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DEVELOPMENT OF PARTICLE BREAKDOWN AND ALUMINA STRENGTH DURING CALCINATION

机译:煅烧过程中的粒子分解和氧化铝强度的发展

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Since the replacement of rotary kilns with stationary calciners, the impact from hydrate properties and calcination technology on the quality of Smelter Grade Alumina (SGA) have been studied frequently. F.L. Smidth is studying the complex interaction between calcining conditions, particle breakdown and development of alumina particle strength in both Pilot-scale and industrial calcination units using conventional analytical techniques. The pilot-scale units is simulating the pre-calcination step at 320-380°C, common to all stationary calciners and the final calcination stage at 1070°C in Gas Suspension Calciners without Holding Vessel. The calcining capacity of the full scale units are ranging from 2200-4500 TPD of SGA and cover stationary calciners with and without Holding Vessel. Representative hydrate samples from more than eight (8) different alumina refineries are calcined and compared. The first results of the above work will be presented with focus on how the calcining conditions impacts the properties of calcined industrial hydrates with respect to alumina strength and particle breakdown.
机译:自替换具有固定煅烧炉的回转窑以来,经常研究了来自水合物性能和煅烧技术对冶炼级氧化铝(SGA)的质量的影响。 F.L.使用常规分析技术,Smidth研究了煅烧条件,颗粒粒度和工业煅烧单元中氧化铝粒度强度的复杂相互作用。导频单元在320-380°C下模拟预煅烧步骤,共同为所有固定煅烧炉和1070°C的最终煅烧阶段,在没有保持容器的气体悬架煅烧炉中。全尺度单位的煅烧容量从2200-4500 TPD的SGA和盖住固定煅烧炉,没有持有容器。煅烧并比较来自超过八(8)个不同氧化铝炼油厂的代表性水合物样品。上述作品的第一个结果将重点介绍煅烧条件如何影响煅烧工业水合物相对于氧化铝强度和颗粒分解的性质。

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