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Advances in Carbon Capture, Utilization and Storage Technologies (CCUS)
CCUS (carbon capture, utilization, and storage) is the technology most commonly recognized globally as being capable of achieving the goal of carbon neutrality. CCUS technology realizes the resource utilization of captured waste CO2 emissions and effectively stores them in geological bodies such as oil reservoirs, gas reservoirs, and saltwater aquifers, through which both social and economic benefits can be obtained. This reprint contains laboratory studies and systematic reviews regarding micro- and nano-fluidics technology, CO2 mineralized sequestration with the assistance of microorganisms, the corrosion behavior of CO2 against steel, oil displacement characteristics, and other topics.
Advances in Carbon Capture, Utilization and Storage Technologies (CCUS)
CCUS (carbon capture, utilization, and storage) is the technology most commonly recognized globally as being capable of achieving the goal of carbon neutrality. CCUS technology realizes the resource utilization of captured waste CO2 emissions and effectively stores them in geological bodies such as oil reservoirs, gas reservoirs, and saltwater aquifers, through which both social and economic benefits can be obtained. This reprint contains laboratory studies and systematic reviews regarding micro- and nano-fluidics technology, CO2 mineralized sequestration with the assistance of microorganisms, the corrosion behavior of CO2 against steel, oil displacement characteristics, and other topics.
Advances in Carbon Capture, Utilization and Storage Technologies (CCUS)
04.07.2024
Sonstige
Elektronische Ressource
Englisch
supercritical CO2 , H2O content , impurity , corrosion , corrosion product film , CO2-EOR , XGBoost regression , PSO , parameter optimization , wettability , shale reservoir , surface roughness , mineral composition , AFM , contact angle , carbon dioxide sequestration , mechanism of mineralization , microbial-assisted mineralization , carbonic anhydrase , microfluidic and nanofluidic chip , phase behavior , confined fluids , CCUS , CO2 front , sweep coefficient , Random Forest , main controlling factor , Lunnan oilfield , carbon dioxide flooding , gas injection expansion , oil and gas phase seepage , porous media , dissolution , CO2 geological storage , pore-scale simulations , dissolution trapping , Sherwood correlation , CCUS-EOR , CO2 flooding , continental reservoir , screening criteria , principal component analysis , injectivity , depleted oil and gas reservoirs , CO2 injectivity , thema EDItEUR::T Technology , Engineering , Agriculture , Industrial processes
A Patent Bibliometric Analysis of Carbon Capture, Utilization, and Storage (CCUS) Technology
DOAJ | 2023
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