邱艳, 申平, 刘凯. 莫尔法酸度上限和指示剂用量探讨[J]. 内江师范学院学报, 2017, (2): 82-84. DOI: 10.13603/j.cnki.51-1621/z.2017.02.014
    引用本文: 邱艳, 申平, 刘凯. 莫尔法酸度上限和指示剂用量探讨[J]. 内江师范学院学报, 2017, (2): 82-84. DOI: 10.13603/j.cnki.51-1621/z.2017.02.014
    QIU Yan, SHEN Ping, LIU Kai. The Investigation of the Maximum Acidity and Dosage of Indicator in Mohr Method[J]. Journal of Neijiang Normal University, 2017, (2): 82-84. DOI: 10.13603/j.cnki.51-1621/z.2017.02.014
    Citation: QIU Yan, SHEN Ping, LIU Kai. The Investigation of the Maximum Acidity and Dosage of Indicator in Mohr Method[J]. Journal of Neijiang Normal University, 2017, (2): 82-84. DOI: 10.13603/j.cnki.51-1621/z.2017.02.014

    莫尔法酸度上限和指示剂用量探讨

    The Investigation of the Maximum Acidity and Dosage of Indicator in Mohr Method

    • 摘要: 根据铬酸的解离平衡及与重铬酸根的转化关系,结合滴定终点对溶液颜色变化的要求,推证出莫尔法酸度上限的 pH 为 6. 36,考虑到各参数的误差及活度等因素的影响,一般取 6. 5;在此基础上,通过铬酸根与酸度的关系,确定了指示剂在不同酸度条件下的具体用量.

       

      Abstract: Based on dissociation equilibrium of the chromic acid and the re-lationship between the transformation of the chromic acid and dichromic acid ions, combined with the requirements of the endpoint of titration for color change, the pH’s upper limit of the acidity in Mohr method was worked out to be6. 36. However, considering the impact of various factors such as error of each parameter and activity, the pH’s upper limit of the acidity in Mohr method is usually taken as6. 5. On this basis, the specific dosage of indicator under different acidity conditions was determined by the relation between chromate and acidity. And this can provide elaborate theoretical basis for titration operation.

       

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