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难降解芳烃化合物在超临界水中氧化的COD去除率的研究
引用本文:陈丰秋,吴素芳,陈纪忠,戎顺熙.难降解芳烃化合物在超临界水中氧化的COD去除率的研究[J].中国化学工程学报,2001,9(2):137-140.
作者姓名:陈丰秋  吴素芳  陈纪忠  戎顺熙
作者单位:CHEN Fengqiu WU Sufang CHEN JizhongRONG ShunxilDepartment of Chemical Engineering,Zhejiang University,Hangzhou 310027,China
基金项目:the Research Foundation of SINOPEC(No. X596006) and Cao Guangbiao's Advanced Research Foundation of Zhejiang University.
摘    要:Some aromatic compounds, phenol, aniline and nitrobenzene, were oxidized in supercritical water. It was experimentally found that the chemical oxygen demand (COD) removal efficiency of these organic compounds can achieve a high level more than 90% in a short residence time at temperatures high enough. As temperature, pressure and residence time increase, the COD removal efficiencies of the organic compounds would all increase. It is also found that temperature and residence time offer greater influences on the oxidation process than pressure. The difficulty in oxidizing these three compounds is in the order of nitrobenzene > aniline > phenol. In addition, it is extremely difficult to oxidize aniline and nitrobenzene to CO2 and H2O at the temperature lower than 873.15 K and 923.15 K, respectively. Only at the temperature higher than 873.15 K and 923.15 K, respectively, the COD removal efficiencies of 90% of aniline and nitrobenzene can be achieved.

关 键 词:难降解芳烃化合物  超临界水  氧化  COD  去除率  化学需氧量  苯酚  苯胺  硝基苯  废水处理
修稿时间: 

COD Removal Efficiencies of Some Aromatic Compounds in Supercritical Water Oxidation
Chen Fengqiu,WU Sufang,CHEN Jizhong,Rong Shunxi.COD Removal Efficiencies of Some Aromatic Compounds in Supercritical Water Oxidation[J].Chinese Journal of Chemical Engineering,2001,9(2):137-140.
Authors:Chen Fengqiu  WU Sufang  CHEN Jizhong  Rong Shunxi
Affiliation:Department of Chemical Engineering, Zhejiang University, Hangzhou 310027, China
Abstract:Some aromatic compounds, phenol, aniline and nitrobenzene, were oxidized in supercritical water. It was experimentally found that the chemical oxygen demand (COD) removal efficiency of these organic compounds can achieve a high level more than 90% in a short residence time at temperatures high enough. As temperature, pressure and residence time increase, the COD removal efficiencies of the organic compounds would all increase. It is also found that temperature and residence time offer greater influences on the oxidation process than pressure. The difficulty in oxidizing these three compounds is in the order of nitrobenzene > aniline > phenol. In addition, it is extremely difficult to oxidize aniline and nitrobenzene to CO2 and H2O at the temperature lower than 873.15 K and 923.15K, respectively. Only at the temperature higher than 873.15 K and 923.15 K, respectively, the COD removal efficiencies of 90% of aniline and nitrobenzene can be achieved.
Keywords:phenol  aniline  nitrobenzene  supercritical water oxidation  chemical oxygen demand  
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