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2014

Journal Article

Cyanide chemistry and its effect on mineral flotation

Guo, Bao, Peng, Yongjun and Espinosa-Gomez, Rodolfo (2014). Cyanide chemistry and its effect on mineral flotation. Minerals Engineering, 66, 25-32. doi: 10.1016/j.mineng.2014.06.010

Cyanide chemistry and its effect on mineral flotation

2014

Journal Article

The effect of saline water on mineral flotation - a critical review

Wang, Bo and Peng, Yongjun (2014). The effect of saline water on mineral flotation - a critical review. Minerals Engineering, 66, 13-24. doi: 10.1016/j.mineng.2014.04.017

The effect of saline water on mineral flotation - a critical review

2014

Journal Article

Effect of electrolytes on the flotation of copper minerals in the presence of clay minerals

Zhao, Shengli and Peng, Yongjun (2014). Effect of electrolytes on the flotation of copper minerals in the presence of clay minerals. Minerals Engineering, 66, 152-156. doi: 10.1016/j.mineng.2014.04.024

Effect of electrolytes on the flotation of copper minerals in the presence of clay minerals

2014

Journal Article

Effect of saline water on the flotation of fine and coarse coal particles in the presence of clay minerals

Wang, Bo, Peng, Yongjun and Vink, Sue (2014). Effect of saline water on the flotation of fine and coarse coal particles in the presence of clay minerals. Minerals Engineering, 66, 145-151. doi: 10.1016/j.mineng.2014.03.016

Effect of saline water on the flotation of fine and coarse coal particles in the presence of clay minerals

2014

Journal Article

The interaction of clay minerals and saline water in coarse coal flotation

Wang, Bo and Peng, Yongjun (2014). The interaction of clay minerals and saline water in coarse coal flotation. Fuel, 134, 326-332. doi: 10.1016/j.fuel.2014.05.085

The interaction of clay minerals and saline water in coarse coal flotation

2014

Journal Article

Importance of oxidation during regrinding of rougher flotation concentrates with a high content of sulfides

Chen, Xumeng, Seaman, David, Peng, Yongjun and Bradshaw, Dee (2014). Importance of oxidation during regrinding of rougher flotation concentrates with a high content of sulfides. Minerals Engineering, 66 (7), 165-172. doi: 10.1016/j.mineng.2014.04.014

Importance of oxidation during regrinding of rougher flotation concentrates with a high content of sulfides

2014

Journal Article

The development of regrind–flotation pre-treatment of the CIL feed in copper–gold plants

Burns, Fraser, Peng, Yongjun, Seaman, David and Bradshaw, Dee (2014). The development of regrind–flotation pre-treatment of the CIL feed in copper–gold plants. Powder Technology, 258, 60-65. doi: 10.1016/j.powtec.2014.03.022

The development of regrind–flotation pre-treatment of the CIL feed in copper–gold plants

2014

Journal Article

Flotation separation of copper sulphides from arsenic minerals at Rosebery copper concentrator

Long, Graham, Yongjun Peng and Bradshaw, Dee (2014). Flotation separation of copper sulphides from arsenic minerals at Rosebery copper concentrator. Minerals Engineering, 66, 207-214. doi: 10.1016/j.mineng.2014.04.003

Flotation separation of copper sulphides from arsenic minerals at Rosebery copper concentrator

2014

Journal Article

The separation of chalcopyrite and chalcocite from pyrite in cleaner flotation after regrinding

Chen, Xumeng, Peng, Yongjun and Bradshaw, Dee (2014). The separation of chalcopyrite and chalcocite from pyrite in cleaner flotation after regrinding. Minerals Engineering, 58 (1-4), 64-72. doi: 10.1016/j.mineng.2014.01.010

The separation of chalcopyrite and chalcocite from pyrite in cleaner flotation after regrinding

2014

Journal Article

The effect of particle breakage mechanisms during regrinding on the subsequent cleaner flotation

Chen, Xumeng, Peng, Yongjun and Bradshaw, Dee (2014). The effect of particle breakage mechanisms during regrinding on the subsequent cleaner flotation. Minerals Engineering, 66, 157-164. doi: 10.1016/j.mineng.2014.04.020

The effect of particle breakage mechanisms during regrinding on the subsequent cleaner flotation

2014

Journal Article

Reducing the entrainment of clay minerals in flotation using tap and saline water

Liu, Di and Peng, Yongjun (2014). Reducing the entrainment of clay minerals in flotation using tap and saline water. Powder Technology, 253, 216-222. doi: 10.1016/j.powtec.2013.11.019

Reducing the entrainment of clay minerals in flotation using tap and saline water

2014

Journal Article

Limits of the CIL circuit in copper-gold plants

Burns, Fraser, Peng, Yongjun, Seaman, David and Bradshaw, Dee (2014). Limits of the CIL circuit in copper-gold plants. Minerals Engineering, 55, 132-137. doi: 10.1016/j.mineng.2013.10.008

Limits of the CIL circuit in copper-gold plants

2014

Journal Article

Implementation of regrind–flotation pre-treatment of the CIL feed in a copper–gold plant

Burns, Fraser, Seaman, David, Peng, Yongjun and Bradshaw, Dee (2014). Implementation of regrind–flotation pre-treatment of the CIL feed in a copper–gold plant. Minerals Engineering, 66, 215-220. doi: 10.1016/j.mineng.2014.04.021

Implementation of regrind–flotation pre-treatment of the CIL feed in a copper–gold plant

2013

Journal Article

Effect of regrinding conditions on pyrite flotation in the presence of copper ions

Chen, Xumeng, Peng, Yongjun and Bradshaw, Dee (2013). Effect of regrinding conditions on pyrite flotation in the presence of copper ions. International Journal of Mineral Processing, 125, 129-136. doi: 10.1016/j.minpro.2013.08.007

Effect of regrinding conditions on pyrite flotation in the presence of copper ions

2013

Journal Article

Diagnosis of the surface chemistry effects on fine coal flotation using saline water

Wang, Bo, Peng, Yongjun and Vink, Sue (2013). Diagnosis of the surface chemistry effects on fine coal flotation using saline water. Energy and Fuels, 27 (8), 4869-4874. doi: 10.1021/ef400909r

Diagnosis of the surface chemistry effects on fine coal flotation using saline water

2013

Journal Article

The behaviour of mineral matter in fine coal flotation using saline water

Wang, Bo and Peng, Yongjun (2013). The behaviour of mineral matter in fine coal flotation using saline water. Fuel, 109, 309-315. doi: 10.1016/j.fuel.2013.01.030

The behaviour of mineral matter in fine coal flotation using saline water

2013

Journal Article

Eucalyptus oils as green collectors in gold flotation

Williams, C., Peng, Y. and Dunne, R. (2013). Eucalyptus oils as green collectors in gold flotation. Minerals Engineering, 42, 62-67. doi: 10.1016/j.mineng.2012.12.003

Eucalyptus oils as green collectors in gold flotation

2013

Journal Article

The interaction of lignosulfonate dispersants and grinding media in copper–gold flotation from a high clay ore

Wei, Roy, Peng, Yongjun and Seaman, David (2013). The interaction of lignosulfonate dispersants and grinding media in copper–gold flotation from a high clay ore. Minerals Engineering, 50-51, 93-98. doi: 10.1016/j.mineng.2013.06.012

The interaction of lignosulfonate dispersants and grinding media in copper–gold flotation from a high clay ore

2013

Journal Article

Interactions of clay minerals in copper-gold flotation: Part 1 - rheological properties of clay mineral suspensions in the presence of flotation reagents

Cruz, Nestor, Peng, Yongjun, Farrokhpay, Saeed and Bradshaw, Dee J. (2013). Interactions of clay minerals in copper-gold flotation: Part 1 - rheological properties of clay mineral suspensions in the presence of flotation reagents. Minerals Engineering, 50-51, 30-37. doi: 10.1016/j.mineng.2013.06.003

Interactions of clay minerals in copper-gold flotation: Part 1 - rheological properties of clay mineral suspensions in the presence of flotation reagents

2012

Journal Article

Mechanisms for the improved flotation of ultrafine pentlandite and its separation from lizardite in saline water

Peng, Yongjun and Bradshaw, Dee (2012). Mechanisms for the improved flotation of ultrafine pentlandite and its separation from lizardite in saline water. Minerals Engineering, 36-38, 284-290. doi: 10.1016/j.mineng.2012.05.015

Mechanisms for the improved flotation of ultrafine pentlandite and its separation from lizardite in saline water