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Treatment of desizing wastewater from the textile industry by wet air oxidation
作者姓名:LEI  Le-cheng
作者单位:Department of Environmental Science and Engineering, College of Chemical Engineering, Zhejiang University, Hangzhou 310027,China. E-mail: lclei@mail. hz. zj. cn
摘    要:This paper describes the application of wet air oxidation to the treatment of desizing wastewater from two textile companies. A two-liter high temperature, high pressure autoclave reactor was used in the study. The range of operating temperatures examined was between 150 and 290℃, and the partial pressure of oxygen ranged from 0. 375 to 2.25 MPa. Variations in pH,CODCr and TOD content were monitored during each experiment and used to assess the extent of conversion of the process. The effects of temperature, pressure and reaction time were explored extensively. More than 90 % CODCr reduction and 80 % TOC removal have been obtained. The results have also been demonstrated that WAO is a suitable pre-treatment methods due to improvement of the BOD5/CODCr ratio of desizing wastewater. The reaction kinetics of wet air oxidation of desizing wastewater has been proved to be two steps, a fast reaction followed by a slow reaction stage.

关 键 词:wet  air  oxidation  wastewater  treatment  textile  wastewater
修稿时间:1999-04-16

Treatment of desizing wastewater from the textile industry by wet air oxidation
LEI Le-cheng.Treatment of desizing wastewater from the textile industry by wet air oxidation[J].Acta Scientiae Circumstantiae,2000,12(3):290-295.
Authors:LEI Le-cheng  SUN Yuan
Abstract:This paper describes the application of wet air oxidation to the treatment of desizing wastewater from two textile companies. A two-liter high temperature, high pressure autoclave reactor was used in the study. The range of operating temperatures examined was between 150 and 290℃, and the partial pressure of oxygen ranged from 0. 375 to 2.25 MPa. Variations in pH,CODCr and TOD content were monitored during each experiment and used to assess the extent of conversion of the process. The effects of temperature, pressure and reaction time were explored extensively. More than 90 % CODCr reduction and 80 % TOC removal have been obtained. The results have also been demonstrated that WAO is a suitable pre-treatment methods due to improvement of the BOD5/CODCr ratio of desizing wastewater. The reaction kinetics of wet air oxidation of desizing wastewater has been proved to be two steps, a fast reaction followed by a slow reaction stage.
Keywords:wet air oxidation  wastewater treatment  textile wastewater
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