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A study of nucleation and the early stage of growth of nickel powder from a vapour nickel carbonyl precursor

机译:气相羰基镍前驱体中镍粉的成核和早期生长的研究

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The phenomenon of nucleation of solid particles from the gas phase has a number of important industrial applications. In this study, the formation of nickel nuclei from the gas phase decomposition of nickel carbonyl has been predicted using classical nucleation theory and compared with experimental results from a hot wall tube reactor. It was shown that the free energy nucleation barrier was much less significant in reality than predicted by theory. In one instance, application of the classical theory suggested that the nucleation onset temperature should be more than 250K higher than the onset temperature calculated from the volume free energy. The experimental results showed that the actual nucleation onset temperature was increased by less than 60 K. Further calculations showed that the observed primary particles were produced during a brief nucleation event, and that the major contribution to particle growth was the result of the surface reaction.
机译:气相中固体颗粒成核的现象具有许多重要的工业应用。在这项研究中,已使用经典成核理论预测了羰基镍气相分解产生的镍核,并将其与热壁管式反应器的实验结果进行了比较。结果表明,自由能成核壁垒在现实中远没有理论预测的那么重要。在一种情况下,经典理论的应用表明成核起始温度应比根据体积自由能计算的起始温度高250K以上。实验结果表明,实际成核起始温度增加了不到60K。进一步的计算表明,观察到的初级颗粒是在短暂的成核过程中产生的,并且对颗粒生长的主要贡献是表面反应的结果。

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