[1] Tawfik A, Zaki D F, Zahran M K.Degradation of reactive dyes wastewater supplemented with cationic polymer (Organo Pol.) in a down flow hanging sponge (DHS) system[J].Journal of Industrial and Engineering Chemistry, 2014, 20(4):2059-2065.[2] 王栗, 岳琳, 郭建博, 等.FePMo12催化电化学反应降解染料废水的研究[J].环境科学, 2014, 35(5):1843-1849.[3] Zhan C C, Chen F, Dai H H, et al.Photocatalytic activity of sulfated Mo-doped TiO2@fumed SiO2 composite:A mesoporous structure for methyl orange degradation[J].Chemical Engineering Journal, 2013, 225:695-703.[4] Arslan-Alaton I.Homogenous photocatalytic degradation of a disperse dye and its dye bath analogue by silicadodecatungstic acid[J].Dyes and Pigments, 2004, 60(2):167-176.[5] Poyatos J M, Muñio M M, Almecija M C, et al.Advanced oxidation processes for wastewater treatment:State of the art[J].Water, Air & Soil Pollution, 2010, 205(1-4):187-204.[6] Elmorsi T M, Riyad Y M, Mohamed Z H, et al.Decolorization of mordant red 73 azo dye in water using H2O2/UV and photo-Fenton treatment[J].Journal of Hazardous Materials, 2010, 174(1-3):352-358.[7] 严平, 徐常龙, 谢宝华, 等.磷钨钒杂多酸的制备、表征及催化合成四氢呋喃[J].化学试剂, 2012, 34(11):1009-1012.[8] 曹小华, 任杰, 占昌朝, 等.Dawson结构磷钨酸稀土盐的制备、表征及其催化合成四氢呋喃研究[J].功能材料, 2013, 44(12):1736-1740.[9] 冯长根, 尚海茹, 刘霞.采用溶胶-凝胶-溶剂热路径合成H3PW12O40/TiO2和H4SiW12O40/TiO2及其光催化降解二硝基甲苯[J].催化学报, 2014, 35(2):168-174.[10] Li K X, Yan L S, Zeng Z X, et al.Fabrication of H3PW12O40-doped carbon nitride nanotubes by one-step hydro-thermal treatment strategy and their efficientvisible-light photocatalytic activity toward representative aqueous persistent organic pollutants degradation[J].Applied Catalysis B:Environmental, 2014, 156-157:141-152.[11] Gould D, Griffith W P, Spiro M.Polyoxometalate catalysis of dye bleaching by hydrogen peroxide[J].Journal of Molecular Catalysis A:Chemical, 2001, 175(1-2):289-291.[12] Lei P X, Chen C C, Yang J, et al.Degradation of dye pollutants by immobilized polyoxometalate with H2O2 under visible-light irradiation[J].Environmental Science & Technology, 2005, 39(21):8466-8474.[13] Mukai S R, Sugiyama T, Tamon H.Immobilization of heteropoly acids in the network structure of carbon gels[J].Applied Catalysis A:General, 2003, 256(1):99-105.[14] Lefebvre F, Dupont P, Auroux A.Study of the acidity of H3PW12O40 supported on activated carbon by microcalorimetry and methanol dehydration reaction[J].Reaction Kinetics and Catalysis Letters, 1995, 55(1):3-9.[15] Kim H J, Shul Y G, Han H.Synthesis of heteropolyacid (H3PW12O40)/SiO2 nanoparticles and their catalytic properties[J].Applied Catalysis A:General, 2006, 299:46-51.[16] 刘兴.染料敏化POM及TiO2可见光光催化制氢研究[D].南昌:南昌大学, 2013.[17] 肖信, 张伟德.碳纳米管/半导体复合材料光催化研究进展[J].化学进展, 2011, 23(4):657-668.[18] Lettmann C, Hildenbrand K, Kisch H, et al.Visible light photodegradation of 4-chlorophenol with a coke-containing titanium dioxide photocatalyst[J].Applied Catalysis B:Environmental, 2001, 32(4):215-227.[19] 占昌朝, 曹小华, 严平, 等.碳基固体酸催化合成乙酰水杨酸[J].化工进展, 2012, 31(5):1211-1215.[20] 高盐生, 周秋华, 张红梅, 等.硅钨酸与氧氟沙星的相互作用[J].应用化学, 2010, 27(2):178-182.[21] Fu J, Liu W J, Liu X Q, et al.Properties of a new dental photocurable resin based on the expanding monomer and three component photoinitiator system[J].Journal of Wuhan University of Technology:Mater.Sci.Ed., 2014, 29(2):384-390.[22] 黄锦锋, 黄彪, 陈翠霞, 等.机械力辅助氯化锌活化法制备甘蔗渣活性炭[J].林业科学, 2012, 48(10):131-135.[23] Jin H X, Wu Q Y, Pang W Q, et al.Photocatalytic degradation of textile dye X-3B using polyoxometalate-TiO2 hybrid materials[J].Journal of Hazardous Materials, 2007, 141(1):123-127.[24] 占昌朝, 钟明强, 陈枫, 等.微波诱导鳞片石墨-H2O2催化氧化处理甲基紫废水[J].环境工程学报, 2013, 7(11):4300-4306.[25] Soltani T, Entezari M H.Sono-synthesis of bismuth ferrite nanoparticles with high photocatalytic activity in degradation of Rhodamine B under solar light irradiation[J].Chemical Engineering Journal, 2013, 223:145-154.[26] 刘潘, 郭晓宁, 南昊, 等.炉渣制光催化剂催化降解罗丹明B 的机理[J].化工进展, 2010, 29(6):1075-1079.[27] He Z, Sun C, Yang S, et al.Photocatalytic degradation of rhodamine B by Bi2WO6 with electron accepting agent under microwave irradiation:Mechanism and pathway[J].Journal of Hazardous Materials, 2009, 162(2):1477-1486. |