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An air sparging CFD model for heap bioleaching of chalcocite

机译:球墨铸铁生物浸出的气浮CFD模型

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A computational fluid dynamics (CFD) solver CFX4.4 is used to implement a steady state model of heap bioleaching of chalcocite, which includes air sparging (forced aeration) based on a previous model entirely under natural convection. The model assumes the oxygen supply limits the reaction rate. A parameter analysis is performed which shows that the factors important to copper leaching are liquid and air flow rates, permeability and fraction of pyrite to chalcocite leached (FPY). The ability to control which parts of the bed received the highest extraction as a function of the liquid and air flow rates was established. Sparging is found to increase the oxygen concentration throughout the heap compared to the circumstance with no sparging (natural convection), and consequently improves the copper extraction significantly. The results show that sparging does not provide any better copper extraction for very high heap permeabilities. The arrangement and spacing of air sparging inlets is analysed in regard to the existence of oxygen starved regions between the inlets.
机译:计算流体动力学(CFD)求解器CFX4.4用于实现菱锰矿堆生物浸出的稳态模型,该模型包括完全基于自然对流的基于先前模型的空气喷射(强制曝气)。该模型假设氧气供应限制了反应速率。进行了参数分析,结果表明,对铜浸出重要的因素是液体和空气流速,磁导率和黄铁矿对菱锰矿浸出的比例(FPY)。建立了根据液体和空气流速控制床的哪个部分获得最高萃取率的能力。与没有鼓泡(自然对流)的情况相比,发现喷洒会增加整个堆中的氧气浓度,从而显着改善了铜的提取。结果表明,对于非常高的堆渗透性,喷射不会提供更好的铜提取。关于进气口之间的氧气不足区域的存在,分析了空气喷射进气口的布置和间距。

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