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In situ supported VOx on carbon nanotubes for the low-temperature selective catalytic reduction of NO with NH3

机译:原位支持的vox碳纳米管上的低温选择性催化减少NH3

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The vanadium oxide/carbon nanotube (VOx/CNTs) composite catalyst was prepared by in-situ growth of VOx nanoparticles on CNTs with a cetylpyridinium chloride (CPC) assisted reflux route. The in-situ prepared catalysts exhibit better NH3-SCR activity in a broader temperature window at low temperature than those prepared by impregnation or a mechanically mixed method. The structural characterizations show that vanadium oxide nanoparticles have a good dispersion on the CNTs surface, with much lower valence vanadium species and chemisorbed oxygen species. The physics-chemistry properties indicate that there is a strong interaction between the VOx and CNTs, and the catalysts present a larger amount of stronger acid. The abovementioned reasons have eventually led to the enhancement of NH3-SCR activity.
机译:通过用十六烷吡啶氯化吡啶(CPC)辅助回流途径在CNT上原位生长制备氧化钒/碳纳米管(VOX / CNT)复合催化剂。 原位制备的催化剂在低温下在更宽的温度窗口中表现出更好的NH 3-SCR活性,而不是通过浸渍或机械混合方法制备的那些。 结构表征表明,氧化钒纳米粒子在CNTS表面上具有良好的分散体,具有较低的低性钒物质和化学吸附氧。 物理化学性质表明VOX和CNT之间存在强烈的相互作用,催化剂呈现较大量的较强的酸。 上述原因最终导致了NH3-SCR活动的增强。

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