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In situ sampling uncovers the dynamics of particle genesis and growth in an aerosol tube reactor

机译:原位采样揭示了气溶胶管反应器中颗粒发生和生长的动力学

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摘要

Making metal and ceramic powders using aerosol synthesis from vapour precursors, either in a flame or hot-wall tube reactor, is the basis for producing many thousands of tons of powder on an annual basis. To properly study this system, we have designed and built a model reactor with sampling points at evenly spaced axial positions. This allows us to take snapshots of the aerosol population at many points within the reactor. Nucleation followed by a surface reaction produces a solid phase extremely rapidly, within 0.01 s under typical conditions. This is followed by a transient state where nucleation, surface reaction and coagulation all interact to produce a strongly bimodal size distribution. After nucleation is extinguished, the size distribution approaches the self-preserving limit as predicted for a coagulation-dominated process. The final structure is determined by the dominant sintering mechanism, which can be estimated from theory. The knowledge of this mechanism offers the possibility of selecting reactor conditions to produce powders with optimized properties.
机译:每年在火焰或热壁管式反应器中利用气态前驱体的气溶胶合成法生产金属和陶瓷粉末,是每年生产数千吨粉末的基础。为了正确研究该系统,我们设计并建造了一个模型反应器,在轴向均匀分布的采样点上。这使我们可以对反应堆内许多点的气溶胶种群进行快照。在典型条件下,成核随后表面反应可在0.01 s内极快地产生固相。随后是过渡状态,在该状态下成核,表面反应和凝结都相互作用以产生强烈的双峰尺寸分布。核消失后,尺寸分布接近以凝固为主的过程所预测的自我保存极限。最终结构由占主导地位的烧结机制决定,可以从理论上进行估计。该机理的知识提供了选择反应器条件以生产具有优化性能的粉末的可能性。

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