生物浸出
流变学
连续搅拌釜式反应器
生物反应器
叶轮
粘度
材料科学
流线、条纹线和路径线
粒径
化学
化学工程
冶金
机械
复合材料
工程类
物理
有机化学
铜
作者
Luis Antonio Ramírez-Torres,Luís Medina-Torres,Fausto Calderas,Diola Marina Núñez-Ramírez,Ο. Manero
标识
DOI:10.1002/ceat.202200438
摘要
Abstract The rheological response and the computational hydrodynamic continuous stirred‐tank behavior were analyzed to increase the understanding of the bioleaching process in mineral pulps. The rheological properties of the mineral pulps showed that a smaller particle size increases the magnitude of the rheological parameters, shortens the bioleaching process time, and, indirectly, increases the concentration of bacteria in the medium, thus augmenting the gel strength. The bioreactor hydrodynamics results revealed that the best dual‐impeller configuration corresponds to a Rushton (top)/Maxflo (bottom) configuration, generating power savings of ∼9 %. Finally, when analyzing apparent viscosity maps, velocity fields, and streamlines at different stirring speeds, enhanced hydrodynamic conditions were observed at 400 rpm.
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