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Process and Cost Improved Agitator Solutions for Bioleach Reactors

机译:用于生物浸出反应器的工艺和成本改进的搅拌器解决方案

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As mineralogy has become more complex in the long history of hydrometallurgical processing, the process routes and equipment used had to adapt to the changing conditions [1]. Hydrometallurgical bioleaching processes have been developed for different key metals such as gold, nickel and copper amongst others, to overcome the limitations of leaching sulphidic ores.The core of such a hydrometallurgical bioleaching plant is a cascade of stirred atmospheric tank reactors. Large volumes of air that are blown into these tanks must be dispersed by the agitator in order to provide the necessary oxygen mass transfer rates. At the same time the agitator system must be able to properly suspend all solids, homogenize the vessel contents and remove the exothermic reaction heat by inner tube bundles to achieve optimal reaction conditions. Besides the 'economies of scale' and advances in process results, cost optimization of such systems is fundamental. Therefore EKATO has developed the Combijet+ technology which has significantly reduced power requirements, compared to conventional agitators. Another advantage of the Combijet~+ technology is that the gas is injected directly into the highest shear zones, at the impeller blades. As a result the oxygen mass transfer is improved and also substantial cost savings for compressor power are possible. The technical paper will present EKATO's Combijet technologies which support the next step towards a new generation of biohydrometallurgical processing plants. It will also give examples of large scale commercial applications where this technology is successfully in operation.
机译:随着矿物学在湿法冶金加工的悠久历史中变得越来越复杂,所使用的工艺路线和设备必须适应不断变化的条件[1]。为了克服浸出硫化矿石的局限性,已经针对不同的关键金属(例如金,镍和铜)开发了湿法冶金生物浸出工艺。这种湿法冶金生物浸出设备的核心是一系列搅拌的常压罐式反应器。吹入这些槽的大量空气必须由搅拌器分散,以提供必要的氧气传质速率。同时,搅拌器系统必须能够适当地悬浮所有固体,使容器内容物均匀化,并通过内管束除去放热反应热,以达到最佳反应条件。除了“规模经济”和过程结果的进步之外,此类系统的成本优化也是至关重要的。因此,EKATO开发了Combijet +技术,与传统的搅拌器相比,该技术显着降低了功率要求。 Combijet〜+技术的另一个优点是,气体直接在叶轮叶片处注入最高剪切区。结果,改善了氧气质量传递,并且还可以为压缩机功率节省大量成本。该技术论文将介绍EKATO的Combijet技术,这些技术支持迈向新一代生物湿法冶金加工厂的下一步。它还将举例说明该技术成功运行的大规模商业应用。

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