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THE USE OF CENTRIFUGE TECHNOLOGY IN THE REMOVAL OF CRUD AND FINE PARTICLES IN MINERAL PROCESSING

机译:离心机技术在矿物加工中去除Crud和细颗粒

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In the Hydrometallurgical processes, the presence of the so-called "crud" is a constant challenge in solvent extraction. Crud is a stable emulsion which forms along the interface between the aqueous and organic phase. The spread is influenced by the following parameters: first, wind blows the dust and impurities into the open sedimentation tanks. Second, the undissolved solids such as sand transported in the PLS causing problems in conjunction with incorrect agitator design. The crud fraction can decisively impact the efficiency of the hydromet extraction because the phase interface can constitute a large fraction and the sedimentation tanks cannot react flexibly to it. In the downstream process of the series-connected sedimentation tanks, they are thus all contaminated with crud. At the same time, the necessary mass transport is significantly impeded at the phase boundary between organic phase and aqueous phase due to the crud formation. The transfer of the organic phase into the electrolysis cell can result in a "burnout" of the cathode. The carryover of this electrolyte into the extraction can cause problems with the pH regulation. The carry-over of the organic components into the raffinate also leads to contamination of the leaching circuit. The continuous treatment of the crud with a 3-phase decanter centrifuge is extremely effective in combating this problem. This technology splits all three phases from each other and they are consequently continuously separated. All subsequent process steps exhibit a stable, uniform effectiveness. The main advantage for the customer is that fluctuations in the process are eliminated and the organic phase can be recirculated back to the extraction. The recycling of the solvent alone justifies the investment in less than 6 months as examples from South Africa and Chile show. To operate solvent recovery in daily operation fully automated online at the optimum limit, the decanter centrifuge is equipped with a concentration-dependent pond adjustment called DControl. by this means, we can guarantee our customers the maximum possible solvent recovery and minimise the solvent costs in this process step. This system is presented in detail in this paper.
机译:在液压冶金过程中,所谓的“CRUD”的存在是溶剂萃取中的恒定攻击。 CRUD是稳定的乳液,其沿水性和有机相之间的界面形成。扩散受以下参数的影响:首先,风将灰尘和杂质吹入开放沉淀罐中。其次,在PLS中运输的砂等未溶解的固体导致不正确的搅拌器设计问题。 Crud馏分可以果断地影响水管萃取的效率,因为相界面可以构成大馏分,并且沉降罐不能柔性反应。在串联连接的沉降罐的下游过程中,它们都被Crud污染。同时,由于CRUD形成,有机相和水相之间的相位边界显着地阻抗必要的质量传递。将有机相转移到电解细胞中可以导致阴极的“燃尽”。该电解质进入萃取可能导致pH调节问题。将有机成分的携带聚集到萃余液中也导致浸出回路的污染。用3相滗析器离心机的连续处理在打击这个问题方面非常有效。该技术彼此分裂所有三个阶段,因此它们被连续分开。所有后续的过程步骤表现出稳定,均匀的效率。客户的主要优点是,消除了该方法的波动,并且可以将有机相再循环回萃取。单独的溶剂再循环证明投资不到6个月,因为南非和智利秀的例子。为了在日常运行中操作溶剂恢复,在最佳限制下全套在线自动化,滗析器离心机配备了浓度依赖的池塘调整,称为DControl。通过这意味着,我们可以保证我们的客户最大可能的溶剂恢复,并最大限度地减少该过程步骤中的溶剂成本。本文详细介绍了该系统。

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