首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Particle agglomeration in gas-liquid-solid fluidized beds with a dispersed immiscible liquid: Study on particle size, shape and material
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Particle agglomeration in gas-liquid-solid fluidized beds with a dispersed immiscible liquid: Study on particle size, shape and material

机译:气-液-固流化床中分散的不混溶液体中的颗粒团聚:粒径,形状和材料的研究

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The formation of a denser and more viscous secondary liquid phase may impact the fluid dynamic behaviour of industrial ebullated bed reactors such as hydroprocessors. This study investigates the effects of particle size, shape and material on the global fluid dynamic behaviour of gas-liquid-liquid-solid fluidized beds subject to particle agglomeration. Ebullated bed experiments were carried out in a 152.4 mm diameter column at atmospheric conditions with biodiesel as the continuous liquid, 5 wt.% of glycerol as the denser and more viscous dispersed liquid, and nitrogen. Glass spheres with diameters of 4 and 1.5 mm were compared to aluminum cylinders with equivalent volume to surface area ratios, where the sphericity of both larger and smaller cylinders was approximately 0.8. In a liquid-solid fluidized bed, the previous particles were in the intermediate settling flow regime (0.2 < Re_(LT_∞)< 500) in biodiesel; nonetheless, coalescing and dispersed bubble flow regimes were obtained with the smaller and larger particles, respectively, at the introduction of gas. Liquid-liquid-solid fluidized bed results established that particle size, shape and material had considerable impacts on agglomeration behaviour. In die gas-liquid-liquid-solid ebullated bed, the 1.5 mm glass beads transitioned from coalesced to dispersed bubble flow due to increased particle inertia from agglomeration. Larger glass beads experienced a reduced bed expansion due to agglomeration since the bubble flow regime remained constant The studied aluminum cylinders did not agglomerate to the same extent as the glass beads due to differing material wetting properties, where negligible clustering occurred with the larger cylinders and an axial agglomerate size distribution was observed with the smaller cylinders. Preliminary experiments in a slurry bubble column using 100 to 150 um glass beads were inoperable at a relatively low glycerol concentration of 0.7 wt.% due to considerable sedimentation on the distributor. Interparticle forces relevant to gas-liquid-liquid-solid fluidized beds are discussed, with an emphasis on the relation between fluid and particle properties with respect to attractive forces due to liquid bridging.
机译:稠密且粘性更大的次级液相的形成可能会影响工业沸腾床反应器(如加氢处理器)的流体动力学行为。本研究调查了颗粒大小,形状和材料对受颗粒团聚作用的气-液-液-固流化床整体流体动力学行为的影响。在大气条件下,在直径为152.4 mm的色谱柱中进行沸腾床实验,其中生物柴油作为连续液体,甘油5 wt。%作为较稠和更粘稠的分散液体,以及氮气。将直径为4和1.5毫米的玻璃球与具有相等的体积与表面积比率的铝制圆柱体进行比较,在该圆柱体中,较大和较小圆柱体的球形度均为约0.8。在液固流化床中,先前的颗粒在生物柴油中处于中间沉降流状态(0.2

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