磷酸盐介导辐照中性氯溶液中Cl2−产率增加的机理研究

E. Wold, T. Brustad, M. Kongshaug
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引用次数: 3

摘要

采用脉冲辐射解法研究了磷酸盐缓冲液组分对氯离子辐射氧化生成Cl2−的影响。中性无磷酸盐0.13 mol dm−3 NaCl溶液中Cl2−的产率远低于相应的酸性溶液(pH <3),但随氯离子浓度的增加而迅速增加。在0.13 mol dm−3 NaCl中加入0.2 mol dm−3磷酸盐缓冲液(pH 6.8),可使n2饱和溶液中Cl2−的产率提高约5倍,N2O的产率提高约10倍。在较高的氯化物浓度下,在N2和N2O中的总产率都接近于在pH为2时G(Cl2−)= G(OH)时的产率。在中性溶液中,磷酸盐介导的G(Cl2−)增强被认为是由H2PO4−向中间氯离子氧化产物ClOH−的质子转移引起的。从H+和磷酸盐对G(Cl2 -)的影响我们得出结论,质子的捐赠速度比质子和ClOH -之间的直接反应慢约100倍。根据先前提出的辐射诱导氯化物氧化的机制,讨论了这些结果。
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On the mechanism for phosphate-mediated increase of Cl2− yield in irradiated, neutral chloride solution

The effect of phosphate buffer components on the radiation induced oxidation of chloride to Cl2 is studied by pulse radiolysis. The yield of Cl2 in neutral phoshate-free 0.13 mol dm−3 NaCl solution is much lower than in the corresponding acidic solution (pH < 3), but increases rapidly with increasing chloride concentration. Addition of 0.2 mol dm−3 phosphate buffer (pH 6.8) to 0.13 mol dm−3 NaCl results in about a five-fold increased yield of Cl2 in N2-saturated solution, and about a 10-fold increase in N2O. At higher chloride concentrations, the total yield both in N2 and N2O is near that at pH 2 when G(Cl2) is suggested to be equal to G(OH). The phosphate mediated enhancement of G(Cl2) in neutral solution is suggested to be caused by a proton transfer from H2PO4 to the intermediate chloride oxidation product ClOH. From the effect of H+ and phosphate on G(Cl2 we conclude that the rate of the proton donation is about 100 times slower than that for the direct reaction between protons and ClOH.

The results are discussed in the light of previously suggested mechanisms for radiation-induced oxidation of chloride.

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