International Journal of Nonferrous Metallurgy

International Journal of Nonferrous Metallurgy

ISSN Print: 2168-2054
ISSN Online: 2168-2062
www.scirp.org/journal/ijnm
E-mail: ijnm@scirp.org
"Liquid-Liquid Extraction of V(IV) from Sulphate Medium by Cyanex 301 Dissolved in Kerosene"
written by Ranjit Kumar Biswas, Aneek Krishna Karmakar,
published by International Journal of Nonferrous Metallurgy, Vol.2 No.1, 2013
has been cited by the following article(s):
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[1] Experimental design modelling for the extraction of vanadium(IV) extraction V(IV)-SO4 2- (H+, Na+)-Cyanex 301-kerosene system
2021
[2] Kinetics of extraction of Ti (IV) from SO42–medium by Cyanex 301 dissolved in kerosene containing 5% heptan-1-ol
Biotechnology & Biotechnological Equipment, 2017
[3] Chelating extraction of vanadium (V) from low pH sulfuric acid solution by Mextral 973H
Separation and Purification Technology, 2017
[4] Study of the Solvent Extraction of V (V) from Nitrate Medium by Tri-n-Octylamine Dissolved in Kerosene
JOM, 2017
[5] Kinetics of extraction of Ti(IV) from SO42– medium by Cyanex 301 dissolved in kerosene containing 5% heptan-1-ol
Separation Science and Technology, 2017
[6] Kinetics of Forward Extraction of V(IV) in V(IV)-SO2- 4(H+, NA+)-Cyanex 302-Kerosene System Using Lewis Cell Technique
Chemical Engineering Communications, 2015
[7] Kinetics of Forward Extraction of V (IV) in V (IV)-SO4 2?(H+, Na+)–Cyanex 302-kerosene System using Lewis Cell Technique
Chemical Engineering Communications, 2014
[8] Impact of organic carbon on the leachability of vanadium, manganese, iron and molybdenum from shale residues
Minerals Engineering, 2014
[9] Kinetics of Forward Extraction of V (IV) in V (IV)‐SO42?(H+, Na+)‐Cyanex 301–Kerosene System Using the Lewis Cell Technique
International Journal of Chemical Kinetics, 2013
[10] Kinetics of Forward Extraction of V(IV) in V(IV)‐SO42−(H+, Na+)‐Cyanex 301–Kerosene System Using the Lewis Cell Technique
International Journal of Chemical Kinetics, 2013
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