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首页> 外文期刊>New Journal of Chemistry >Effect of the particle size of MoO3 on the catalytic activity of Mo/ZSM-5 in methane non-oxidative aromatization
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Effect of the particle size of MoO3 on the catalytic activity of Mo/ZSM-5 in methane non-oxidative aromatization

机译:MoO3粒径对Mo / ZSM-5甲烷非氧化芳构化催化活性的影响

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摘要

Three types of molybdenum oxide with different sizes (i.e. 10-20 mu m, 0.1-1 mu m and 30-150 nm) were used to modify ZSM-5, which were investigated in the methane non-oxidative aromatization reaction. The structure and surface properties of the prepared catalysts were studied using XRD, SEM, N-2 adsorption/desorption, ICP-AES, NH3-TPD and the IR spectra of pyridine adsorption. The characterization results showed that MoO3 with smaller size calcined at 500 degrees C more easily sublimated to form Mo-species at a atomic/molecular level, diffused into the channels of ZSM-5 and reacted with the Bronsted acid to form Mo-O-Al species, which resulted in the decrease of the Bronsted acid sites in the catalysts. The catalytic results confirmed that nano MoO3 modified ZSM-5 zeolites calcined at 500 degrees C showed higher methane conversion (14.1%) and aromatics yield (9.5%) than micron MoO3 modified ZSM-5. In addition, micron MoO3 modified ZSM-5 calcined under higher temperature (i.e. 550 degrees C) or calcined at 500 degrees C for longer time did not achieve the higher catalytic behaviour. Moreover, nano-MoO3 modified ZSM-5 showed better catalytic stability when compared with micron-MoO3 modified ZSM-5.
机译:使用三种不同尺寸的氧化钼(即10-20微米,0.1-1微米和30-150纳米)对ZSM-5进行改性,并在甲烷非氧化芳构化反应中进行了研究。用XRD,SEM,N-2吸附/解吸,ICP-AES,NH3-TPD和吡啶吸附的红外光谱对制备的催化剂的结构和表面性能进行了研究。表征结果表明,较小尺寸的MoO3在500摄氏度下煅烧更容易在原子/分子水平上升华形成Mo-物种,扩散到ZSM-5通道中并与布朗斯台德酸反应形成Mo-O-Al物种,导致催化剂中布朗斯台德酸位的减少。催化结果证实,与微米MoO3改性的ZSM-5相比,在500℃煅烧的纳米MoO3改性的ZSM-5沸石显示出更高的甲烷转化率(14.1%)和芳烃收率(9.5%)。另外,在较高温度(即550℃)下煅烧或在500℃下煅烧较长时间的微米MoO 3改性的ZSM-5没有实现较高的催化性能。此外,与微米-MoO3修饰的ZSM-5相比,纳米MoO3修饰的ZSM-5表现出更好的催化稳定性。

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