[1]
Zu Yong, Lei Yan-ying, etc. Nano-sized TiO2—a new type of inorganic antibacterial agent[J]. Modern chemical industry, 1999, 19(8): 46-48.
Google Scholar
[2]
Sun Shu-qing. The Application of Light Catalytic Reaction in the Environmental Protection[J]. Environment and Exploitation, 1999, 14(3): 15-18.
Google Scholar
[3]
Liu Li-hua. The Research Progress of Nano-sized TiO2's Application[J]. Journal of Tangshan Teachers College. 2004, 26(5): 3-5.
Google Scholar
[4]
Yi Li-song, Shen Hui. The Research Progress and Application of Nano-sized TiO2's Photocatalysis [J]. Materials Review, 2000, 12(4): 23-25.
Google Scholar
[5]
Fang An-fu, Liu Jian-yong, Xiang Hui-qiang. The Application of Nanotechnology in Water Pollution Control[J]. Modern Chemical Industry, 2006, 26(2): 74-78.
Google Scholar
[6]
Shi Zhou, Zhang Bin, Xu Guang-mei. The Application of Nanotechnology in Air and Water Pollution Control[J]. Journal of University of South China, 2003, 3(17): 25-29.
Google Scholar
[7]
Zheng Guang-hong, Feng Xi-ning, etc. Application of nano Titanium Oxide as Photocatalyst[J]. Dyestuffs and Coloration, 2004, 41(5): 293-296.
Google Scholar
[8]
Judin V P S. The Lighter Side of TiO2 [J] . Chemistry in Britain , 1993 , 29 : 503~508.
Google Scholar
[9]
Sun Feng-yu, etc. The Relationship of Titanium Dioxide's size and Photocatalytic activity [J]. Chinese Journal of Catalysis, 1998 , 19 (3) : 229~233.
Google Scholar
[10]
Liang Jin-sheng. The Study of Nano-material's Environmental Purification[J]. Journal of the Chinese Ceramic Society, 1999, 27(5): 601-603.
Google Scholar
[11]
Hu Wei-wu, Feng Chuan-ping. The Application of Nano Material and Nanotechnology in Environmental protection[J]. New Chemical Materials, 2007, 35: 14-16.
Google Scholar
[12]
Tan Xiang-ping, Jiang Wei-chuan, Xu Jiang. The Research of light degradation of Semiconductor Catalyst with silver (TAS)[J]. Environmental Pollution & Control, 1994, 16(5): 5-7.
Google Scholar
[13]
Yao Qing-zhao , Liu Zheng-bao. Photoelectric Catalytic Degrade the Dye Wastewater[J]. Industrial Water Treatment, 1999, 19(6): 15-16.
Google Scholar
[14]
Fang You-ling , Zhao Wen-huan. Nano-TiO2's Solidified in Hollow Ceramic Microspheres and Octane's Degradation [J]. Chinese Journal of Applied Chemistry, 1997, 14(2): 81.
Google Scholar
[15]
Zhao Wen-huan. The Photocatalytic Degradation of Oil Pollution[J]. Chinese Journal of Catalysis, 1999, 20(3): 368.
Google Scholar
[16]
Chen Shi-fu , Zhao Meng-yue,Tao Yue-wu. Polycarbafil coupled with TiO2 Photocatalysis to Degrade Organic Phosphor in Pesticide[J]. Journal of Environmental Science, 1996, 17(4): 33-35.
Google Scholar
[17]
Li Tian , Chen Shi-fu. The Depth Purification Effect of City Water's Catalytic Oxidation[J]. Acta Scientiae Circumstantiae, 1998, 18(2): 167-171.
Google Scholar
[18]
Fu Hong-lian , Lv Gong-xuan , Li Shu-ben. The Reduction Mechanism of Cr6+ on the surface of TiO2 [J]. Chinese Journal of Chemical Physics, 1999 , 12 (1): 113.
Google Scholar
[19]
Liu Shu. The Application of Nano-sized TiO2 [J]. Technology & Market, 2010, 9(11): 21-22.
Google Scholar