中文
Announcement
More
Progress in Chemistry 2008, Vol. 20 Issue (10): 1621-1627 Previous Articles   Next Articles

• Review •

Sono-photocatalytic Degradation of Organic Pollutants in Water

Wang Ying; Niu Junfeng**; Zhang Zheyun; Long Xingxing   

  1. (The State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China)

  • Received: Revised: Online: Published:
  • Contact: Niu Junfeng
PDF ( 1933 ) Cited
Export

EndNote

Ris

BibTeX

Sono-photocatalytic degradation of organic pollutants in wastewater is a newly-developed Advanced Oxidateion Processes (AOPs). In this process, the efficiency of photocatalysis is promoted by ultrasonic cavitation, free-radical and mechanical effects, and thus synergetic degradation of organic pollutants in wastewater is achieved. The sono-photocatalytic combined process displays a big potential because of its advantages such as simpleness, environmentally friendly and widely applications. In this paper, degradation mechanism, kinetics, influence factors (the type and concentration of photocatalyst, ultrasonic frequency and intensity, pH values, temperature, initial concentration of organic pollutants, dissolved gas and ionic strength) the type of reactor (suspension and fix bed) for the sono-photocatalytic combined process are reviewed. The main problems and prospect of sono-photocatalytic combined process for wastewater treatment are presented.

CLC Number: 

[ 1 ] Hiskia A , Mylonas A , Papaconstantinou E. Chem. Soc. Rev. ,2001 , 30(1) : 62 —69
[ 2 ] Cheng Y P , Sun H Q , Jin W Q , et al . Chem. Eng. J . , 2007 ,128 : 127 —133
[ 3 ] Papadaki M, Emery R J , Abu-Hassan M A , et al . Sep. Purif .Technol . , 2004 , 34 : 35 —42
[ 4 ] Adewuyi Y G. Environ. Sci . Technol . , 2005 , 39 : 8557 —8570
[ 5 ] Pera-Titus M, Garcia-Molina V , Banos M A , et al . Appl . Catal .B : Environ. , 2004 , 47 : 219 —256
[ 6 ] Wu C H , Chang C L. J . Hazard. Mater. , 2006 , 128 : 265 —272
[ 7 ] Davydov L , Reddy E P , France P , et al . Appl . Catal . B :Environ. , 2001 , 32 : 95 —105
[ 8 ] Shimizu N , Ogino C , Dadjour M F , et al . Ultrason. Sonochem. ,2007 , 14 : 184 —190
[ 9 ] Ragaini V. Ultrason. Sonochem. , 2001 , 8 : 251 —258
[10] Andronic L , Duta A. Thin Solid Films , 2007 , 515 : 6294 —6297
[11] Gogate P R , Pandit A B. AIChEJ . , 2004 , 50(5) : 1051 —1079
[12] Wang J , Ma T , Zhang Z H , et al . Catal . Commun. , 2007 , 8 :118 —122
[13] Hao H W, Chen Y F , Wu M S , et al . Ultrason. Sonochem. ,2004 , 11(1) : 43 —46
[14] Suslick K S , Hammerton D A. Ferroelectrics and Frequency Control , 1986 , 33 : 143 —150
[15] Joseph J M, Destaillats H , Hung H M, et al . J . Phys. Chem.A , 2000 , 104 : 301 —307
[16] Adewuyi Y G. Ind. Eng. Chem. Res. , 2001 , 40 : 4681 —4715
[17] Ashokkumar M, Lee J , Kentish S , et al . Ultrason. Sonochm. ,2007 , 14 : 470 —475
[18] Hua I , Hoffmann M R. Environ. Sci . Technol . , 1996 , 30 :864 —871
[19] Rajan R , Kumar R , Gandhi KS. Environ. Sci . Technol . , 1998 ,32 : 1128 —1133
[20] Chakinala A G, Gogate P R , Burgess A E , et al . Ultrason.Sonochem. , 2007 , 14 : 509 —514
[21] Turchi C S , Ollis D F. J Catal . , 1990 , 122 (1) : 178 —192
[22] 唐玉朝(Tang Y C) , 胡春(Hu C) , 王怡中(Wang Y Z) . 化学进展(Progress in Chemistry) , 2002 , 14(3) : 192 —199
[23] Hoffmann M R , Martin S T , Choi W, et al . Chem. Rev. , 1995 ,95 : 69 —96
[24] Linsebigler A L , Lu G Q , Yates J T. Chem. Rev. , 1995 , 95 :735 —758
[25] Peller J , Wiest O , Kamat P. Environ. Sci . Technol . , 2003 , 37 :1926 —1932
[26] Hirano K, Nitta H , Sawada K. Ultrason. Sonochem. , 2005 , 12 :271 —276
[27] Selli E. Phys. Chem. Chem. Phys. , 2002 , 4 : 6123 —6128
[28] Stock N L , Peller J , Vinodgopal K, et al . Environ. Sci .Technol . , 2000 , 34 : 1747 —1750
[29] Shirgaonkar I Z , Pandit A B. Ultrasonics Sonochemistry , 1998 ,5 : 53 —61
[30] Chen Y C , Smirniotis P. Ind. Eng. Chem. Res. , 2002 , 41 :5958 —5965
[31] Chen L , Zhou H Y, Deng Q Y. Chemosphere , 2007 , 68 : 354 —359
[32] 苑宝玲(Yuan B L) , 王洪杰(Wang H J) . 水处理新技术原理与应用( Principle and Application of New Water Treatment Technology) . 北京: 化学工业出版社(Beijing : Chemical Industry Press) , 2006. 43 —44
[33] Mrowetz M, Pirola C , Selli E. Ultrason. Sonochem. , 2003 , 10 :247 —254
[34] An T , Gu H , Xiong Y, et al . J . Chem. Technol . Biotechnol . ,2003 , 78 : 1142 —1148
[35] Guillard C , Theron P , Pichat P , et al . Water Res. , 2002 , 36(17) : 4263 —4272
[36] Ollis D F , Pelizzetti E , Serpone N. Photocatalysis : Fundamental and Applications. New York : Wiley , 1989. 603 —637
[37] Kramble S P , Sawant S B , Pangarkar V G. Ind. Eng. Chem.Res. , 2003 , 42 : 6705 —6713
[38] Wang J , Ma T , Zhang Z H , et al . Desalination , 2006 , 195 :294 —305
[39] Kaur S , Singh V. Ultrason. Sonochem. , 2007 , 14 : 531 —537
[40] Kubo M, Fukuda H , Chua X J , et al . Ind. Eng. Chem. Res. ,2007 , 46 : 699 —704
[41] Méndez M A , Cano A , Suárez M F. Ultrason. Sonochem. , 2007 ,14 : 337 —342
[42] Theron P , Pichat P , Petrier C , et al . Water Sci . , 2001 , 44 :263 —270
[43] Nakajima A , Tanaka M, Kameshima Y, et al . J . Photochem.Photobiol . A: Chem. , 2004 , 167 : 75 —79
[44] Matsuzawa S , Tanaka J , Sato S , et al . J . Photochem. Photobiol .A: Chem. , 2002 , 149 : 183 —189
[45] Bertelli M, Selli E. Appl . Catal . B : Environ. , 2004 , 52 :205 —212
[46] Wang J , Guo B D , Zhang X D , et al . Ultrason. Sonochem. ,2005 , 12 : 331 —337
[47] Yano J , Matsuura J , Ohura H , et al . Ultrason. Sonochem. ,2005 , 12 : 197 —203
[48] Kanthale P M, Gogate P R , Pandit A B. Chem. Eng. J . , 2007 ,127 : 71 —79
[49] Zhu C P , Feng R , Zhao Y Y. Chin. Sci . Bull . , 2000 , 45 :142 —144
[50] Feng R , Zhao Y, Zhu C , et al . Ultrason. Sonochem. , 2002 , 9 :231 —236
[51] Wu C , Wei D , Fan J , et al . Chemosphere , 2001 , 44 : 1293 —1297
[52] Sivakumar M, Pandit A B. Ultrason. Sonochem. , 2001 , 8 :233 —240
[53] Kritikos D E , Xekoukoulotakis N P , Psillakis E , et al . Water Res. , 2007 , 41 : 2236 —2246
[54] Wang J , Ma T , Zhang Z H , et al . Ultrason. Sonochem. , 2007 ,14 : 575 —582
[55] Zhang G M, Hua I. Environ. Sci . Technol . , 2000 , 34 : 1529 —1534
[56] Appaw C , Adewuyi Y G. J . Hazard. Mater. , 2002 , 90 : 237 —249
[57] Mahamuni N N , Pandit A B. Ultrason. Sonochem. , 2006 , 13 :165 —174
[58] Haarstrick A , Kut O M, Heinzle E. Environ. Sci . Technol . ,1996 , 30(3) : 817 —824
[59] Wang K H , Hsieh Y H , Wu C H , et al . Chemosphere , 2000 ,40 : 389 —394
[60] Neppolian B , Choi H C , Sakthivel S , et al . Chemosphere , 2002 ,46(8) : 1173 —1181
[61] Gogate P R. Adv. Environ. Res. , 2002 , 6(3) : 335 —358

[1] Lan Mingyan, Zhang Xiuwu, Chu Hongyu, Wang Chongchen. MIL-101(Fe) and Its Composites for Catalytic Removal of Pollutants: Synthesis Strategies, Performances and Mechanisms [J]. Progress in Chemistry, 2023, 35(3): 458-474.
[2] Liu Yvfei, Zhang Mi, Lu Meng, Lan Yaqian. Covalent Organic Frameworks for Photocatalytic CO2 Reduction [J]. Progress in Chemistry, 2023, 35(3): 349-359.
[3] Xiaoguang Li, Xianglong Pang. Liquid Plasticines: Attributive Characters, Preparation Strategies and Application Explorations [J]. Progress in Chemistry, 2022, 34(8): 1760-1771.
[4] Xiaoqing Ma. Graphynes for Photocatalytic and Photoelectrochemical Applications [J]. Progress in Chemistry, 2022, 34(5): 1042-1060.
[5] Xiaowei Li, Lei Zhang, Qixin Xing, Jinyu Zan, Jin Zhou, Shuping Zhuo. Construction of Magnetic NiFe2O4-Based Composite Materials and Their Applications in Photocatalysis [J]. Progress in Chemistry, 2022, 34(4): 950-962.
[6] Xin Pang, Shixiang Xue, Tong Zhou, Hudie Yuan, Chong Liu, Wanying Lei. Advances in Two-Dimensional Black Phosphorus-Based Nanostructures for Photocatalytic Applications [J]. Progress in Chemistry, 2022, 34(3): 630-642.
[7] Nan Wang, Yuqi Zhou, Ziye Jiang, Tianyu Lv, Jin Lin, Zhou Song, Lihua Zhu. Synergistically Consecutive Reduction and Oxidation of Per- and Poly-Halogenated Organic Pollutants [J]. Progress in Chemistry, 2022, 34(12): 2667-2685.
[8] Wenjing Wang, Di Zeng, Juxue Wang, Yu Zhang, Ling Zhang, Wenzhong Wang. Synthesis and Application of Bismuth-Based Metal-Organic Framework [J]. Progress in Chemistry, 2022, 34(11): 2405-2416.
[9] Chenliu Tang, Yunjie Zou, Mingkai Xu, Lan Ling. Photocatalytic Reduction of Carbon Dioxide with Iron Complexes [J]. Progress in Chemistry, 2022, 34(1): 142-154.
[10] Ming Ge, Zheng Hu, Quanbao He. Application of Spinel Ferrite-Based Advanced Oxidation Processes in Organic Wastewater Treatment [J]. Progress in Chemistry, 2021, 33(9): 1648-1664.
[11] Xiaoping Chen, Qiaoshan Chen, Jinhong Bi. Photocatalytic Degradation of Polycyclic Aromatic Hydrocarbon in Soil [J]. Progress in Chemistry, 2021, 33(8): 1323-1330.
[12] Wenliang Han, Linyang Dong. Activation Methods of Advanced Oxidation Processes Based on Sulfate Radical and Their Applications in The Degradation of Organic Pollutants [J]. Progress in Chemistry, 2021, 33(8): 1426-1439.
[13] Yifan Zhao, Qiyun Mao, Xiaoya Zhai, Guoying Zhang. Structural Defects Regulation of Bismuth Molybdate Photocatalyst [J]. Progress in Chemistry, 2021, 33(8): 1331-1343.
[14] Hongfei Bi, Jinsong Liu, Zhengying Wu, He Suo, Xueliang Lv, Yunlong Fu. Modified Synthesis and Photocatalytic Properties of Indium Zinc Sulfide [J]. Progress in Chemistry, 2021, 33(12): 2334-2347.
[15] Hanqiang Zhou, Mingfei Yu, Qiaoshan Chen, Jianchun Wang, Jinhong Bi. Synthesis, Modification of Bismuth Oxyiodide Photocatalyst for Purification of Nitric Oxide [J]. Progress in Chemistry, 2021, 33(12): 2404-2412.