2Poyatos J M, Almecija M C, Torres J C, et al. Advanced oxidation processes for wastewater treatment: State of the art [J].Water Air Soil Pollut,2010,205 ( 1-4): 187-204. 被引量:1
3Bokare A D, Choi W. Review of iron-free Fenton-like systems for activating H202 in advanced oxidation processes[J].J Hazard Mater, 2014,275:121-135. 被引量:1
4Rajeshwar K, Ibanez J G, Swain G M. Electrochemistry and the environment [J].Joumal of Applied Electroehemistry,1994,24(11): 1077-1091. 被引量:1
5Moraes P B, Bertazzoli R. Electrodegradation of landfill leachate in a flow electrochemical reactor[J].Chemosphere,2005,58(1):41-46. 被引量:1
6Zhu R, Yang C, Zhou M, et al. Industrial park wastewater deeply treated and reused by a novel electrochemical oxidation reactor[J]. Chemical Engineering Journal,2015,260:427-433. 被引量:1
7Duan X, Zhao Y, Liu W, et al. Investigation on electro-catalytic oxidation properties of carbon nanotube-Ce-modified PbO2 electrode and its application for degradation of m-nitrophenol [J]. Arabian Journal of Chemistry,2014. 被引量:1
8Lester Y, Mamane H, Zucker I, et al. Treating wastewater from a pharmaceutical formulation facility by biological process and ozone [J].Water Research,2013,47(13):4349-4356. 被引量:1
9Barndok H, Cortijo L, Hermosilla D, et al. Removal of 1,4-dioxane from industrial wastewaters:routes of decomposition under differentoperational conditions to determine the ozone oxidation capacity [J].J Hazard Mater,2014,280:340-347. 被引量:1
10Oguz E, Keskinler B, Celik C, et al. Determination of the optimum conditions in the removal of Bomaplex Red CR-L dye from the textile wastewater using O3, H202, HCO3- and PAC [J].Journal of Hazardous Materials,2006,131 ( 1):66-72. 被引量:1