1 |
Recovery of vanadium from calcification roasted-acid leaching tailing by enhanced acid leaching Zhang Y, Zhang TA, Dreisinger D, Lv CX, Lv GZ, Zhang WG Journal of Hazardous Materials, 369, 632, 2019 |
2 |
Stability of As(V)-sorbed schwertmannite under porphyry copper mine conditions HoungAloune S, Hiroyoshi N, Ito M Minerals Engineering, 74, 51, 2015 |
3 |
Leaching characteristics of vanadium in mine tailings and soils near a vanadium titanomagnetite mining site Yang JY, Tang Y, Yang K, Rouff AA, Elzinga EJ, Huang JH Journal of Hazardous Materials, 264, 498, 2014 |
4 |
Electro-remediation of copper mine tailings. Comparing copper removal efficiencies for two tailings of different age Hansen HK, Lamas V, Gutierrez C, Nunez P, Rojo A, Cameselle C, Ottosen LM Minerals Engineering, 41, 1, 2013 |
5 |
Electrolyte conditioning-enhanced electrokinetic remediation of arsenic-contaminated mine tailing Baek K, Kim DH, Park SW, Ryu BG, Bajargal T, Yang JS Journal of Hazardous Materials, 161(1), 457, 2009 |
6 |
Application of EDTA decontamination on soils affected by mining activities and impact of treatment on the geochemical partition of metal contaminants Xia WB, Gao H, Wang XH, Zhou CH, Liu YG, Fan T, Wang X Journal of Hazardous Materials, 164(2-3), 936, 2009 |
7 |
Adsorption of Pb(II), Cr(III), Cu(II), Cd(II) and Ni(II) onto a vanadium mine tailing from aqueous solution Shi TH, Jia SG, Chen Y, Wen YH, Du CM, Guo HL, Wang ZC Journal of Hazardous Materials, 169(1-3), 838, 2009 |
8 |
Selectivity sequences and sorption capacities of phosphatic clay and humus rich soil towards the heavy metals present in zinc mine tailing Chaturvedi PK, Seth CS, Misra V Journal of Hazardous Materials, 147(3), 698, 2007 |
9 |
Electrodialytic remediation of copper mine tailings Hansen HK, Rojo A, Ottosen LM Journal of Hazardous Materials, 117(2-3), 179, 2005 |
10 |
Electrodialytic remediation of copper mine tailings: Sulphuric and citric acid addition Rojo A, Hansen HK Separation Science and Technology, 40(9), 1947, 2005 |