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Application of Catalytic Wet Air Oxidation to Treatment of Landfill Leachate on Co/Bi Catalyst
作者姓名:LIHai-sheng  LIULiang  ZHANGRong  DONGDe-ming  LIUHong-liang  LIYu
作者单位:[1]CollegeofChemicalEngineering,BeijingUniversityofChemicalTechnology,Beijing100029,P.R.China [2]CollegeofEnvironmentandResources,JilinUniversity,Changchun130023,P.R.China
摘    要:Catalytic wet air oxidation(CWAO) was employed to reduce the organic compounds in landfill leachate and the effects of temperature, oxygen pressure, catalyst dosage, and concentration of the organic compounds on the TOC and CODcr removal rates were studied. The degradation kinetics of landfill leachate was also investigated and an exponential experiential model consisting of four influential factors was established to describe the reduction of the organic compounds in the landfill leachate. Meanwhile, the GC-MS technique was used to detect the components of the organic intermediates for the inference of the decomposition mechanisms of the organic compounds in landfill leachate. The results reveal that the reaction temperature and the catalyst dosage are the most important factors affecting the degradation reaction of the organic compounds and that the principal intermediates confirmed by GC-MS are organic acids at a percentage of more than 88% with no aldehydes or alcohols detected. The decomposition mechanisms of the organic compounds in landfill leachate were inferred based on the GC-MS information as follows;the activated gas phase O2 captured the hydrogen of the organic pollutants to produce free radicals, which then initiated the catalytic reaction. So most of the organic compounds were oxidized into CO2 and H2O ultimately. In general, catalytic wet air oxidation over catalyst Co3O4/Bi2O3 was a very promising technique for the treatment of landfill leachate.

关 键 词:钴/镍催化剂  催化湿空气氧化  垃圾沥出物  垃圾处理  分解机理  有机化合物  色谱-质谱联用技术
收稿时间:2004-04-30

Application of Catalytic Wet Air Oxidation to Treatment of Landfill Leachate on Co/Bi Catalyst
LIHai-sheng LIULiang ZHANGRong DONGDe-ming LIUHong-liang LIYu.Application of Catalytic Wet Air Oxidation to Treatment of Landfill Leachate on Co/Bi Catalyst[J].Chemical Research in Chinese University,2004,20(6):711-716.
Authors:LI Hai-Sheng  LIU Liang  ZHANG Rong  DONG De-ming  LIU Hong-liang  LI Yu
Institution:1. College of Chemical Engineering, Beijing University of Chemical Technology, Beijing 100029, P. R. China;
2. College of Environment and Resources, Jilin University, Changchun 130023, P. R. China
Abstract:Catalytic wet air oxidation(CWAO) was employed to reduce the organic compounds in landfill leachate and the effects of temperature, oxygen pressure, catalyst dosage, and concentration of the organic compounds on the TOC and CODCr removal rates were studied. The degradation kinetics of landfill leachate was also investigated and an exponential experiential model consisting of four influential factors was established to describe the reduction of the organic compounds in the landfill leachate. Meanwhile, the GC-MS technique was used to detect the components of the organic intermediates for the inference of the decomposition mechanisms of the organic compounds in landfill leachate. The results reveal that the reaction temperature and the catalyst dosage are the most important factors affecting the degradation reaction of the organic compounds and that the principal intermediates confirmed by GC-MS are organic acids at a percentage of more than 88% with no aldehydes or alcohols detected. The decomposition mechanisms of the organic compounds in landfill leachate were inferred based on the GC-MS information as follows: the activated gas phase O2 captured the hydrogen of the organic pollutants to produce free radicals, which then initiated the catalytic reaction. So most of the organic compounds were oxidized into CO2 and H2O ultimately. In general, catalytic wet air oxidation over catalyst Co3O4/Bi2O3 was a very promising technique for the treatment of landfill leachate.
Keywords:Catalytic wet air oxidation  Organic compound  Landfill leachate  Decomposition mechanism
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