Supplemental data for the paper: Diffusion of hydrophilic organic micropollutants in granular activated carbon with different pore sizes
doi:10.4121/12713642.v2
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doi: 10.4121/12713642
doi: 10.4121/12713642
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Laura Piai; Dykstra, J.E. (Jouke); Adishakti, M.G. (Mahesa); Blokland, M. (Marco); A. (Alette) Langenhoff et. al. (2021): Supplemental data for the paper: Diffusion of hydrophilic organic micropollutants in granular activated carbon with different pore sizes. Version 2. 4TU.ResearchData. dataset. https://doi.org/10.4121/12713642.v2
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Hydrophilic organic micropollutants are commonly detected in source water used for drinking water
production. Effective technologies to remove these micropollutants from water include adsorption onto
granular activated carbon in fixed-bed filters. The rate-determining step in adsorption using activated
carbon is usually the adsorbate diffusion inside the porous adsorbent. The presence of mesopores can
facilitate diffusion, resulting in higher adsorption rates.We used two different types of granular activated
carbon, with and without mesopores, to study the adsorption rate of hydrophilic micropollutants.
Furthermore, equilibrium studies were performed to determine the affinity of the selected micropollutants
for the activated carbons. A pore diffusion model was applied to the kinetic data to obtain pore
diffusion coefficients. We observed that the adsorption rate is influenced by the molecular size of the
micropollutant as well as the granular activated carbon pore size.
history
- 2020-02-24 first online
- 2021-11-08 published, posted
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4TU.Centre for Research Data
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associated peer-reviewed publication
Diffusion of hydrophilic organic micropollutants in granular activated carbon with different pore sizes
references
organizations
Wageningen Food Safety ResearchWageningen University, Environmental Technology
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