Jan Peter van der Hoek
Jan Peter van der Hoek
Professor Drinking Water Engineering, Delft University of Technology
Geverifieerd e-mailadres voor tudelft.nl
Geciteerd door
Geciteerd door
Quantitative biofouling diagnosis in full scale nanofiltration and reverse osmosis installations
JS Vrouwenvelder, SA Manolarakis, JP Van der Hoek, JAM Van Paassen, ...
Water research 42 (19), 4856-4868, 2008
Wastewater as a resource: Strategies to recover resources from Amsterdam's wastewater
JP van der Hoek, H de Fooij, A Struker
Resources, Conservation and Recycling 113, 53-64, 2016
Sorption and biodegradation of organic micropollutants during river bank filtration: A laboratory column study
C Bertelkamp, J Reungoat, ER Cornelissen, N Singhal, J Reynisson, ...
Water Research 52, 231-241, 2014
Human health risk assessment of the mixture of pharmaceuticals in Dutch drinking water and its sources based on frequent monitoring data
CJ Houtman, J Kroesbergen, K Lekkerkerker-Teunissen, JP van der Hoek
Science of the Total Environment 496, 54-62, 2014
Nitrate removal from ground water
JP Van der Hoek, A Klapwijk
Water Research 21 (8), 989-997, 1987
An experimental study on the influence of water stagnation and temperature change on water quality in a full-scale domestic drinking water system
L Zlatanović, JP van der Hoek, JHG Vreeburg
Water Research 123, 761-772, 2017
Energy in the urban water cycle: Actions to reduce the total expenditure of fossil fuels with emphasis on heat reclamation from urban water
JA Elías-Maxil, JP Van Der Hoek, J Hofman, L Rietveld
Renewable and Sustainable Energy Reviews 30, 808-820, 2014
Combined ion exchange/biological denitrification for nitrate removal from ground water under different process conditions
JP van der Hoek, PJM van der Ven, A Klapwijk
Water Research 22 (6), 679-684, 1988
Health risk assessment of organic micropollutants in greywater for potable reuse
R Etchepare, JP van der Hoek
Water Research 72, 186-198, 2015
The scaling potential of barium sulphate in reverse osmosis systems
SFE Boerlage, MD Kennedy, I Bremere, GJ Witkamp, JP Van der Hoek, ...
Journal of Membrane Science 197 (1-2), 251-268, 2002
The use of biological activated carbon filtration for the removal of natural organic matter and organic micropollutants from water
JP Van der Hoek, J Hofman, A Graveland
Water Science and Technology 40 (9), 257-264, 1999
RO treatment: selection of a pretreatment scheme based on fouling characteristics and operating conditions based on environmental impact
JP Van der Hoek, J Hofman, PAC Bonné, MM Nederlof, ...
Desalination 127 (1), 89-101, 2000
Nitrogen Recovery from Wastewater: Possibilities, Competition with Other Resources and Adaptation Pathways
JP van der Hoek, R Duijff, O Reinstra
In: Maria Helena Henriques, editor. Prime Archives in Sustainability …, 2019
Nitrogen recovery from wastewater: Possibilities, competition with other resources, and adaptation pathways
JP van der Hoek, R Duijff, O Reinstra
Sustainability 10 (12), 4605 (1-18), 2018
Use of the Threshold of Toxicological Concern (TTC) approach for deriving target values for drinking water contaminants
MN Mons, MB Heringa, J Van Genderen, LM Puijker, W Brand, ...
Water research 47 (4), 1666-1678, 2013
Retention of herbicides and pesticides in relation to aging of RO membranes
PAC Bonne, EF Beerendonk, JP Van der Hoek, J Hofman
Desalination 132 (1-3), 189-193, 2000
Life cycle assessment of nutrient recycling from wastewater: a critical review
KL Lam, L Zlatanović, JP van der Hoek
Water research 173, 115519, 2020
Denitrification with methanol in the presence of high salt concentrations and at high pH levels
JP van der Hoek, PJM Latour, A Klapwijk
Applied microbiology and biotechnology 27, 199-205, 1987
Improving eco-efficiency of Amsterdam water supply: a LCA approach
PK Mohapatra, MA Siebel, HJ Gijzen, JP Van der Hoek, CA Groot
Journal of Water Supply: Research and Technology—AQUA 51 (4), 217-227, 2002
Biological nitrate removal from ground water by sulphur/limestone denitrification.
JP Van der Hoek, J Kappelhof, WAM Hijnen
Journal of Chemical Technology and Biotechnology 54 (2), 197-200, 1992
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