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Initial conditions or emergence: What determines dissolution patterns in rough fractures?
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journal
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September 2015 |
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Three-dimensional simulations of fracture dissolution: FRACTURE DISSOLUTION IN 3-D
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September 2016 |
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Mineralogical and transport controls on the evolution of porous media texture using direct numerical simulation: CONTROLS ON TEXTURE EVOLUTION
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May 2017 |
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An Arbitrary Lagrangian–Eulerian Computing Method for All Flow Speeds
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August 1997 |
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Kinetics of Water-Rock Interaction
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book
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January 2008 |
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Simulation of mineral dissolution at the pore scale with evolving fluid-solid interfaces: review of approaches and benchmark problem set
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January 2020 |
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Pore-Scale Imaging and Modelling of Reactive Flow in Evolving Porous Media: Tracking the Dynamics of the Fluid–Rock Interface
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journal
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May 2021 |
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The solubilities of calcite, aragonite and vaterite in CO2-H2O solutions between 0 and 90°C, and an evaluation of the aqueous model for the system CaCO3-CO2-H2O
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June 1982 |
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Gypsum growth in the presence of background electrolytes studied by Scanning Force Microscopy
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September 1996 |
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Kinetics of calcite growth: surface processes and relationships to macroscopic rate laws
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July 2000 |
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A mechanistic model for calcite crystal growth using surface speciation
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January 1999 |
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Geometry and mineral heterogeneity controls on precipitation in fractures: An X-ray micro-tomography and reactive transport modeling study
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June 2021 |
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The impact of mineral reactive surface area variation on simulated mineral reactions and reaction rates
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January 2021 |
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Characteristics of flow through randomly packed impermeable and permeable particles using pore resolved simulations
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December 2020 |
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Time-dependent shapes of a dissolving mineral grain: Comparisons of simulations with microfluidic experiments
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May 2020 |
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A moving mesh finite volume interface tracking method for surface tension dominated interfacial fluid flow
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February 2012 |
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porousMedia4Foam: Multi-scale open-source platform for hydro-geochemical simulations with OpenFOAM®
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November 2021 |
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Evaluation of mineral reactive surface area estimates for prediction of reactivity of a multi-mineral sediment
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September 2016 |
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Experimental determination of barite dissolution and precipitation rates as a function of temperature and aqueous fluid composition
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journal
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December 2016 |
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Examination of crystal dissolution in 3D: A way to reconcile dissolution rates in the laboratory?
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journal
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March 2020 |
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Neural network based process coupling and parameter upscaling in reactive transport simulations
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journal
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December 2020 |
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Reactive-infiltration instabilities in rocks. Fracture dissolution
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May 2012 |
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Mineral dissolution and wormholing from a pore-scale perspective
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journal
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August 2017 |
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Pore-Scale Geochemical Reactivity Associated with CO 2 Storage: New Frontiers at the Fluid–Solid Interface
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February 2017 |
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Opposing Effects of Impurity Ion Sr 2+ on the Heterogeneous Nucleation and Growth of Barite (BaSO 4 )
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September 2021 |
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Unraveling the Effects of Strontium Incorporation on Barite Growth—In Situ and Ex Situ Observations Using Multiscale Chemical Imaging
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July 2018 |
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Incorporating Nanoscale Effects into a Continuum-Scale Reactive Transport Model for CO 2 -Deteriorated Cement
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September 2017 |
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Studies of Mineral Nucleation and Growth Across Multiple Scales: Review of the Current State of Research Using the Example of Barite (BaSO 4 )
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journal
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November 2021 |
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Direct Determination of Dissolution Rates at Crystal Surfaces Using 3D X-ray Microtomography
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December 2018 |
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Mapping Three-dimensional Dissolution Rates of Calcite Microcrystals: Effects of Surface Curvature and Dissolved Metal Ions
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journal
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February 2019 |
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Pore-Scale Modeling of Nucleation and Growth in Porous Media
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journal
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January 2020 |
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Rethinking Classical Crystal Growth Models through Molecular Scale Insights: Consequences of Kink-Limited Kinetics
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journal
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December 2009 |
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In Situ Determination of Interfacial Energies between Heterogeneously Nucleated CaCO 3 and Quartz Substrates: Thermodynamics of CO 2 Mineral Trapping
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journal
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June 2012 |
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Upscaling Calcite Growth Rates from the Mesoscale to the Macroscale
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June 2013 |
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Interfacial Energies for Heterogeneous Nucleation of Calcium Carbonate on Mica and Quartz
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journal
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May 2014 |
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Pore-Scale Controls on Calcite Dissolution Rates from Flow-through Laboratory and Numerical Experiments
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journal
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June 2014 |
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Accurate Rates of the Complex Mechanisms for Growth and Dissolution of Minerals Using a Combination of Rare-Event Theories
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July 2011 |
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Kink Dynamics and Step Growth on Barium Sulfate (001): A Hydrothermal Scanning Probe Microscopy Study
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August 2000 |
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Derivation of an Accurate Force-Field for Simulating the Growth of Calcium Carbonate from Aqueous Solution: A New Model for the Calcite−Water Interface
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February 2010 |
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An investigation of the effect of pore scale flow on average geochemical reaction rates using direct numerical simulation: EFFECT OF PORE SCALE FLOW ON GEOCHEMICAL REACTION RATES
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March 2012 |
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The Development of Wormholes in Laboratory‐Scale Fractures: Perspectives From Three‐Dimensional Simulations
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October 2018 |
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Molecular-scale mechanisms of crystal growth in barite
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October 1998 |
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Deciphering pore-level precipitation mechanisms
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October 2017 |
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Micro-continuum approach for mineral precipitation
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February 2021 |
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The dynamic nature of crystal growth in pores
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September 2016 |
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A tensorial approach to computational continuum mechanics using object-oriented techniques
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January 1998 |
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Stability of a Planar Interface During Solidification of a Dilute Binary Alloy
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February 1964 |
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Concentration effects on the Mullins–Sekerka instability
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June 1987 |
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Metals Coprecipitation with Barite: Nano-XRF Observation of Enhanced Strontium Incorporation
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April 2020 |
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Lattice Boltzmann model with generalized wall boundary conditions for arbitrary catalytic reactivity
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June 2021 |
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Instabilities and pattern formation in crystal growth
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January 1980 |
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Stable Prenucleation Calcium Carbonate Clusters
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December 2008 |
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Crystallization by particle attachment in synthetic, biogenic, and geologic environments
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July 2015 |
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The Mineral-Water Interface: Where Minerals React with the Environment
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June 2013 |
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Dissolution Phase Diagram in Radial Geometry
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September 2020 |