[1] |
Ma H, Zhuo Q, Wang B.Characteristics of CuO-MoO3-P2O5 catalyst and its catalytic wet oxidation(CWO)of dye wastewater under extremely mild conditions[J].Environmental Science and Technology, 2007, 41:7491-7496
|
[2] |
Liu Yan(刘琰), Sun Dezhi(孙德智).Preparation and activity of Fe2O3-CeO2 /γ-Al2O3 catalyst for catalytic wet peroxide oxidation of dye wastewater[J].Journal of Chemical Industry and Engineering(China)(化工学报), 2006,57(10):2303-2308
|
[3] |
Li W, Zhao S, Qi B, et al.Fast catalytic degradation of organic dye with air and MoO3:Ce nanofibers under room condition[J].Applied Catalysis B:Environmental,2009, 92:333-340
|
[4] |
Yuan M, Wang S, Wang X, et al.Removal of organic dye by air and macroporous ZnO/MoO3/SiO2 hybrid under room conditions[J].Applied Surface Science, 2011, 257:7913-7919
|
[5] |
Wu J M, Wen W.Catalyzed degradation of azo dyes under ambient conditions[J].Environmental Science and Technology, 2010, 44:9123-9127
|
[6] |
Xu Yin(许银), Sun Dezhi(孙德智).Preparation and activity of Mn-Zn-Al-O catalyst for catalytic wet air oxidation under room conditions[J].CIESC Journal(化工学报), 2012,63:1415-1421
|
[7] |
Hua B, Jiang A, Guo L, et al.Photocatalytic membrane reactor for degradation of acid red B wastewater[J].Chemical Engineering Journal, 2010, 156:571-577
|
[8] |
Joanna G D, Sylwia M, Antoni W Morawski.Integration of photocatalysis with membrane processes for purification of water contaminated with organic dyes[J].Catalysis Today, 2010, 156:295-300
|
[9] |
Rahul A Damodara, et al.Coupling of membrane separation with photocatalytic slurry reactor for advanced dye wastewater treatment[J].Separation and Purification Technology, 2010, 76:64-71
|
[10] |
Mozia S.Photocatalytic membrane reactors(PMRs)in water and wastewater treatment:a review[J].Separation and Purification Technology, 2010, 73:71-91
|
[11] |
Chong M N, Jin B,Chow C W K, Saint C.Recent developments in photocatalytic water treatment technology:a review[J].Water Research, 2010, 44:2997-3027
|
[12] |
Xu Y, Li X Y, Sun D Z, et al.Degradation of cationic red GTL by catalytic wet air oxidation over Mo-Zn-Al-O catalyst under room temperature and atmospheric pressure[J].Environmental Science and Technology, 2012, 46:2856-2863
|
[13] |
Jawor A, Hoek E M V.Removing cadmium ions from water via nanoparticle enhanced ultrafiltration[J].Environmental Science and Technology, 2010, 44:2570-2576
|
[14] |
Psoch C, Schiewer S.Resistance analysis for enhanced wastewater membrane filtration[J].Journal of Membrane Science, 2006, 280:284-297
|
[15] |
Zhang Guoliang, Zhang Jiwei, Wang Ling, Meng Qin, et al. Fouling mechanism of low-pressure hollow fiber membranes used in separating nanosized photocatalysts[J].Journal of Membrane Science, 2012, 389:532-543
|
[16] |
Zhong Z, Xing W, Jin W, Xu N.Adhesion of nanosized nickel catalysts in the nanocatalysis/UF system[J].AIChE Journal, 2007, 53:1204-1210
|
[17] |
Luo M L, Zhao J Q, Tang W,Pu C S.Hydrophilic modification of poly(ether sulfone)ultrafiltration membrane surface by self-assembly of TiO2 nanoparticles[J].Applied Surface Science, 2005,249:76-84
|
[18] |
Xi W,Geissen S U.Separation of titanium dioxide from photocatalytically treated water by cross-flow microfiltration[J].Water Research,2001,35:1256-1262
|