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◆ Geothermics2026-04-02· Andesite

Reactive transport modelling of CO2-enriched condensate reinjection in andesitic geothermal reservoirs towards the enhancement of carbon mineralisation

Yeftamikha Siahaan, Eylem Kaya, Sadiq J. Zarrouk, Bridget Y. Lynne

原始摘要(英文原文)· Original abstract
This study applies reactive transport modelling to investigate the geochemical and hydrodynamic impacts of CO 2 -enriched condensate reinjection into andesitic geothermal reservoirs, building on a high-temperature flow-through experiment using steam condensate and Southern Negros andesite at 230 °C and 200 bar. The calibrated model of the experiment resulted in significant quartz dissolution and secondary minerals deposition, with the magnitude of the dissolution being higher than the deposition, resulting in an increase in permeability. This calibrated model served as the basis for our fluid-rock interactions simulations under evolving CO 2 conditions and additional chemicals. The model explores how increasing CO 2 concentrations in the injected fluid influence fluid pH, mineral dissolution and precipitation trend, and permeability. We found that (i) a certain amount of CO 2 could enhance calcite dissolution but promote anhydrite precipitation, (ii) increasing the CO 2 mineralisation by adding Ca(OH) 2 initiated mineralisation in the form of calcite, and (iii) the highest mineralisation was achieved by injecting the same moles of Ca(OH) 2 with the injected CO 2 and SO 4 2- . This experimental-modelling approach enhances our understanding of reactive surface area evolution, CO 2 storage mechanisms, and their effect on the reservoir performance in geothermal systems.
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Reactive transport modelling of CO2-enriched condensate reinjection in andesitic geothermal reservoirs towards the enhancement of carbon mineralisation — 科研速览 Science Skim