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Experimental Study of Closed System in the Chlorine Dioxide-Iodide-Sulfuric Acid Reaction by UV-Vis Spectrophotometric Method

机译:紫外可见分光光度法研究二氧化氯-碘化物-硫酸反应中的封闭体系

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摘要

The mole ratio r(r = [I]0/[ClO2]0) has great influence on ClO2-I-H2SO4 closed reaction system. By changing the initiate concentration of potassium iodide, the curve of absorbance along with the reaction time was obtained at 350 nm and 297 nm for triiodide ion, and 460 nm for iodine. The changing point of the absorbance curve's shape locates at r = 6.00. For the reaction of ClO2-I in the absence of H2SO4, the curve of absorbance along with the reaction time can be obtained at 350 nm for triiodide ion, 460 nm for iodine. The mole ratio r is equal to 1.00 is the changing point of the curve's shape no matter at which wavelength to determine the reaction. For the reaction of ClO2-I-H+ in different pH buffer solution, the curve of absorbance along with the reaction time was recorded at 460 nm for iodine. When r is greater than 1.00, the transition point of the curve's shape locates at pH 2.0, which is also the point of producing chlorite or chloride for chlorine dioxide at different pH. When r is less than 1.00, the transition point locates at pH 7.0.
机译:摩尔比r(r = [Isup>-] 0 / [ClO2] 0)对ClO2-I - -H2SO4密闭反应系统影响很大。通过改变碘化钾的起始浓度,三碘化物离子在350 nm和297 nm处,碘在460 nm处得到吸光度随反应时间的变化曲线。吸光度曲线形状的变化点位于r = 6.00。对于在不存在硫酸的情况下ClO2-I -的反应,三碘化物离子在350 nm处,碘在460 nm处可获得吸光度随反应时间的变化曲线。摩尔比r等于1.00是曲线形状的变化点,而与确定反应的波长无关。对于ClO2-I - -H + 在不同pH缓冲溶液中的反应,在460 nm处记录了碘的吸光度随反应时间的变化曲线。当r大于1.00时,曲线形状的过渡点位于pH 2.0,这也是在不同pH值下生成亚氯酸盐或二氧化氯的氯化物的点。当r小于1.00时,转变点位于pH 7.0。

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