulting materials after calcination. H_2-TPR revealed thatthe Mn^(3+) ions in the sample obtained by SCD were easier to be reduced than that by COD. Moreover,the samples obtained by SCD have higher surface area, narrower pore size distribution, and highercombustion activity than those obtained by COD. 展开更多
关键词 HEXAALUMINATE catalytic combustion METHANE supercritical drying
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Physico-chemical Characterization of Mo-H βZeolite Catalysts
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作者 LIUSheng-lin HUANGSheng-jun +3 位作者 XINWen-jie QINxin-hua XIESu-juan XULong-ya 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第5期637-639,共3页
A series of Mo-impregnated H\%β\% samples, with MoO\-3 loading in H\%β\% zeolite in the mass fraction range of 0\^5%\_6\^0%, were studied by means of XRD and IR in order to characterize their structures. Mo/H\%β\% ... A series of Mo-impregnated H\%β\% samples, with MoO\-3 loading in H\%β\% zeolite in the mass fraction range of 0\^5%\_6\^0%, were studied by means of XRD and IR in order to characterize their structures. Mo/H\%β\% samples′ crystallinity almost linearly decreases with increasing the amount of MoO\-3 loaded. The IR spectra and XRD patterns suggest that the progressive destabilization of the H\%β\% zeolite structure is caused by increasing Mo loading in (MoO\-3+H\%β\% zeolite). During the calcination, Al\-2(MoO\-4)\-3 formed from the dealumination of H\%β\% zeolite, causes the substantially partial breakdown of the zeolite framework when the Mo loading in MoO\-3+H\%β\% is relatively high. 展开更多
关键词 Mo-impregnated H\%β\% sample Structure IR/XRD characterization
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