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Featured researches published by A. Zwijnenburg.


Separation and Purification Technology | 2001

Capillary hollow fiber nanofiltration membranes

M.J.W. Frank; Gerrald Bargeman; A. Zwijnenburg; Matthias Wessling

Spiral-wound modules generally have high packing densities, low costs, but require extensive feedwater pretreatment and have a high fouling potential. Tubular membrane modules have beneficial fouling properties, can be backflushed, but have low packing densities and are expensive. Both module types exist for the nanofiltration process. However, the membrane module type combining the superior properties of both types, namely capillary hollow fiber membrane modules, have not been developed yet. This paper presents the flux and retention performance data of new developed nanofiltration capillary hollow fiber membrane modules. The new modules show retention performances comparable with those of best-performing spiral-wound modules. They can typically be applied for water softening and decoloring. Continuous experiments on surface water and nanofiltration whey permeate demonstrate that the fouling behavior of the new capillary modules is indeed better than the spiral-wound modules due to its well-defined feed channel geometry.


Journal of Membrane Science | 2008

Hollow fiber dead-end ultrafiltration: Influence of ionic environment on filtration of alginates

W.J.C. van de Ven; K. van 't Sant; Ineke G.M. Punt; A. Zwijnenburg; Antoine Kemperman; W.G.J. van der Meer; Matthias Wessling


Journal of Membrane Science | 2005

Hollow fiber membrane contactors : A means to study the reaction kinetics of humic substance ozonation

R.H.S. Jansen; J.W. de Rijk; A. Zwijnenburg; M.H.V. Mulder; Matthias Wessling


Journal of Membrane Science | 2014

Impacts of NF concentrate recirculation on membrane performance in an integrated MBR and NF membrane process for wastewater treatment

C Kappel; Antoine Kemperman; Hardy Temmink; A. Zwijnenburg; H.H.M. Rijnaarts; Dc Kitty Nijmeijer


Journal of Membrane Science | 2005

The effect of WWTP effluent zeta-potential on direct nanofiltration performance

G.A. Schrader; A. Zwijnenburg; Matthias Wessling


Separation and Purification Technology | 2013

Electrochemical phosphate recovery from nanofiltration concentrates

C Kappel; K Yasadi; Hardy Temmink; Sybrand J Metz; Antoine Kemperman; Dc Kitty Nijmeijer; A. Zwijnenburg; Geert-Jan Witkamp; H.H.M. Rijnaarts


Environmental Science & Technology | 2006

Outside-in trimming of humic substances during ozonation in a membrane contactor

R.H.S. Jansen; A. Zwijnenburg; W.G.J. van der Meer; Matthias Wessling


Archive | 1996

Semipermeable composite membrane and a method for the preparation of such a membrane

A. Zwijnenburg; Jan Willem De Rijk; Casper Johannes Nicolaas Rekers


Journal of Membrane Science | 2008

Hollow fiber ultrafiltration: The concept of partial backwashing

W.J.C. van de Ven; Ineke G.M. Punt; A. Zwijnenburg; Antoine Kemperman; W.G.J. van der Meer; Matthias Wessling


Archive | 1996

Semipermeable composite membrane, method for the preparation of such a membrane,and its use

A. Zwijnenburg; Casper Johannes Nicolaas Rekers; Rijk Jan Willem De

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Antoine Kemperman

MESA+ Institute for Nanotechnology

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Hardy Temmink

Wageningen University and Research Centre

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Dc Kitty Nijmeijer

MESA+ Institute for Nanotechnology

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C Kappel

MESA+ Institute for Nanotechnology

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H.H.M. Rijnaarts

Wageningen University and Research Centre

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