1 |
Investigation of nanobubble enhanced reverse anionic flotation of hematite and associated mechanisms Tao DP, Wu ZX, Sobhy A Powder Technology, 379, 12, 2021 |
2 |
Degradation of surfactant used in iron mining by oxidation technique: Fenton, photo-Fenton, and H2O2/UV-A comparative study Falconi IBA, Baltazar MDG, Espinosa DCR, Tenorio JAS Canadian Journal of Chemical Engineering, 98(5), 1069, 2020 |
3 |
AFM and DFT study of depression of hematite in oleate-starch-hematite flotation system Li LX, Zhang C, Yuan ZT, Xu XY, Song ZG Applied Surface Science, 480, 749, 2019 |
4 |
Research on the reverse flotation of kaolinite from fine coal on basis of adsorption behavior Fu YP, He YQ, Xie WN, Wang J, Bai XJ, Li JL, Yang JS Energy Sources Part A-recovery Utilization and Environmental Effects, 41(14), 1663, 2019 |
5 |
Measurement of froth zone and collection zone recoveries with various starch depressants in anionic flotation of hematite and quartz Yang SY, Wang LG Minerals Engineering, 138, 31, 2019 |
6 |
The effect of ultra-fine coal on the flotation behavior of silica in subbituminous coal reverse flotation Li YG, Li JW, Chen P, Chen JZ, Shen LJ, Zhu XN, Cheng G Powder Technology, 342, 457, 2019 |
7 |
Study of reverse flotation of calcite from scheelite in acidic media Deng RD, Huang YQ, Hu Y, Ku JG, Zuo WR, Yin WZ Applied Surface Science, 439, 139, 2018 |
8 |
Improving the flotation performance of coking coal using the reverse-direct flotation process Shi KY, Wang J, Wang SW, Yu ZM, Chen P, Li S Energy Sources Part A-recovery Utilization and Environmental Effects, 40(23), 2886, 2018 |
9 |
The flotation behavior and adsorption mechanisms of 2-((2-(decyloxy)ethyl) amino)lauric acid on quartz surface Luo BB, Zhu YM, Sun CY, Li YJ, Han YX Minerals Engineering, 117, 121, 2018 |
10 |
Utilization of benzyl aminopropyl dimethoxymethylsilane as collector for the reverse flotation of silicate minerals from magnetite Yu XY, Wang LP, Liu C, Hu LQ, Wei XA, Huang ZQ, He GC Minerals Engineering, 129, 106, 2018 |