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张磊,王蕾,贾正勋,等. 三氯化六氨合钴法测定土壤中阳离子交换量的方法优化[J]. 岩矿测试,2024,x(x):1−8. DOI: 10.15898/j.ykcs.202304240054
引用本文: 张磊,王蕾,贾正勋,等. 三氯化六氨合钴法测定土壤中阳离子交换量的方法优化[J]. 岩矿测试,2024,x(x):1−8. DOI: 10.15898/j.ykcs.202304240054
ZHANG Lei,WANG Lei,JIA Zhengxun,et al. Optimization of the Method for Determining Cation Exchange Capacity in Soil by Cobalt Hexamine Trichloride Method[J]. Rock and Mineral Analysis,2024,x(x):1−8. DOI: 10.15898/j.ykcs.202304240054
Citation: ZHANG Lei,WANG Lei,JIA Zhengxun,et al. Optimization of the Method for Determining Cation Exchange Capacity in Soil by Cobalt Hexamine Trichloride Method[J]. Rock and Mineral Analysis,2024,x(x):1−8. DOI: 10.15898/j.ykcs.202304240054

三氯化六氨合钴法测定土壤中阳离子交换量的方法优化

Optimization of the Method for Determining Cation Exchange Capacity in Soil by Cobalt Hexamine Trichloride Method

  • 摘要: 土壤阳离子交换量(CEC)是评价土壤保肥能力和改良土壤、合理施肥的重要依据,同时也能影响土壤中污染物的迁移转化。与传统的乙酸铵交换法、乙酸钙交换法测定CEC的方法相比,三氯化六氨合钴法的操作步骤简洁,检测效率高,试剂消耗量小,对大批量样品的分析有明显优势。但该方法的适用范围较小,对中性和碱性样品检测结果好,但对酸性样品的检测结果偏低至50%。为解决以上问题,本文以2mol/L氢氧化钠溶液调节pH至碱性,样品的CEC测定值有显著提高,酸性和碱性样品测定结果均可达到标准值范围内。通过绘制pH调节曲线,得到不同pH范围的土壤样品中加入2mol/L氢氧化钠溶液体积,以此调节未知样品的pH值,实现CEC的准确测定。在原有的方法基础上调节样品pH至碱性,优化后的方法精密度范围为1.02%~3.82%(n=6)。

     

    Abstract:
    BACKGROUND Compared with the traditional ammonium acetate exchange method and calcium acetate exchange method to determine CEC, cobalt hexamine trichloride method has the advantages of simple operation steps, high detection efficiency and low reagent consumption, and has obvious advantages in the analysis of large quantities of samples. The application scope of this method is limited, and the detection results of neutral and alkaline samples are good, but the detection results of acidic samples are as low as 50%.
    OBJECTIVES Optimizing the test method to improve the accuracy of acidic and alkaline samples CEC, and use the method for soil available state analysis and evaluation.
    METHODS Combined with previous studies, adjusted the pH to alkaline with 2mol/L sodium hydroxide solution, and the CEC measurement value of the sample was significantly improved, and the measurement results of both acidic and alkaline samples could reach the standard value range. By drawing the pH adjustment curve, the volume of 2mol/L sodium hydroxide solution was obtained in soil samples with different pH ranges, so as to adjust the pH value of unknown samples and realize the accurate determination of CEC.
    RESULTS The pH of the sample was adjusted on the basis of the original method. The precision of the optimized method ranged from 1.02% to 3.82% (n=6), and the accuracy met the analysis requirements.
    CONCLUSIONS After optimization, the application scope of the method is wider, the precision and accuracy are improved, and the detection efficiency of a large number of samples is effectively improved.

     

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