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首页> 外文期刊>Processes >The Effect of the Presence of Very Cohesive Geldart C Ultra-Fine Particles on the Fluidization of Geldart A Fine Particle Beds
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The Effect of the Presence of Very Cohesive Geldart C Ultra-Fine Particles on the Fluidization of Geldart A Fine Particle Beds

机译:内聚力极强的Geldart C超细颗粒的存在对Geldart A细颗粒床流化的影响

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摘要

The effect of the presence of ultra-fines ( d 10 μm) on the fluidization of a bed containing fine particles ( d 100 μm), is the subject of this paper. Practically, it can happen due to breakage or surface abrasion of the fine particles in some processes which totally changes the size distribution and also fluidization behaviour. The materials used in this study are both ground calcium carbonate (GCC); fine is CALCIT MVT 100 (Geldart’s group A) and ultra-fine is CALCIT MX 10 (group C). The experimental results for different binary mixtures of these materials (ultra-fines have 30%, 50%, or 68% of the total mixture weight) show that the physical properties of the mixtures are close to those of pure ultra-fine powders. Using mean values of the bed pressure drop calculated from several independent repetitions, the fluidization behaviour of different mixtures are compared and discussed. The fluidization behaviour of the mixtures is non-reproducible and includes cracking, channelling and agglomeration (like for pure ultra-fine powders). Increasing the portion of ultra-fine materials in the mixture causes a delay in starting partial fluidization, an increase in the bed pressure drop as well as a delay in reaching the peak point.
机译:本文的主题是超细颗粒(d <10μm)的存在对包含细颗粒(d <100μm)的床流化的影响。实际上,它可能是由于某些过程中细颗粒的破裂或表面磨损而发生的,这完全改变了尺寸分布以及流态化行为。本研究中使用的材料均为磨碎的碳酸钙(GCC)。罚款是CALCIT MVT 100(Geldart的A组),而罚款是CALCIT MX 10(C组)。这些材料的不同二元混合物的实验结果(超细粉占混合物总重量的30%,50%或68%)表明,混合物的物理性能接近纯超细粉的物理性能。使用通过几次独立重复计算得出的床压降平均值,可以比较和讨论不同混合物的流化行为。混合物的流化行为是不可再现的,并且包括裂化,通道化和团聚(类似于纯超细粉末)。混合物中超细材料比例的增加导致开始部分流化的延迟,床压降的增加以及到达峰点的延迟。

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