Pore-Scale Dynamics of Multiphase Reactive Transport in Water-Wet Carbonates under CO2-Acidified Brine Injection: Dissolution Patterns and Reaction Rates

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Autori principali: Ma, Qianqian, Chai, Rukuan, Foroughi, Sajjad, Wang, Yanghua, Blunt, Martin, Bijeljic, Branko
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author Ma, Qianqian
Chai, Rukuan
Foroughi, Sajjad
Wang, Yanghua
Blunt, Martin
Bijeljic, Branko
author_facet Ma, Qianqian
Chai, Rukuan
Foroughi, Sajjad
Wang, Yanghua
Blunt, Martin
Bijeljic, Branko
contents <p>Experimental Study of CO2-Acidified Brine Injection in Ketton Limestone with Residual Hydrocarbon</p> <p>This dataset contains time-resolved X-ray microtomography (micro-CT) imaging data investigating the dissolution dynamics of Ketton limestone under multiphase condition. The study focuses on the context of Carbon Capture and Storage (CCS) in depleted reservoirs, examining how the presence of a residual hydrocarbon phase influences dissolution patterns under reservoir conditions.</p> <p>The data captures the complex pore-scale interactions between the rock matrix, CO2-acidified brine, and residual hydrocarbons, revealing distinct dissolution regimes driven by multiphase dynamics and flow heterogeneity.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17856861
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Pore-Scale Dynamics of Multiphase Reactive Transport in Water-Wet Carbonates under CO2-Acidified Brine Injection: Dissolution Patterns and Reaction Rates
Ma, Qianqian
Chai, Rukuan
Foroughi, Sajjad
Wang, Yanghua
Blunt, Martin
Bijeljic, Branko
Reactive Transport
Multiphase Flow
Pore Scale Imaging
CO2 Storage
<p>Experimental Study of CO2-Acidified Brine Injection in Ketton Limestone with Residual Hydrocarbon</p> <p>This dataset contains time-resolved X-ray microtomography (micro-CT) imaging data investigating the dissolution dynamics of Ketton limestone under multiphase condition. The study focuses on the context of Carbon Capture and Storage (CCS) in depleted reservoirs, examining how the presence of a residual hydrocarbon phase influences dissolution patterns under reservoir conditions.</p> <p>The data captures the complex pore-scale interactions between the rock matrix, CO2-acidified brine, and residual hydrocarbons, revealing distinct dissolution regimes driven by multiphase dynamics and flow heterogeneity.</p>
title Pore-Scale Dynamics of Multiphase Reactive Transport in Water-Wet Carbonates under CO2-Acidified Brine Injection: Dissolution Patterns and Reaction Rates
topic Reactive Transport
Multiphase Flow
Pore Scale Imaging
CO2 Storage
url https://doi.org/10.5281/zenodo.17856861