Auyeshov Abdrazak, Arynov Kazhymuhan, Satimbekova Asem, Yeskibayeva Chaizada, Alzhanov Kurman
Scientific Research Laboratory "Applied Chemistry", M. Auezov South Kazakhstan University, Shymkent 160012, Kazakhstan.
"Institute of Innovative Research and Technology" LLP, Almaty 050010, Kazakhstan.
Molecules. 2024 Sep 19;29(18):4455. doi: 10.3390/molecules29184455.
Changes in the phase composition of serpentinite from the Zhitikarinsky deposit (Kazakhstan) were studied during heat treatment in the temperature range of 105-800 °C in order to determine the phase that leads to an increase in the reactivity of serpentinite during interactions with acids. In accordance with this, the task was set to consider the influence of temperatures (105 °C, 600 °C, 660 °C, 725 °C, 750 °C and 800 °C), selected according to the extreme points of the main transformations from its derivatogram, on changes in the phase composition. The effects of heat treatment on the phase composition and reactivity of serpentinite during interactions with sulfuric acid were studied and discussed using the diffraction patterns of serpentinite heat treated at selected temperatures for 1 h and using methods of thermodynamic evaluation of the possible reactions in the temperature range of 350-750 °C, as well as establishing the nature of their interaction with sulfuric acid under identical conditions. It has been shown that, in the range of 600-750 °C, the crystal lattice of the structural composition of serpentinite is completely destroyed with the formation of not only magnesium silicates but possibly also magnesium oxide, which leads to the thermal activation of serpentinite in relation to interactions with acids and the improvement of the technological process of extracting magnesium from it. The greatest increase in reactivity was found in serpentinite samples heat treated at temperatures of 725 °C and 750 °C, which can be recommended for the thermal activation of serpentinite before using acid methods to improve the technological performance of the process of extracting magnesium from serpentinite.
研究了哈萨克斯坦日季卡林斯基矿床蛇纹岩在105 - 800°C温度范围内热处理过程中的相组成变化,以确定在与酸相互作用时导致蛇纹岩反应活性增加的相。据此,设定任务是考虑根据其热重曲线主要转变的极值点选择的温度(105°C、600°C、660°C、725°C、750°C和800°C)对相组成变化的影响。利用在选定温度下热处理1小时的蛇纹岩的衍射图谱,并采用350 - 750°C温度范围内可能反应的热力学评估方法,以及在相同条件下确定它们与硫酸相互作用的性质,研究并讨论了热处理对蛇纹岩与硫酸相互作用时的相组成和反应活性的影响。结果表明,在600 - 750°C范围内,蛇纹岩结构组成的晶格完全被破坏,不仅形成了镁硅酸盐,还可能形成了氧化镁,这导致蛇纹岩在与酸相互作用时发生热活化,并改善了从中提取镁的工艺过程。在725°C和750°C温度下热处理的蛇纹岩样品中发现反应活性增加最大,可推荐在使用酸法提高从蛇纹岩中提取镁的工艺性能之前对蛇纹岩进行热活化。