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Effect of Mo on the catalytic activity of Ni-based self-organizing catalysts for processing of dichloroethane into segmented carbon nanomaterials

机译:钼对二氯乙烷加工成分段碳纳米材料的镍基自组织催化剂催化活性的影响

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摘要

A series of micro-disperse Ni-Mo alloys with the sponge-like structure was prepared by a simultaneous precipitation method followed by sintering of the sediment in H2 atmosphere at 800 °C. According to XRD data, the formation of single-phase solid solution Ni1-xMox took place for the samples with Mo content of 0.6–8.3 wt.%. Synthesized samples were studied in a process of the catalytic CVD of C2H4Cl2 at 550–700 °C. In situ kinetic studies of carbon deposition process were carried out in a flow gravimetric setup equipped with McBain balances. An interaction of Ni-Mo alloys with C2H4Cl2 is accompanied by their rapid disintegration with formation of disperse active particles catalyzing the growth of carbon nanomaterials (CNM). The strong boosting effect of Mo on the catalytic performance of Ni was revealed. The maximum yield of CNM product (8.3 wt.% Mo, 600 °C, 120 min) was as high as 45 g/gM. The study on effect of the reaction temperature on the CNM yield allowed one to define an optimal temperature regime. The impact of Mo concentration upon the morphology, structural features and textural properties of the produced carbon fibers was investigated by means of SEM, TEM, Raman spectroscopy and low-temperature nitrogen adsorption. The role of chemisorbed chlorine species in a pulse-to-pulse regime of the segmented carbon filaments formation was discussed.
机译:通过同时沉淀法,然后在800°C的H2气氛中烧结沉积物,制备了一系列具有海绵状结构的微分散Ni-Mo合金。根据XRD数据,Mo含量为0.6-8.3 wt。%的样品形成了单相固溶体Ni1-xMox。在550-700°C的C2H4Cl2催化CVD过程中研究了合成的样品。碳沉积过程的原位动力学研究是在配有McBain天平的重量分析仪中进行的。 Ni-Mo合金与C2H4Cl2的相互作用伴随着它们的快速崩解并形成了分散的活性颗粒,从而催化了碳纳米材料(CNM)的生长。揭示了Mo对Ni催化性能的强促进作用。 CNM产物的最大产率(8.3重量%的Mo,600℃,120分钟)高达45g / gM。对反应温度对CNM收率的影响的研究使人们可以确定一个最佳的温度范围。通过SEM,TEM,拉曼光谱和低温氮吸附的方法研究了Mo的浓度对碳纤维的形貌,结构特征和组织性能的影响。讨论了化学吸附氯物种在分段碳丝形成的脉冲模式中的作用。

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