Search Results - "Aertsens, M."

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  1. 1

    Cation diffusion in the electrical double layer enhances the mass transfer rates for Sr2+, Co2+ and Zn2+ in compacted illite by Glaus, M.A., Aertsens, M., Appelo, C.A.J., Kupcik, T., Maes, N., Van Laer, L., Van Loon, L.R.

    Published in Geochimica et cosmochimica acta (15-09-2015)
    “…Enhanced mass transfer rates have been frequently observed in diffusion studies with alkaline and earth alkaline elements in compacted clay minerals and clay…”
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    Journal Article
  2. 2

    Transport of dissolved organic matter in Boom Clay: Size effects by Durce, D., Aertsens, M., Jacques, D., Maes, N., Van Gompel, M.

    Published in Journal of contaminant hydrology (01-01-2018)
    “…A coupled experimental-modelling approach was developed to evaluate the effects of molecular weight (MW) of dissolved organic matter (DOM) on its transport…”
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    Journal Article
  3. 3

    Treatment of boundary conditions in through-diffusion: A case study of (85)Sr(2+) diffusion in compacted illite by Glaus, M A, Aertsens, M, Maes, N, Van Laer, L, Van Loon, L R

    Published in Journal of contaminant hydrology (01-06-2015)
    “…Valuable techniques to measure effective diffusion coefficients in porous media are an indispensable prerequisite for a proper understanding of the migration…”
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    Journal Article
  4. 4

    Treatment of boundary conditions in through-diffusion: A case study of 85Sr2+ diffusion in compacted illite by Glaus, M.A., Aertsens, M., Maes, N., Van Laer, L., Van Loon, L.R.

    Published in Journal of contaminant hydrology (01-06-2015)
    “…Valuable techniques to measure effective diffusion coefficients in porous media are an indispensable prerequisite for a proper understanding of the migration…”
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    Journal Article
  5. 5

    Spatial variability of transport parameters in the Boom Clay by Aertsens, M, Wemaere, I, Wouters, L

    Published in Applied clay science (01-08-2004)
    “…Several transport parameters (as hydraulic conductivity K, apparent diffusion coefficient D p and diffusion accessible porosity η of HTO and iodide) have been…”
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    Journal Article Conference Proceeding
  6. 6

    Retention of Cs in Boom Clay: Comparison of data from batch sorption tests and diffusion experiments on intact clay cores by Maes, N., Salah, S., Jacques, D., Aertsens, M., Van Gompel, M., De Cannière, P., Velitchkova, N.

    “…For performance assessment analysis of a high-level waste and spent fuel (HLW/SF) disposal in a geological formation, retention data are needed. In most cases,…”
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    Journal Article
  7. 7

    Adsorption and diffusion of selenite on Boda Claystone Formation by Czömpöly, O., Fábián, M., Korányi, T.I., Nagy, G., Horváth, Z.E., Zizak, I., Pollastri, S., Aertsens, M., Osán, J.

    Published in Applied clay science (01-09-2023)
    “…This study provides adsorption and diffusion data of selenite on Boda Claystone Formation (BCF) which is a potential host rock of a deep geological disposal of…”
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    Journal Article
  8. 8

    Interplay of molecular size and pore network geometry on the diffusion of dissolved gases and HTO in Boom Clay by Jacops, E., Aertsens, M., Maes, N., Bruggeman, C., Krooss, B.M., Amann-Hildenbrand, A., Swennen, R., Littke, R.

    Published in Applied geochemistry (01-01-2017)
    “…Through-diffusion experiments in Boom Clay have been performed with uncharged molecules: tritiated water (HTO) and dissolved gases of different size (He, Ne,…”
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    Journal Article
  9. 9

    Vertical distribution of HTO and 125I− transport parameters in Boom Clay in the Essen-1 borehole (Mol, Belgium) by Aertsens, M., Maes, N., Labat, S., Van Gompel, M., Maes, T.

    “…•We examine the transport properties over the entire depth of the Boom Clay layer in Essen.•We measure the porosity and apparent diffusion coefficient for…”
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    Journal Article
  10. 10

    Overview and consistency of migration experiments in clay by Aertsens, M., De Cannière, P., Lemmens, K., Maes, N., Moors, H.

    “…An overview is given about the types of migration experiments in clay and their corresponding mathematical models aimed to determine: (1) the product ηR of the…”
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    Journal Article
  11. 11

    New techniques for modelling glass dissolution by Aertsens, Marc, Ghaleb, Dominique

    Published in Journal of nuclear materials (01-09-2001)
    “…Due to the large increase in computation power, new methods for modelling glass dissolution are becoming available. We give a short description of two classes…”
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    Journal Article
  12. 12

    Vertical distribution of H 14 CO 3 - transport parameters in Boom Clay in the Mol-1 borehole (Mol, Belgium) by Aertsens, M., Van Gompel, M., De Cannière, P., Maes, N., Dierckx, A.

    “…An important question for the performance assessment of a potential geological waste disposal site for radioactive waste in Boom Clay is: Can the Boom Clay be…”
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    Journal Article
  13. 13
  14. 14

    Vertical distribution of H super(1) super(4)CO sub(3) super(-) transport parameters in Boom Clay in the Mol-1 borehole (Mol, Belgium) by Aertsens, M, Van Gompel, M, De Canniere, P, Maes, N, Dierckx, A

    “…An important question for the performance assessment of a potential geological waste disposal site for radioactive waste in Boom Clay is: Can the Boom Clay be…”
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    Journal Article
  15. 15

    An analytical model for the interpretation of pulse injection experiments performed for testing the spatial variability of clay formations by Aertsens, Marc, Put, Martin, Dierckx, Ann

    Published in Journal of contaminant hydrology (01-03-2003)
    “…This paper presents an analytical model to describe pulse injection experiments. This model solves the advection–diffusion equation while taking into account…”
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    Journal Article Conference Proceeding
  16. 16

    Modelling of Silica Diffusion Experiments with super(32)Si in Boom Clay by Aertsens, Marc, De Canniere, Pierre, Moors, Hugo

    Published in Journal of contaminant hydrology (01-03-2003)
    “…One method proposed for dealing with radioactive waste involves encapsulating it in glass and then disposing of the vitrified waste in deep geological layers…”
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    Journal Article
  17. 17