机械化学活化Na2CO3的转化

Nataša Đorđević, Slavica Mihajlović, Katarina Pantovic-Spajic, Jasmina Lozanović-Šajić, M. Grubišić
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引用次数: 0

摘要

在机械活化过程中,被处理材料的能量提高到更高的水平。这可以导致活性物质的化学转化。这就是我们可以讨论由于机械激活而发生的机械化学转化的地方。本文的课题是监测材料在不同活化程度后的质量变化。在机械化学合成过程中经常使用的一种物质是碳酸钠。根据加工环境的不同,通过各种方法检测和测量处理过程中发生的质量变化。质量的增加归因于碳酸钠活化对空气中水分和二氧化碳的化学吸附。我们采用的方法是钙量化学分析。根据得到的结果,发现活化的碳酸钠大量转化为碳酸氢钠,而这些变化在功能上取决于活化时间和加工气氛。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transformations of mechanochemical activated Na2CO3
During mechanical activation, energy of treated material is increase to a higher level. This can lead to chemical transformation of the activated material. This is the point where we can talk about mechanochemical transformations that have occurred as a result of mechanical activation. The subject of this paper is to monitor mass changes of material after different degrees of activation. One of the substances which is often used in the processes of mechanochemical synthesis is sodium carbonate. The mass changes occurring during the treatment were detected and measured by various methods, depending on the processing environment. The mass increase was attributed to chemisorption of moisture and carbon-dioxide present in air, as a consequence of the sodium carbonate activation. The methods we used were calcimetric chemical analysis. According to obtained results, it was found that activated sodium carbonate is mass-transformed into sodium bicarbonate, whereby these changes are functionally dependent on activation time and the processing atmosphere.
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