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Design studies on Granulation Processes in a Fluidized Bed

机译:流化床中造粒过程的设计研究

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The process of granulation is widely used in manufacturing particulate solid materials in order to produce a desired size or shape, especially when some particular physical properties are required. It can be used to manufacture product with improved qualities such as more uniform structure, non dusting, non caking and more resistance to mechanical shocks and protective coatings. It has been used on an industrial scale in the manufacture of many products including inorganic salts, fertilizers, pharmaceuticals, food, ceramic, steel, water purification, mineral heneficiation, and powder metallurgy. It is evident from the literature, the mechanism of granulation is complex. It depends on type of material being granulated and also by the method of running the process .It is essential to carry out laboratory scale experiments with the materials to be used before starting the design of any industrial scale granulator. The experimental setup consists of a main glass fluidization column having an ID of 10.16cm and 24cm height. This glass column is placed over a mild steel column of the same diameter and height 98cm.The binder solution was fed through a 2mm stainless steel tube and the compressed air from a 6.35mm tube at the tip of the atomiser. The binder solution was atomized due to the impingement of the air jet. The present investigation is to study the concept of granule formation by individual drops and to quantify the relationship between drop size and granule size by direct measurement. It has been shown that the mechanism and kinetics of granule growth in fluidized bed granulation process and important conclusions are presented in the paper.
机译:颗粒方法广泛用于制造颗粒状固体材料,以产生所需的尺寸或形状,特别是当需要某些特定的物理性质时。它可用于制造具有改进品质的产品,例如更均匀的结构,非粉尘,非结块和更高的机械冲击和保护涂层的耐受性。它已被用于制造许多产品的工业规模,包括无机盐,肥料,药品,食品,陶瓷,钢,水净化,矿物联络和粉末冶金。从文献中显而易见,粒状机制很复杂。这取决于造粒的材料类型,并且还通过运行该过程的方法。它对于在开始设计之前进行的材料进行实验室规模实验,这是必不可少的。实验装置包括一个ID为10.16cm和24cm高度的主玻璃化流化柱。将该玻璃柱放置在相同直径和高度98cm的温和钢柱上。粘合剂溶液通过2mm不锈钢管和从6.35mm管的压缩空气进料到原子机的尖端。由于空气喷射的冲击,粘合剂溶液雾化。本研究是研究各个液滴的颗粒形成的概念,并通过直接测量来量化下降尺寸和颗粒尺寸之间的关系。已经表明,本文介绍了流化床造粒过程中颗粒生长的机制和动力学和重要的结论。

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