Volodin Alexander M, Kenzhin Roman M, Bauman Yury I, Afonnikova Sofya D, Potylitsyna Arina R, Shubin Yury V, Mishakov Ilya V, Vedyagin Aleksey A
Boreskov Institute of Catalysis SB RAS, 5 Lavrentyev ave., 630090 Novosibirsk, Russia.
Department of Natural Sciences, Novosibirsk State University, 2 Pirogova str., 630090 Novosibirsk, Russia.
Materials (Basel). 2022 Dec 17;15(24):9033. doi: 10.3390/ma15249033.
The processes of carbon erosion of nickel alloys during the catalytic pyrolysis of organic compounds with the formation of carbon nanofibers in a flow-through reactor as well as under reaction conditions in a close volume (Reactions under Autogenic Pressure at Elevated Temperature, RAPET) were studied. The efficiency of the ferromagnetic resonance method to monitor the appearance of catalytically active nickel particles in these processes has been shown. As found, the interaction of bulk Ni-Cr alloy with the reaction medium containing halogenated hydrocarbons (1,2-dichloroethane, 1-iodobutane, 1-bromobutane) results in the appearance of ferromagnetic particles of similar dimensions (~200-300 nm). In the cases of hexachlorobenzene and hexafluorobenzene, the presence of a hydrogen source (hexamethylbenzene) in the reaction mixture was shown to be highly required. The microdispersed samples of Ni-Cu and Ni-Mo alloys were prepared by mechanochemical alloying of powders and by reductive thermolysis of salts-precursors, accordingly. Their interaction with polymers (polyethylene and polyvinyl chloride) under RAPET conditions and with ethylene and 1,2-dichloroethane in a flow-through reactor are comparatively studied as well. According to microscopic data, the morphology of the formed carbon nanofibers is affected by the alloy composition and by the nature of the used organic substrate.
研究了在流动反应器中以及在密闭体积的反应条件下(高温自生压力反应,RAPET),有机化合物催化热解形成碳纳米纤维过程中镍合金的碳侵蚀过程。结果表明了铁磁共振方法监测这些过程中催化活性镍颗粒出现的有效性。研究发现,块状Ni-Cr合金与含有卤代烃(1,2-二氯乙烷、1-碘丁烷、1-溴丁烷)的反应介质相互作用会导致出现尺寸相似(约200-300nm)的铁磁颗粒。在六氯苯和六氟苯的情况下,反应混合物中显示出高度需要氢源(六甲基苯)。相应地,通过粉末的机械化学合金化和盐前驱体的还原热解制备了Ni-Cu和Ni-Mo合金的微分散样品。还比较研究了它们在RAPET条件下与聚合物(聚乙烯和聚氯乙烯)以及在流动反应器中与乙烯和1,2-二氯乙烷的相互作用。根据微观数据,所形成的碳纳米纤维的形态受合金成分和所用有机底物性质的影响。