Aquatic Geochemistry · 2022 · 16 citations · 61 references
EngineeringGeothermal ReservoirsWater-rock InteractionFluid–rock InteractionsMineral ProcessingEarth ScienceFluid GeochemistryChemical EngineeringPower PlantMineral-fluid InteractionHydrothermal FluidHydrothermal ReservoirsGeologyRock PropertiesEnvironmental EngineeringCivil EngineeringEnergy TransitionNatural Hydrothermal BrinesGeochemistryHydrothermal Geochemistry
Abstract As renewable energy, geothermal can contribute substantially to the energy transition. To generate electricity or to harvest heat, high-saline fluids are tapped by wells of a few kilometres and extracted from hydrothermal reservoirs. After the heat exchanger units have been passed by, these fluids are reinjected into the reservoir. Due to the pressure and temperature differences between the subsurface and the surface, as well as the cooling of the fluids in the power plant, unwanted chemical reactions can occur within the reservoir, in the borehole, and within the power plant itself. This can reduce the permeability of the reservoir as well as the output of the geothermal power plant. This study aims to simulate real subsurface reactions using batch and leaching experiments with sandstone or sandstone powder as solid phase, and deionised water or natural brine as liquid phase. It is demonstrated that fluid composition changes after only a few days. In particular, calcite, aragonite, clay minerals, and zinc phases precipitate from the natural brine. In contrast, in particular minerals containing potassium, arsenic, barium, and silica are dissolved. Due to the experimental set-up, these mineral reactions mainly took place on the surface of the samples, which is why no substantial changes in petrophysical properties could be observed. However, it is assumed that the observed reactions on the reservoir scale have a relevant influence on parameters such as permeability.
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Abbreviations for names of rock-forming minerals
Donna L. Whitney, Bernard W. Evans · American Mineralogist · 2009 · 5.9K citations
Volcanology, Engineering, Mineralogy +17