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首页> 外文期刊>Catalysis science & technology >Iron carbide or iron carbide/cobalt nanoparticles for magnetically-induced CO2 hydrogenation over Ni/SiRAlOx catalysts
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Iron carbide or iron carbide/cobalt nanoparticles for magnetically-induced CO2 hydrogenation over Ni/SiRAlOx catalysts

机译:碳化铁或铁碳化物/钴纳米颗粒对于magnetically-induced二氧化碳加氢Ni / SiRAlOx catalysts

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摘要

Magnetic nanoparticles have recently been used as heating agents in heterogeneously catalyzed reactions such as CO2 hydrogenation into methane. In the present work, we explore the potential of heating agents presenting different heating properties in the activation of a supported catalyst based on nickel nanoparticles (NPs) (Ni/SiRAlOx) for the CO2 methanation under continuous flow. Two types of Fe2.2C NPs presenting distinct heating properties have been tested. For Fe2.2C NPs displaying lower heating powers of ca. 1 kW g(-1), an activation of the catalyst at a magnetic field amplitude of 80 mT is necessary to achieve high conversion and selectivity, this activation step being attributed to a partial sintering of the Ni NPs. When using Fe2.2C NPs displaying much higher heating powers of 2 kW g(-1) as heating agents, the magnetic field amplitude required to activate the catalyst can be reduced to 48 mT. Finally, we demonstrate that hard magnetic materials displaying very low heating power but high Curie temperatures, such as Co nanorods (NRs), can be used as relay heating agents when mixed with small amounts of softer materials with high heating power. Thus, by mixing Co NRs with Fe2.2C NPs, excellent catalytic performances (90% of CO2 and 100% CH4 selectivity) have been obtained after applying only 32 mT to trigger the reaction. Once the reaction initiated, these performances are maintained even after lowering the magnetic field to 16 mT, which is advantageous in terms of energy consumption.
机译:磁性纳米颗粒最近被用作在不同类地催化加热特工如二氧化碳加氢甲烷的反应。在目前的工作中,我们探索的潜力加热代理呈现不同的加热一个支持激活的属性基于镍催化剂纳米颗粒(NPs)(Ni / SiRAlOx)二氧化碳甲烷化连续流。呈现不同的加热特性测试。ca。1千瓦g(1),一个激活的催化剂的磁场幅值80吨是必要的转换和实现高选择性,这激活步骤由于部分倪NPs的烧结。当使用Fe2.2C NPs显示高得多加热的2千瓦g(1)加热,所需的磁场幅值激活催化剂可以降低48吨。最后,我们证明硬磁性材料显示非常低的发热量高居里温度,如公司纳米棒(NRs)当混合用作加热继电器代理少量的柔软材料高加热功率。NPs,优良的催化性能(90%的二氧化碳和100%甲烷选择性)只有32吨后触发的反应。即使降低性能维护16吨的磁场,这是有利的能源消耗。

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