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In situ observation of gypsum-anhydrite transition at high pressure and high temperature
Liu Chuan-Jiang;Zheng Hai-Fei
2012
Source PublicationChinese Physics Letters
Volume29Issue:4Pages:1-5
Abstract

An in-situ Raman spectroscopic study of gypsum-anhydrite transition under a saturated water condition at high pressure and high temperature is performed using a hydrothermal diamond anvil cell (HDAC). The experimental results show that gypsum dissolvs in water at ambient temperature and above 496 MPa. With increasing temperature, the anhydrite (CaSO4) phase precipitates at 250–320°C in the pressure range of 1.0–1.5GPa, indicating that under a saturated water condition, both stable conditions of pressure and temperature and high levels of Ca and SO4 ion concentrations in aqueous solution are essential for the formation of anhydrite. A linear relationship between the pressure and temperature for the precipitation of anhydrite is established as P(GPa) = 0.0068T−0.7126 (250°C≤T≤320°C). Anhydrite remained stable during rapid cooling of the sample chamber, showing that the gypsum-anhydrite transition involving both dissolution and precipitation processes is irreversible at high pressure and high temperature.

Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10995
Collection地球内部物质高温高压实验室
Affiliation1.Key Laboratory of Orogenic Belts and Crustal Evolution (Ministry of Education), Peking University, Beijing 100871
2.Institute of Geochemistry, Peking University, Beijing 100871
Recommended Citation
GB/T 7714
Liu Chuan-Jiang;Zheng Hai-Fei. In situ observation of gypsum-anhydrite transition at high pressure and high temperature[J]. Chinese Physics Letters,2012,29(4):1-5.
APA Liu Chuan-Jiang;Zheng Hai-Fei.(2012).In situ observation of gypsum-anhydrite transition at high pressure and high temperature.Chinese Physics Letters,29(4),1-5.
MLA Liu Chuan-Jiang;Zheng Hai-Fei."In situ observation of gypsum-anhydrite transition at high pressure and high temperature".Chinese Physics Letters 29.4(2012):1-5.
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