过氧化氢与氧化铬相互作用动力学参数的测定

Abdu, U. Faruq, A. Aska, S. Dangoggo, K. Baraya
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引用次数: 1

摘要

研究了氧化铬与过氧化氢相互作用的动力学。双氧水以水溶液形式销售,本研究中双氧水为限用试剂,首先用高锰酸钾标准溶液(0.02M)滴定测定其浓度,然后再使用。通过测定析氧量和析氧停止时间,研究了不同质量的CrO3对固定体积H2O2分解的影响。同样,还研究了不同体积的H2O2与固定质量的CrO3的分解效果。在反应结束时,同样记录O2的释放量和O2的释放时间。上述分解结果表明,CrO3起催化剂的作用。发现在CrO3催化下H2O2的分解为一级反应。这是通过测量同一反应的半衰期来确定的。在35℃和45℃条件下,用不同时间间隔的H2O2酸化溶液对KMnO4溶液进行滴定,计算出比速率常数分别为3.11 × 10 -2和6.11 × 10。用所得的比速率常数值计算了反应的活化能(Ea),得到的活化能为13.49075 kcal。
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Determination of Kinetic Parameters in the interaction between Hydrogen Peroxide and Chromium (VI) Oxide
The kinetics of the interaction between Chromium (vi) Oxide and Hydrogen Peroxide were studied. Hydrogen Peroxide is marketed in the form of an aqueous solution and being a limiting reagent in this research, its concentration was first determined by titration with standard solution of Potassium Permanganate (0.02M) before its subsequent utilization. The effect of varying mass of CrO3 on the decomposition of fixed volume of H2O2 was studied by measuring the volume of oxygen evolved and the time taken for the evolution to cease. Similarly, the effect of the decomposition of varying volumes of H2O2 with fixed mass of CrO3 was also studied. At the end of the reaction, the volume of O2 evolved and the time taken for the evolution of O2 were equally recorded. The results of the above decompositions indicated that CrO3 acted as a catalyst. The decomposition of H2O2 catalyzed by CrO3 was found to be a first order reaction. This was determined through the measurement of the half-life of the same reaction. The results of the titrations of acidified solution of H2O2 against KMnO4 solution at different time intervals carried out at 35 o C and 45 o C were used in calculating the specific rate constants and were found to be 3.11 x10 -2 and 6.11 x 10 respectively. Furthermore, the values of the specific rate constants obtained were used in calculating the activation energy of the reaction (Ea) which was found to be 13.49075 kcal.
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