Method for integration of improvement of geothermal recharge rate and geological storage of CO2
A geological storage, integrated technology, applied in the direction of geothermal energy power generation, heating devices, and other non-combustion heat generation, can solve problems such as poor results
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[0013] This embodiment is illustrated by taking the formation water of Tianjin Guantao Formation and the sandstone core of Guantao Formation as examples. For 1kg of Guantao Formation water and Guantao Formation sandstone core, by simulating 9.68 mmol, 14.24 mmol, 27.82 mmol, 69.92 mmol and 196.8 mmol of CO 2 Under injection conditions, the reservoir CO 2 - Dissolution of calcareous cement in sandstone reservoirs due to water-rock interaction and its effect on porosity. The results showed that the pH of the sandstone reservoir fluid decreased by 1 unit, HCO 3 - , Ca 2+ , Mg 2+ , Al and Si content all increased ( figure 2 ), which is caused by the dissolution of calcareous cement in an acidic environment, which in turn leads to an increase in the porosity of sandstone reservoirs.
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