详细信息
Improved inter-particle flow models for predicting heap leaching hydrodynamics ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Improved inter-particle flow models for predicting heap leaching hydrodynamics
作者:Ilankoon, I. M. Saman K.[1,2,3];Neethling, Stephen J.[1];Huang, Zibin[3];Cheng, Zhenmin[3]
机构:[1]Imperial Coll London, Dept Earth Sci & Engn, Rio Tinto Ctr Adv Mineral Recovery, Royal Sch Mines, London SW7 2AZ, England;[2]Monash Univ, Sch Engn, Discipline Chem Engn, Jalan Lagoon Selatan, Bandar Sunway 47500, Selangor Darul, Malaysia;[3]East China Univ Sci & Technol, State Key Lab Chem Engn, Shanghai 200237, Peoples R China
年份:2017
卷号:111
起止页码:108
外文期刊名:MINERALS ENGINEERING
收录:;EI(收录号:20172503793353);WOS:【SCI-EXPANDED(收录号:WOS:000406729800011)】;
基金:The gravimetric liquid holdup experiments in this study was performed in the Rio Tinto Centre for Advanced Mineral Recovery at Imperial College London. Saman Ilankoon and Stephen Neethling gratefully acknowledge Rio Tinto for their financial support for this project. Saman Ilankoon was also awarded the open project funding of the State Key Laboratory of Chemical Engineering (Grant number SKL-ChE-16C01) at East China University of Science and Technology to perform ECT experiments in this work and thus the first author thankfully acknowledges the State Key Laboratory of Chemical Engineering for their financial support in 2016.
语种:英文
外文关键词:ECT; Gravimetric method; Heap hydrodynamics; Hysteresis; Inter-particle flow; Liquid holdup
摘要:Heap leaching is one of the most important hydrometallurgical techniques for the extraction of valuable metals from low grade ores due to the relatively low capital costs and limited comminution requirements. However, it is typically affected by low recoveries, compared to conventional mineral extraction techniques such as froth flotation followed by smelting. These low recoveries indicate that there is still significant scope for the improvement of the process performance. This overall process performance is governed by chemical kinetics, mass transport and hydrodynamic effects, with hydrodynamics being particularly not completely understood at the heap scale. The authors have previously presented a model for the hydrodynamics which accounts for both liquid holdup hysteresis and the influence of particle porosity on the fluid flow. In this previous work the model form was only validated for narrowly sized particles. This shortcoming is addressed in this paper, with the validation of the models being extended to cover a range of more complex size distributions representative of those encountered in industrial heap leaching. In this work load cell based gravimetric measurements of liquid holdup values were complimented with electrical capacitance tomography (ECT) measurements, which gave not only the average holdup, but also the liquid distribution within the columns. This study demonstrates that these new hydrodynamic models remain applicable for more realistic particle size distributions, with the need to distinguish between the behaviour of the liquid held within the particle porosity compared to that flowing around the particles being critical to accurate prediction of the hydrodynamics.
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