4.5 Article

Realization of parallel experiments in a diamond anvil cell and their application to water-mineral interactions at high-pressure and high-temperature conditions

Journal

REVIEW OF SCIENTIFIC INSTRUMENTS
Volume 93, Issue 5, Pages -

Publisher

AIP Publishing
DOI: 10.1063/5.0075021

Keywords

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Funding

  1. National Key Research and Development Program of China [2019YFA0708501]
  2. Natural Science Foundation of China Major Research Plan on West-Pacific Earth System Multispheric Interactions [92158206]

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In this study, a series of systematic calibration experiments were conducted on the multihole gasket technique using statistical methods. The pressure deviations among different holes in a gasket were constrained to less than 0.2 GPa at average pressures below 10 GPa. The multihole gasket technique could be widely applied to study water-mineral interactions at high-pressure and high-temperature conditions.
Parallel experiments are normally used to compare different chemical systems and conditions simultaneously. In the field of high-pressure experimental science, parallel experiments are hard to realize due to very limited reaction chamber size for the generation of high-pressure conditions, especially in diamond anvil cells (DACs). Multiple holes, instead of a single hole, can be drilled into a gasket (i.e., multihole gasket technique) to realize parallel experiments in a DAC. In this study, we conducted a series of systematic calibration experiments on multihole gasket techniques using statistical methods. Multiple (two or three or four) holes 100 mu m in diameter were symmetrically drilled into a gasket by a laser drilling instrument with the help of a coded Python program. The pressure deviations among different holes in a gasket at average pressures below 10 GPa are constrained to less than 0.2 GPa in all calibration experiments at room temperature. We further checked the influences of the gasket material, hole number, pre-indented gasket thickness, and temperature on the pressure deviations among different holes in a gasket. Finally, we applied the multihole gasket technique in a DAC experiment and compared the solubility of calcite in different chemical environments at the same pressure and temperature conditions. The experimental results showed that the multihole gasket technique could be widely applied to study water-mineral interactions at high-P (< 10 GPa) and high-T (< 700 degrees C) conditions because multiple parallel experiments can be efficiently realized simultaneously. Published under an exclusive license by AIP Publishing.

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