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Influence of geometry and slurry properties on fine particles suspension at high loadings in a stirred vessel

机译:几何形状和浆液性质对搅拌容器中高负荷下细颗粒悬浮液的影响

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Particle size, solids loading and impeller clearance from the base were all found to have significant effects on the just-suspension of fine particles in a stirred tank. At the higher end of particles size studied, where there is greater difference in settling velocities between particle sizes, the smaller the particles the less specific energy, epsilon(js) is required for just-suspension. But at the low end of particle size range, changes in the settling velocity are small while continued reduction in particle size corresponds to substantial increase in total particle surface area, leading to increased so possibly due to particles interactions. Just-suspension of PMMA particles of diameter 195.5 mu m required higher so than for 753 mu m particles, whereas epsilon(js) for 75.3 mu m particles was lower than that for 18.0 mu m diameter particles. Experiments were conducted in water in a 15.5 cm cylindrical tank at an aspect ratio of 1:1 over a range of loadings from 5 to 40% by weight. The HR100 and HS604 SUPERMIX (R) impellers manufactured by SATAKE, generally showed better efficiencies compared to the conventional 4 pitched-blade turbine and 3-blade propeller, in addition to being less affected by changes in operational parameters. The HS604 performance proved that a radial impeller can be comparable to or better than a downward axial impeller in solid-liquid suspension if used at very low clearance. S factor values under different experimental conditions are presented. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:发现颗粒大小,固体负载和从底座的叶轮间隙均对搅拌釜中刚刚悬浮的细颗粒有重大影响。在所研究的颗粒尺寸的较高端,颗粒尺寸之间的沉降速度差异较大,颗粒越小,正义悬浮所需的比能量就越少,epsilon(js)。但是在粒径范围的低端,沉降速度的变化很小,而粒径的持续减小对应于总颗粒表面积的大幅增加,因此可能是由于颗粒相互作用而导致的。刚悬浮的直径为195.5μm的PMMA颗粒需要比753μm的颗粒高的悬浮液,而75.3μm的颗粒的epsilon(js)低于18.0μm的颗粒。实验是在15.5厘米圆柱形水箱中的水中以1:1的纵横比在5至40%重量的载荷范围内进行的。由SATAKE制造的HR100和HS604 SUPERMIX(R)叶轮与传统的4螺距叶片涡轮和3叶片螺旋桨相比,通常显示出更高的效率,并且受工作参数变化的影响较小。 HS604的性能证明,如果在很小的间隙中使用,径向叶轮在固液悬浮液中可与向下的轴向叶轮相当或更好。给出了不同实验条件下的S因子值。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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