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A Novel Carbon Nanotube-Supported NiP Amorphous Alloy Catalyst and Its Hydrogenation Activity

机译:新型碳纳米管负载NiP非晶态合金催化剂及其加氢活性

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A carbon nanotube-supported NiP amorphous catalyst (NiP/CNT) was prepared by induced reduction. Benzene hydrogenation was used as a probe reaction for the study of catalytic activity. The effects of the support on the activity and thermal stability of the supported catalyst were discussed based on various characterizations, including XRD, TEM, ICP, XPS, H_2-TPD, and DTA. In comparison with the NiP amorphous alloy, the benzene conversion on NiP/CNT catalyst was lower, but the specific activity of NiP/CNT was higher, which is attributed to the dispersion produced by the support, an electron-donating effect, and the hydrogen-storage ability of CNT. The NiP/CNT thermal stability was improved because of the dispersion and electronic effects and the good heat-conduction ability of the CNT support.
机译:通过诱导还原制备碳纳米管负载的NiP非晶态催化剂(NiP / CNT)。苯加氢用作研究催化活性的探针反应。基于各种表征,包括XRD,TEM,ICP,XPS,H_2-TPD和DTA,讨论了载体对负载型催化剂活性和热稳定性的影响。与NiP非晶态合金相比,NiP / CNT催化剂上的苯转化率较低,但NiP / CNT的比活性较高,这归因于载体产生的分散性,给电子效应和氢-CNT的储存能力。由于分散和电子效应以及CNT载体的良好的导热能力,提高了NiP / CNT的热稳定性。

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