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State of the Art on Fe Precipitation in Porous Media: Hydrogeochemical Processes and Evolving Parameters
The mixing of terrestrial groundwater and seawater creates dynamic reaction zones in
intertidal areas, where land-derived Fe (II) is oxidized to Fe (III) and then precipitates as Fe …
intertidal areas, where land-derived Fe (II) is oxidized to Fe (III) and then precipitates as Fe …
Improved predictions of permeability properties in cement-based materials: A comparative study of pore size distribution-based models
Permeability is a fundamental physical property of a cement-based material and is closely
related to its pore structure. This study developed an improved model for permeability …
related to its pore structure. This study developed an improved model for permeability …
An engineered biochar for treatment of selenite contaminated water: Mass transfer characteristics in fixed bed adsorption
Biochar composites have been gaining attention in recent years as a promising and cost-
effective material for wastewater treatment. In the present study, a novel procedure was …
effective material for wastewater treatment. In the present study, a novel procedure was …
Enhancing coalbed methane recovery using liquid nitrogen as a fracturing fluid: A coupled thermal-hydro-mechanical modeling and evaluation in water-bearing coal …
H Lin, B Li, S Li, L Qin, Z Wei, P Wang, R Luo - Energy, 2024 - Elsevier
In this study, a fully coupled thermal-hydro-mechanical (THM) model was developed
considering the latent heat of phase transition and expansion strain, to investigate the water …
considering the latent heat of phase transition and expansion strain, to investigate the water …
Multiscale modeling for multiphase flow and reactive mass transport in subsurface energy storage: A review
Modeling of multiphase flow and reactive mass transport in porous media remains a pivotal
challenge in the realm of subsurface energy storage, demanding a nuanced understanding …
challenge in the realm of subsurface energy storage, demanding a nuanced understanding …
Accelerated computational micromechanics for solute transport in porous media
Reactive transport in permeable porous media is relevant for a variety of applications, but
poses a significant challenge due to the range of length and time scales. Multiscale methods …
poses a significant challenge due to the range of length and time scales. Multiscale methods …
Preparation and adsorption properties of magnetic chitosan/sludge biochar composites for removal of Cu2+ ions
M Zhang, Y Liu, Z Yin, D Feng, H Lv - Scientific Reports, 2023 - nature.com
The magnetic chitosan/sludge biochar composite adsorbent was prepared using chitosan,
Fe3O4, and sludge biochar as raw materials. The composite adsorbent was able to achieve …
Fe3O4, and sludge biochar as raw materials. The composite adsorbent was able to achieve …
A comparative study of DNAPL migration and transformation in confined and unconfined groundwater systems
To explore the migration and transformation process of dense non-aqueous liquid (DNAPL)
pollutants' multiphase flow, specifically nitrobenzene (NB), in confined groundwater (CG) …
pollutants' multiphase flow, specifically nitrobenzene (NB), in confined groundwater (CG) …
A parameter-free and monolithic approach for multiscale simulations of flow, transport, and chemical reactions in porous media
Z Ou, Q Xue, Y Wan, H Wei, C Chi… - Journal of Computational …, 2024 - Elsevier
Traditional approaches for transport in porous media rely on empirical hydrodynamic/
transport parameters to quantify the interfacial exchange terms between fluid and solid …
transport parameters to quantify the interfacial exchange terms between fluid and solid …
Coupled transport, reactivity, and mechanics in fractured shale caprocks
Shales are low‐permeability caprocks that confine fluid, such as CO2, nuclear waste, and
hydrogen, in storage formations. Stress‐induced fractures in shale caprocks provide …
hydrogen, in storage formations. Stress‐induced fractures in shale caprocks provide …