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A Novel Nucleation Apparatus for Regime Separated Granulation

机译:一种新型成核装置,用于改性分离造粒

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A novel nucleation apparatus is presented for the production of narrow sized nuclei from various powder and binder liquid combinations. Mono-sized binder liquid droplets are produced by a specially designed mono-disperse droplet generator. The droplet generator is positioned above a conveyor belt, transporting a powder bed through the spray zone of the droplet generator. By nucleating powder on a conveyer belt, the nucleation mechanism is completely separated from all other granulation mechanisms due to the lack of relative motion between primary particles and/or formed nuclei. Nucleation tests were performed using chalcopyrite and limestone powders with water as the binder liquid. At all operating conditions, the formed nuclei were found to originate from multiplicities of drops that merged on the powder bed surface. Investigation of the dynamics of nuclei formation showed that powder-binder liquid combinations with fast penetration dynamics result in less variation in the number of droplets from which nuclei originate. Smaller and more narrowly distributed nuclei were also achieved by increasing powder speed through the spray zone.
机译:提出了一种新的成核装置,用于生产来自各种粉末和粘合剂液组合的窄尺寸核。单尺寸的粘合剂液滴由专门设计的单分散液滴发生器产生。液滴发生器位于传送带上方,通过液滴发生器的喷射区传送粉末床。由于初级颗粒和/或形成的核之间的相对运动缺乏相对运动,通过成核粉末在输送带上的粉末,与所有其他造粒机制完全分离。使用用氯化物和石灰石粉末用水作为粘合剂液进行成核试验。在所有操作条件下,发现所形成的细胞核来自合并在粉末床表面上的液滴的多重性。对核形成动态的研究表明,具有快速渗透动态的粉末粘合剂液组合导致细胞核源自液滴数量的变化。还通过增加粉末速度通过喷雾区来实现较小且更狭窄的核。

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