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- W2012806069 abstract "Abstract With the continued development of offshore production in deepwater wells, a greater understanding of scale formation and corrosion under extreme high pressure and temperature (xHPHT) is needed. In order to better predict scale formation and scale solubility, knowledge of the thermodynamic and kinetic properties of these mineral systems under xHPHT conditions is important. Research to expand the amount of data and models for different types of scales at these conditions will reduce offshore production risk and improve human safety in ultra-deepwater (UDW) production. A novel flow-through apparatus has been developed to perform a scale solubility, dissolution, and precipitation study of minerals under high pressure (up to 24, 000 psig), high temperature (up to 250 °C), and high total dissolved solids (TDS, up to 360, 000 mg/L). This part of research will focus on the solubility study of magnetite and siderite. Studying dissolution and precipitation will improve understanding of the formation of passive layers (Fe3O4 and FeCO3) and their phase transitions as temperature increases, as has been observed in corrosion research. In this work, effects of reaction conditions, including temperature, pressure, pH, and brine composition on solubility of magnetite, have been investigated. Reduction potential is an important parameter which will affect magnetite solubility dramatically and is sensitive to brine composition. Details of the experimental setup and preliminary results of this research will be presented." @default.
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- W2012806069 date "2014-05-05" @default.
- W2012806069 modified "2023-09-26" @default.
- W2012806069 title "Solubility Study of Magnetite under Extreme High Pressure and High Temperature" @default.
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- W2012806069 doi "https://doi.org/10.4043/25216-ms" @default.
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