Hjem
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    5007 Bergen
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    Postboks 7803
    5020 Bergen
Vitenskapelig artikkel
  • Vis forfatter(e) (2023). Pore-scale study of microbial hydrogen consumption and wettability alteration during underground hydrogen storage. Frontiers in Energy Research.
  • Vis forfatter(e) (2023). Microfluidic hydrogen storage capacity and residual trapping during cyclic injections: Implications for underground storage. International Journal of Hydrogen Energy.
  • Vis forfatter(e) (2022). Seasonal variations and feedback from microplastics and cadmium on soil organisms in agricultural fields. Environment International. 11 sider.
  • Vis forfatter(e) (2022). Empirical algorithm for detecting coccolithophore blooms through satellite observation in the Barents Sea. Remote Sensing of Environment. 13 sider.
  • Vis forfatter(e) (2020). High osmotic stress initiates expansion and detachment of Thalassospira sp. biofilms in glass microchannels. Journal of Environmental Chemical Engineering.
  • Vis forfatter(e) (2019). Microfluidic study of effects of flow velocity and nutrient concentration on biofilm accumulation and adhesive strength in the flowing and no-flowing microchannels. Journal of Industrial Microbiology & Biotechnology. 855-868.
  • Vis forfatter(e) (2018). A pore-scale model for permeable biofilm: Numerical simulations and laboratory experiments. Transport in Porous Media. 643-660.
Vitenskapelig foredrag
  • Vis forfatter(e) (2022). Microbial Side Effects on Underground Hydrogen Storage.
  • Vis forfatter(e) (2019). Mathematical modelling of the bio-plug technology: laboratory experiments, upscaling, and numerical simulations.
Poster
  • Vis forfatter(e) (2019). Biofilms in porous media: laboratory experiments, mathematical modeling and upscaling.
  • Vis forfatter(e) (2018). Mathematical modelling of bacterial growth at different scales: numerical simulations and laboratory experiments.
  • Vis forfatter(e) (2018). Mathematical modeling of biofilm formation: from the pore-scale to the core-scale.
  • Vis forfatter(e) (2017). A pore-scale model for permeable biofilm: numerical simulations and laboratory experiments.

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