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首页> 外文期刊>Catalysis science & technology >Multi-Ni@Ni phyllosilicate hollow sphere for CO2 reforming of CH4: influence of Ni precursors on structure, sintering, and carbon resistance
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Multi-Ni@Ni phyllosilicate hollow sphere for CO2 reforming of CH4: influence of Ni precursors on structure, sintering, and carbon resistance

机译:对二氧化碳Multi-Ni@Ni层状硅酸盐空心球体CH4的改革:倪前体的影响结构、烧结和碳电阻

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摘要

Multi-Ni@ Ni phyllosilicate hollow spheres (NiPhy HS) were synthesized using different Ni precursors via hydrothermal and H-2 reduction methods. Precursor effects to the NiPhy HS structure and catalytic performance for CO2 (dry) reforming of the CH4 (DRM) reaction were investigated and established. Ni@ NiPhy(Ac)(2) achieved near equilibrium conversions with negligible carbon formation for the DRM reaction at 700 degrees C. The structure of NiPhy HS was influenced by different nickel precursors because Ni ions with different sizes were produced leading to their relatively different diffusion speeds through the previously formed NiPhy layer to further react with the silicate ions near the unreacted silica surface in the core part to form the new NiPhy phases. The unique pore structure with smallest pore size and pore volume for NiPhy-(Ac)(2) compared with NiPhy-OAc and NiPhy-NO3 contributes to eliminating the deposition of carbon species due to the confinement effect. In addition, the strongest interaction between Ni and NiPhy phases for NiPhy-(Ac)(2) inhibits the sintering of Ni nanoparticles and prevents the lifting away of Ni from NiPhy phases by the deposited carbon species thereby retarding the growth of carbon nanotubes. This study demonstrates a method to design other metal (M = Co, Fe, and Cu) phyllosilicate nano-hollow spheres with high metal loading as high sintering and carbon resistant catalysts for other catalytic applications.
机译:Multi-Ni@ Ni层状硅酸盐(NiPhy空心球体使用不同的倪HS)合成通过水热前驱,减少2方法。结构和催化性能的二氧化碳(干)改革的CH4 (DRM)反应调查和建立。实现近平衡转化率DRM的微不足道的碳形成的反应在700度c NiPhy HS的结构受不同的镍前驱因为的影响镍离子与不同尺寸生产导致其相对不同的扩散通过前面NiPhy层形成的速度进一步与附近的硅酸盐离子反应未反应的硅表面的核心部分新NiPhy阶段。最小的孔隙大小和孔隙体积NiPhy - (Ac)和NiPhy-OAc相比(2)NiPhy-NO3有助于消除由于沉积的碳物种约束效应。倪和NiPhy阶段之间的相互作用NiPhy - (Ac)(2)抑制镍的烧结纳米粒子和防止镍的提升了从NiPhy阶段沉积碳物种从而阻碍碳纳米管的生长。这项研究展示了一个方法来设计金属(M =公司、铁和铜)层状硅酸盐与高金属加载nano-hollow球体高耐烧结和碳催化剂其他催化应用程序。

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