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Highly Dispersed Nickel-Containing Mesoporous Silica with Superior Stability in Carbon Dioxide Reforming of Methane: The Effect of Anchoring

机译:甲烷二氧化碳重整中具有高度稳定性的高分散含镍介孔二氧化硅:锚固作用

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摘要

A series of nickel-containing mesoporous silica samples (Ni-SiO2) with different nickel content (3.1%–13.2%) were synthesized by the evaporation-induced self-assembly method. Their catalytic activity was tested in carbon dioxide reforming of methane. The characterization results revealed that the catalysts, e.g., 6.7%Ni-SiO2, with highly dispersed small nickel particles, exhibited excellent catalytic activity and long-term stability. The metallic nickel particle size was significantly affected by the metal anchoring effect between metallic nickel particles and unreduced nickel ions in the silica matrix. A strong anchoring effect was suggested to account for the remaining of small Ni particle size and the improved catalytic performance.
机译:通过蒸发诱导自组装法合成了一系列镍含量不同(3.1%-13.2%)的含镍介孔二氧化硅样品(Ni-SiO2)。在甲烷的二氧化碳重整中测试了它们的催化活性。表征结果表明,具有高度分散的镍小颗粒的催化剂,例如6.7%Ni-SiO 2,表现出优异的催化活性和长期稳定性。金属镍颗粒尺寸受到金属镍颗粒与二氧化硅基质中未还原的镍离子之间的金属锚固效应的显着影响。有人认为,较强的锚固作用可解决剩余的小镍颗粒和改善的催化性能。

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