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The effect of light on the Mn(II) or Fet(lll)-catalyzed oxidation of aqueous S(IV)
作者姓名:Xu Yongfu  Su Weihan
作者单位:Institute of Atmospheric Physics,Chinese Academy ofSciences,Beijing 100029,China
摘    要:TheeffectoflightontheMn(II)orFetlll)xatalyzedoxidationofaqueousS(IV)XuYongfu(InstituteofAtmosphericPhysics,ChineseAcademyofSc...

关 键 词:photoassisted  catalytic  activity    aqueous  S(IV)    reaction  kinetics.
收稿时间:1991/6/19 0:00:00

The effect of light on the Mn(II) or Fet(lll)-catalyzed oxidation of aqueous S(IV)
Xu Yongfu,Su Weihan.The effect of light on the Mn(II) or Fet(lll)-catalyzed oxidation of aqueous S(IV)[J].Journal of Environmental Sciences,1994,6(1):69-77.
Authors:Xu Yongfu
Abstract:in absence of light, the reaction kinetics of Mn(II) and Fe(III)-atalyzed oxidation ofS(IV) in unbuffered and buffered solutions were studied. An activation energy of 77.4kJ . mol-1 forthe Mn(II)catalyzed oxidation of S(IV) is obtained. On the basis of the investigation of thecatalytic effects of Mn(II) and Fe(III) on the oxidation of S(IV), it has been elucidated that thecatalytic activity of Mn(II) is greater than that of Fet(III), and that Mn(II) and Fe(III) do not havea significant synergic effect on the catalytic oxidation of S (IV). The catalytic oxidation andautooxidation of S(IV) in unbuffered solution was also explored in the presence of light. The resultsshow that the reaction is first order with respect to S(IV) concentrations, the reaction rate increaseswith increasing light intensity and the concentrations of Fe(III) and Mn(II), and that the photoas-sisted catalytic activity of Fe(III) is greater than that of Mn(II).
Keywords:photoassisted catalytic activity  aqueous S(IV)  reaction kinetics  
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