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Phase transition and thermoelastic behavior of barite-group minerals at high-pressure and high-temperature conditions
Zhilin Ye;  Bo Li;   Wei Chen;  Ruilian Tang;  Shijie Huang;  Jingui Xu;  Dawei Fan;   Wenge Zhou;  Maining Ma;  Hongsen Xie
2019
Source PublicationPhysics and Chemistry of Minerals
Volume46Pages:607–621
Abstract

Experimental studies on the phase transition and thermoelastic behavior of barite-group minerals are crucial to understand the recycle of sulfur in Earth’s interior. Here, we present a high-pressure and high-temperature (high P–T) study on two baritegroup minerals—barite (BaSO4) and celestite (SrSO4) up to ~59.5 GPa 700 K and ~22.2 GPa, 700 K, respectively, using in situ synchrotron-based X-ray diffraction (XRD) combined with diamond anvil cells (DACs). Our results show that BaSO4 undergoes a pressure-induced phase transition from Pbnm to P212121 at ~ 20.3 GPa, which is different from the previous results. Upon decompression, the high-pressure phase of BaSO4 transforms back into its initial structure, which indicates a reversible phase transition. However, no phase transitions have been detected in SrSO4 over the experimental P–T range. In addition, fitting a third-order Birch–Murnaghan equation of state to the pressure–volume data yields the bulk moduli and their pressure derivatives of BaSO4 and SrSO4. Simultaneously, the thermal expansion coefficients of BaSO4 and SrSO4 are also obtained, by fitting the temperature-volume data to the Fei-type thermal equation of state. Furthermore, the compositional effects on the phase transformation and thermoelastic behavior of barite-group minerals are also discussed, and the results suggest that the bond length of (M=Ba, Sr, Pb) is an important factor that causes the phase transition pressure of SrSO4 to be the largest, PbSO4 is the second, and BaSO4 is the lowest.

KeywordSulfate High Temperature And High Pressure synchrotron x-ray Diffraction equation Of State diamond Anvil Cell
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10549
Collection地球内部物质高温高压实验室
Affiliation1.Key Laboratory of High-Temperature and High-Pressure Study of the Earth’s Interior, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
2.University of Chinese Academy of Science, Beijing 100049, China
3.Guizhou Polytechnic of Construction, Guiyang 551400, China
4.Center for High Pressure Science and Technology Advanced Research, Changchun 130012, China
5.Changchun University of Science and Technology, Changchun 130022, China
6.Key Laboratory of Computational Geodynamics, College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China
Recommended Citation
GB/T 7714
Zhilin Ye;Bo Li; Wei Chen;Ruilian Tang;Shijie Huang;Jingui Xu;Dawei Fan; Wenge Zhou;Maining Ma;Hongsen Xie. Phase transition and thermoelastic behavior of barite-group minerals at high-pressure and high-temperature conditions[J]. Physics and Chemistry of Minerals,2019,46:607–621.
APA Zhilin Ye;Bo Li; Wei Chen;Ruilian Tang;Shijie Huang;Jingui Xu;Dawei Fan; Wenge Zhou;Maining Ma;Hongsen Xie.(2019).Phase transition and thermoelastic behavior of barite-group minerals at high-pressure and high-temperature conditions.Physics and Chemistry of Minerals,46,607–621.
MLA Zhilin Ye;Bo Li; Wei Chen;Ruilian Tang;Shijie Huang;Jingui Xu;Dawei Fan; Wenge Zhou;Maining Ma;Hongsen Xie."Phase transition and thermoelastic behavior of barite-group minerals at high-pressure and high-temperature conditions".Physics and Chemistry of Minerals 46(2019):607–621.
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