We perform direct numerical simulation using a pore-scale fluid–fluid reactive transport model (Alhashmi et al. in J Contam Hydrol 179:171–181, 2015. doi:10.1016/j.jconhyd.2015.06.004) to investigate the impact of pore structure heterogeneity on the effective reaction rate in different porous media. We simulate flow, transport, and reaction in three pore-scale images: a beadpack, Bentheimer sandstone, and Doddington sandstone for a range of transport and reaction conditions. We compute the reaction rate, velocity distributions, and dispersion coefficient comparing them with the results for non-reactive transport. The rate of reaction is a subtle combination of the amount of mixing and spreading that cannot be predicted from the non-reactive...
We present a new model, named poreReact, to simulate multispecies reactive transport on pore space i...
Understanding multi-component reactive transport in porous media is critical to a wide range of fie...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
Reactive transport is an important field of study in the earth sciences. It captures both natural ph...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
AbstractWe present a pore scale model capable of simulating fluid/fluid reactive transport on images...
A continuous-time random walk (CTRW) reactive transport model is used to study the impact of physica...
International audiencePredicting reactive transport at large scale, i.e., Darcy- and field- scale, i...
International audiencePredicting reactive transport at large scale, i.e., Darcy- and field- scale, i...
[1] This study examined the effects of variations in mineral spatial distributions on reaction rates...
We study the impact of pore space heterogeneity on mixing and reaction in porous media. We simulate ...
AbstractWe present a pore scale model capable of simulating fluid/fluid reactive transport on images...
We present a new model to simulate multispecies reactive transport on pore space images. We solve th...
The scale-dependence of geochemical reaction rates hinders their use in continuum scale models inten...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
We present a new model, named poreReact, to simulate multispecies reactive transport on pore space i...
Understanding multi-component reactive transport in porous media is critical to a wide range of fie...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
Reactive transport is an important field of study in the earth sciences. It captures both natural ph...
Reactive transport is of great importance in chemical science, hydrogeological and environmental app...
AbstractWe present a pore scale model capable of simulating fluid/fluid reactive transport on images...
A continuous-time random walk (CTRW) reactive transport model is used to study the impact of physica...
International audiencePredicting reactive transport at large scale, i.e., Darcy- and field- scale, i...
International audiencePredicting reactive transport at large scale, i.e., Darcy- and field- scale, i...
[1] This study examined the effects of variations in mineral spatial distributions on reaction rates...
We study the impact of pore space heterogeneity on mixing and reaction in porous media. We simulate ...
AbstractWe present a pore scale model capable of simulating fluid/fluid reactive transport on images...
We present a new model to simulate multispecies reactive transport on pore space images. We solve th...
The scale-dependence of geochemical reaction rates hinders their use in continuum scale models inten...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...
We present a new model, named poreReact, to simulate multispecies reactive transport on pore space i...
Understanding multi-component reactive transport in porous media is critical to a wide range of fie...
International audienceWe study mixing-controlled chemical reactions in unsaturated porous media from...