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Effects of methyl-CD and humic acid on hydrolytic degradation of the herbicide 被引量:3

Effects of methyl-CD and humic acid on hydrolytic degradation of the herbicide diclofop-methyl
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摘要 Hydrolytic degradation of the herbicide diclofop methyl was investigated in the multi pH deionized water, natural aquatic systems and soil suspensions. Resulting data indicated that the herbicide was stable in the acidic and nearly neutral solutions for at least 15 d. The herbicide diclofop methyl rapidly dissipated in the natural aquatic systems and soil suspensions with half lives less than 4 d. Methyl CD(partially methylated β cyclodextrin) improved its hydrolytic degradation in the pH 8 deionized water and natural aquatic systems while humic acid inhibited its hydrolytic degradation at the same conditions. But dissolved organic matter in the natural aquatic systems and soil suspensions increased its hydrolysis. Two catalysis mechanisms were introduced to describe the effects of cyclodextrin and organic matter on its hydrolytic metabolism. Though inorganic ions maybe improved its hydrolysis reaction in the natural aquatic systems, Fe 2+ and Cu 2+ did not form complexes with the herbicide and had poor influences on its hydrolytic degradation whether cyclodextrin was added or not. Hydrolytic degradation of the herbicide diclofop methyl was investigated in the multi pH deionized water, natural aquatic systems and soil suspensions. Resulting data indicated that the herbicide was stable in the acidic and nearly neutral solutions for at least 15 d. The herbicide diclofop methyl rapidly dissipated in the natural aquatic systems and soil suspensions with half lives less than 4 d. Methyl CD(partially methylated β cyclodextrin) improved its hydrolytic degradation in the pH 8 deionized water and natural aquatic systems while humic acid inhibited its hydrolytic degradation at the same conditions. But dissolved organic matter in the natural aquatic systems and soil suspensions increased its hydrolysis. Two catalysis mechanisms were introduced to describe the effects of cyclodextrin and organic matter on its hydrolytic metabolism. Though inorganic ions maybe improved its hydrolysis reaction in the natural aquatic systems, Fe 2+ and Cu 2+ did not form complexes with the herbicide and had poor influences on its hydrolytic degradation whether cyclodextrin was added or not.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第1期67-71,共5页 环境科学学报(英文版)
基金 TheNationalNaturalScienceFoundationofChinafortheDistinguishedYoungScholarsProgram(No.20225721)andtheNationalNaturalScienceFoundationofChina(No.30270767)
关键词 DICLOFOP-METHYL methyl-CD organic matter humic acid hydrolysis diclofop-methyl methyl-CD organic matter humic acid hydrolysis
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