来自达拉-伊-皮奥兹碱性丘陵的褐铁矿和褐铁矿(Ce):对硼硅酸盐高温行为的认识

E. V. Kaneva, O. Belozerova, T. Radomskaya, R. Shendrik
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引用次数: 0

摘要

研究课题。Reedmergnerite 和 stillwellite-(Ce)是从位于塔吉克斯坦阿莱山脉南坡的 Dara-i-Pioz 碱性地块的岩石中获得的,该地块的特点是存在包括硼硅酸盐和锂矿物在内的稀有矿种。研究目的利用高温 X 射线衍射法研究芦苇锰矿和霞石(Ce)的热行为,包括确定相变温度和单胞参数的膨胀/压缩,以及计算热膨胀系数。材料和方法使用 TESCAN MIRA 3 显微镜(EDS 模式)和 JEOL JXA-8230 电子探针显微分析仪(WDS 模式)进行化学分析。高温粉末 X 射线衍射数据是使用配备 HTK16 加热室的 D8 ADVANCE Bruker 衍射仪收集的,温度范围为 30°C 至 750°C(环境空气)。研究结果测定了苇镁石和钨铝铁矿石(Ce)的热膨胀系数。加热芦苇麦饭石会导致单胞参数发生轻微变化,其中参数 c 的变化最小,参数 a 的变化最大。加热至 750°C 时,单胞体积增加了 1.8%,冷却后又恢复到初始值。在 400-450°C 的温度范围内加热锡铅矿石(Ce)时,会发生相变,之前记录的温度值也证实了这一点。加热和随后的冷却实验表明,硅钨铁矿石(Ce)的体积和单胞参数并未完全恢复到初始值。结论利用高温原位实验研究了菱锰矿和钨辉石(Ce)的热膨胀系数(αij)与温度的函数关系。与从文献中获得的长石和硼硅酸盐的一般数据相比,这些物相的热膨胀参数值相对较低。这些发现有助于了解这组矿物的热弹性行为及其在各个领域的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reedmergnerite and stillwellite-(Ce) from the Dara-i-Pioz alkaline massif: insights into high-temperature behavior of borosilicates
Research subject. Reedmergnerite and stillwellite-(Ce) were obtained from the rocks of the Dara-i-Pioz alkaline massif located on the southern slope of the Alai Range in Tajikistan, which is characterized by the presence of rare mineral species including borosilicates and lithium minerals. Aim. To investigate the thermal behavior of reedmergnerite and stillwellite-(Ce) using high-temperature X-ray diffraction, including the determination of phase transition temperatures and expansion/compression of the unit cell parameters, as well as the calculation of thermal expansion coefficients. Materials and methods. Chemical analysis was performed using a TESCAN MIRA 3 microscope (EDS mode) and a JEOL JXA-8230 electron probe microanalyzer (WDS mode). High-temperature powder X-ray diffraction data were collected using a D8 ADVANCE Bruker diffractometer with an HTK16 heating chamber, covering temperatures from 30°C to 750°C in ambient air. Results. The thermal expansion coefficients of reedmergnerite and stillwellite-(Ce) were determined. Heating reedmergnerite resulted in slight changes in the unit cell parameters, with the parameter c experiencing the smallest change and the parameter a showing the greatest increase. The unit cell volume increased by 1.8% when heated to 750°C and returned to its initial value upon cooling. When stillwellite-(Ce) is heated in the temperature range of 400–450°C, a phase transition occurs, which is confirmed by previously recorded temperature values. The conducted heating and subsequent cooling experiments revealed that the volume and unit cell parameters of stillwellite-(Ce) did not fully revert to their original values. Conclusions. The coefficients of thermal expansion tensor (αij) of rhodmerdgnertite and stillwellite-(Ce) were investigated as a function of temperature using high-temperature in-situ experiments. The phases exhibited relatively low values of thermal expansion parameters compared to the general data for feldspars and borosilicates obtained from literature. These findings contribute to the understanding of the thermoelastic behavior of this group of minerals and their potential applications in various fields.
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