1 |
Effect of surfactant on the growth and activity of microorganisms in a heap bioleaching system Ghadiri M, Harrison STL, Fagan-Endres MA Minerals Engineering, 138, 43, 2019 |
2 |
Modelling microbial transport in simulated low-grade heap bioleaching systems: The hydrodynamic dispersion model Govender-Opitz E, Kotsiopoulos A, Bryan CG, Harrison STL Chemical Engineering Science, 172, 545, 2017 |
3 |
Spatial variation of microbial community structure in the Zijinshan commercial copper heap bioleaching plant Liu XY, Chen BW, Chen JH, Zhang MJ, Wen JK, Wang DZ, Ruan RM Minerals Engineering, 94, 76, 2016 |
4 |
Current scenario of chalcopyrite bioleaching: A review on the recent advances to its heap-leach technology Panda S, Akcil A, Pradhan N, Deveci H Bioresource Technology, 196, 694, 2015 |
5 |
Effect of physico-chemical and operating conditions on the growth and activity of Acidithiobacillus ferrooxidans in a simulated heap bioleaching environment Govender E, Bryan CG, Harrison STL Minerals Engineering, 75, 14, 2015 |
6 |
Determining the effect of acid stress on the persistence and growth of thermophilic microbial species after mesophilic colonisation of low grade ore in a heap leach environment Tupikina OV, Minnaar SH, van Hille RP, van Wyk N, Rautenbach GF, Dew D, Harrison STL Minerals Engineering, 53, 152, 2013 |
7 |
Microbial colonisation in heaps for mineral bioleaching and the influence of irrigation rate Chiume R, Minnaar SH, Ngoma IE, Bryan CG, Harrison STL Minerals Engineering, 39, 156, 2012 |
8 |
Some aspects of the effect of pH and acid stress in heap bioleaching Tupikin OV, Ngoma IE, Minnaar S, Harrison STL Minerals Engineering, 24(11), 1209, 2011 |
9 |
Silicate mineral dissolution during heap bioleaching Dopson M, Halinen AK, Rahrmen N, Bostrom D, Sundkvist JE, Riekkola-Vanhanen M, Kaksonen AH, Puhakka JA Biotechnology and Bioengineering, 99(4), 811, 2008 |
10 |
Heap bioleaching of chalcopyrite: A review Pradhan N, Nathsarma KC, Rao KS, Sukla LB, Mishra BK Minerals Engineering, 21(5), 355, 2008 |