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Frontiers of Chemical Science and Engineering

ISSN 2095-0179

ISSN 2095-0187(Online)

CN 11-5981/TQ

邮发代号 80-969

2019 Impact Factor: 3.552

Frontiers of Chemical Engineering in China - Selected Publications from Chinese Universities  2008, Vol. 2 Issue (2): 191-195   https://doi.org/10.1007/s11705-008-0028-x
  本期目录
A pilot scale test of ozonization treatment of ethene wastewater for reuse
A pilot scale test of ozonization treatment of ethene wastewater for reuse
ZHONG Li1, REN Wei1, GUO Wenjing2
1.School of Chemical and Energy Engineering, South China University of Technology; 2.School of Chemical and Energy Engineering, South China University of Technology;Zhuhai Cellulose Fiber Co., Ltd.
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Abstract:A pilot scale test of advanced treatment of ethene wastewater by ozonization was carried out for industrial water reuse. Effects of different operating conditions on COD degradation, such as wastewater flow rate, ozonized gas flow rate, operating voltage of ozonizer and two ozone generation means, using pure oxygen or air, was investigated. The results show that the increase of ozonizer operating voltage, the decrease of wastewater flow rate and the suitable ozonized gas flow rate improve the removal of COD in wastewater and that ozone generated respectively from air and pure oxygen can effectively remove COD of ethene wastewater to meet the industrial water reuse criterion.
出版日期: 2008-06-05
 引用本文:   
. A pilot scale test of ozonization treatment of ethene wastewater for reuse[J]. Frontiers of Chemical Engineering in China - Selected Publications from Chinese Universities, 2008, 2(2): 191-195.
ZHONG Li, REN Wei, GUO Wenjing. A pilot scale test of ozonization treatment of ethene wastewater for reuse. Front. Chem. Sci. Eng., 2008, 2(2): 191-195.
 链接本文:  
https://academic.hep.com.cn/fcse/CN/10.1007/s11705-008-0028-x
https://academic.hep.com.cn/fcse/CN/Y2008/V2/I2/191
1 Kuo C H Zhong L Zappi M Hong A P Kinetics andmechanism of the reaction between ozone and hydrogen peroxide in aqueoussolutionsCanadian J of Chem Eng 1999 77(3)473482
2 Glaze W H Kang J Advanced oxidation processInd Eng Chem Res 1989 28(8)15731580.
doi:10.1021/ie00095a001
3 Duguet J P Applicationof combined ozone-hydrogen peroxide for the removal of aromatic compoundsfrom a groundwaterOzone Sci & Tech 1990 12(3)281289
4 Gloyna E F Li L X Supercritical water oxidationresearch and development updateEnvironmentalProcess 1995 14(3)182192.
doi:10.1002/ep.670140318
5 Calderara V Jekel M Zaror C Kinetics of ozone reactions with 1-naphthalene, 1,5-naphthaleneand 2-nitrobenzene sulphonic acids in aqueous solutionsWater Sci and Tech 2001 44(5)713
6 Papaiacovou I Casestudy-wastewater reuse in Limassol as an alternative water sourceDesalination 2001 138(1–3)5559.
doi:10.1016/S0011‐9164(01)00244‐2
7 Guo W J Researchof ethane wastewater reuseDissertationfor the Master DegreeGuangzhouSouth China University of Technology 2003 2130 (in Chinese)
8 Zhong L Kuo C H Reaction and kinetics of ozonizationof trichloroethylene and benzene in gas and liquid phasesChin J of Chem Eng 2000 8(3)272275 (in Chinese)
9 Zhong L Zhan H Y Kuo C H Advanced oxidation and degradation of vinyl chloride inwaterChem Eng & Tech 2002 2(4)433437.
doi:10.1002/1521‐4125(200204)25:4<433::AID‐CEAT433>3.0.CO;2‐8
10 Ledakowicz S Maciejewska R Perkowski J Bin A Ozonation ofreactive blue 81in the bubble columnWaterSci and Tech 2001 44(5)4752
11 Lu Z Chen Z Cai L Water treatment technologyShanghaiEast China Universityof Technology Press 2000 910 (in Chinese)
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