1 |
Using p-Si/BDD anode for the electrochemical oxidation of norfloxacin da Silva SW, Navarro EMO, Rodrigues MAS, Bernardes AM, Perez-Herranz V Journal of Electroanalytical Chemistry, 832, 112, 2019 |
2 |
Direct and indirect electrochemical oxidation of amine-containing pharmaceuticals using graphite electrodes Liu YJ, Hu CY, Lo SL Journal of Hazardous Materials, 366, 592, 2019 |
3 |
Novel iron bound to soil organic matter catalyzes H2O2 to oxidize long-chain alkanes effectively in soil Xu JL, Li L, Guo Y, Zhang MJ, Huang TL Chemical Engineering Journal, 339, 566, 2018 |
4 |
Insight of anode reaction for CWS (coal water slurry) electrolysis for hydrogen production Ge L, Gong XZ, Wang Z, Zhao LX, Wang YH, Wang MY Energy, 96, 372, 2016 |
5 |
Green electrochemical process for metronidazole degradation at BDD anode in aqueous solutions via direct and indirect oxidation Ammar HB, Ben Brahim M, Abdelhedi R, Samet Y Separation and Purification Technology, 157, 9, 2016 |
6 |
Electrochemical degradation of Novacron Yellow C-RG using boron-doped diamond and platinum anodes: Direct and Indirect oxidation Rocha JHB, Gomes MMS, dos Santos EV, de Moura ECM, da Silva DR, Quiroz MA, Martinez-Huitle CA Electrochimica Acta, 140, 419, 2014 |
7 |
Electrochemical denitrification and kinetics study using Ti/IrO2-TiO2-RuO2 as the anode and Cu/Zn as the cathode Fan NW, Li ZK, Zhao L, Wu NM, Zhou T Chemical Engineering Journal, 214, 83, 2013 |
8 |
Electrochemical treatment of fresh, brine and saline produced water generated by petrochemical industry using Ti/IrO2-Ta2O5 and BDD in flow reactor da Silva AJC, dos Santos EV, Morais CCD, Martinez-Huitle CA, Castro SSL Chemical Engineering Journal, 233, 47, 2013 |
9 |
Electrochemical oxidation of Methyl Red using Ti/Ru0.3Ti0.7O2 and Ti/Pt anodes Tavares MG, da Silva LVA, Solano AMS, Tonholo J, Martinez-Huitle CA, Zanta CLPS Chemical Engineering Journal, 204, 141, 2012 |
10 |
Comparative study on the catalytic electrooxidative abilities of RuOx-PdO-TiO2/Ti and RuOx-PdO/Ti anode Du L, Wang Y, Dai SJ, Pei JA, Qin S, Hu CW Journal of Hazardous Materials, 185(2-3), 1596, 2011 |