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Cation exchange capacity methodology Ⅰ: An efficient model for the detection of incorrect cation exchange capacity and exchangeable cation results

机译:阳离子交换容量法Ⅰ:检测错误阳离子交换容量和可交换阳离子结果的有效模型

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In this study a model is proposed enabling the detection of incorrect cation exchange capacity (CEC) and exchangeable cation values. Numerous CEC and exchangeable cation analyses of clayey sediments, soils and bentonites were performed using triethanolamine-buffered barium chloride, ammonium acetate, silver thiourea and other exchange techniques. As long as these naturally clayey materials only contain adsorbents like clay minerals, organic substances and a group of mainly detrital minerals like quartz, feldspar and mica, results obtained with most procedures are correct. Problems arise when materials contain secondary phases like soluble Ca-carbonates and -sulphates. During the CEC-experiments, these phases interact with the exchange solution. According to expectations, results of exchangeable calcium values are incorrect but CEC is also affected [Deller, B., 1981. Determination of exchangeable acidity, carbonate ions and change of buffer in triethanolamine-buffered solutions percolated through soil samples containing carbonates. Commun. Soil Sci. Plant Analysis 12, 161-177.]. Using the proposed Carbonate and Sulphate Field Model (CSF model) an evaluation of the accuracy of results is possible.
机译:在这项研究中,提出了一个能够检测不正确的阳离子交换容量(CEC)和可交换阳离子值的模型。使用三乙醇胺缓冲的氯化钡,乙酸铵,硫脲银和其他交换技术对粘土状沉积物,土壤和膨润土进行了大量的CEC和可交换阳离子分析。只要这些天然黏土材料仅包含吸附剂(例如粘土矿物,有机物质)和一组主要是碎屑矿物(例如石英,长石和云母),则大多数步骤所获得的结果都是正确的。当材料包含诸如可溶性碳酸钙和硫酸盐的第二相时,会出现问题。在CEC实验期间,这些阶段与交换解决方案交互。根据期望,可交换钙值的结果不正确,但CEC也受到影响[Deller,B.,1981。可交换酸度,碳酸根离子的测定以及三乙醇胺缓冲溶液中的缓冲液变化通过含碳酸盐的土壤样品。公社土壤科学植物分析12,161-177。]。使用建议的碳酸盐和硫酸盐气田模型(CSF模型),可以评估结果的准确性。

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