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Effect of electron beam irradiation on the degradation of monochlorophenols in aqueous solution 被引量:3

Effect of electron beam irradiation on the degradation of monochlorophenols in aqueous solution
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摘要 Electron beam was successfully used for the degradation of 2-chlorophenol(2-CP) and 4-chlorophenol(4-CP) in aqueous solutions in this research. The effect of radiation dose on substrate degradation and dechlorination of solutions with concentration of 50 mg/L was investigated. The effect of initial concentration, pH and presence of oxygen was also investigated. The concentration of 2-CP and 4-CP remaining in solution after irradiation were measured by HPLC. The results showed that increased radiation dose led to increased degradation of the chlorophenols and increased Cl - yield. Deaeration was also found to significantly increase the rate of degradation of chlorophenols in water while degradation and dechlorination under alkaline condition was lower than at low to neutral pH. Electron beam was successfully used for the degradation of 2-chlorophenol(2-CP) and 4-chlorophenol(4-CP) in aqueous solutions in this research. The effect of radiation dose on substrate degradation and dechlorination of solutions with concentration of 50 mg/L was investigated. The effect of initial concentration, pH and presence of oxygen was also investigated. The concentration of 2-CP and 4-CP remaining in solution after irradiation were measured by HPLC. The results showed that increased radiation dose led to increased degradation of the chlorophenols and increased Cl - yield. Deaeration was also found to significantly increase the rate of degradation of chlorophenols in water while degradation and dechlorination under alkaline condition was lower than at low to neutral pH.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第2期301-304,共4页 环境科学学报(英文版)
基金 TheNationalNaturalScienceFoundationofChina(No .50 30 30 0 9) ShanghaiEducationCouncilFoundation(No .0 3AQ96)
关键词 electron beam monochlorophenols DEGRADATION deaeration electron beam monochlorophenols degradation deaeration
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