화학공학소재연구정보센터
검색결과 : 24건
No. Article
1 Bench-scale WGS membrane reactor for CO2 capture with co-production of H-2
Li H, Pieterse JAZ, Dijkstra JW, Boon J, van den Brink RW, Jansen D
International Journal of Hydrogen Energy, 37(5), 4139, 2012
2 On the potential of absorption and reactive adsorption for desulfurization of ultra low-sulfur commercial diesel in the liquid phase in the presence of fuel additive and bio-diesel
Pieterse JAZ, van Eijk S, van Dijk HAJ, van den Brink RW
Fuel Processing Technology, 92(3), 616, 2011
3 Performance test of a bench-scale multi-tubular membrane reformer
Li H, Pieterse JAZ, Dijkstra JW, Haije WG, Xu HY, Bao C, van den Brink RW, Jansen D
Journal of Membrane Science, 373(1-2), 43, 2011
4 On the potential of nickel catalysts for steam reforming in membrane reactors
Pieterse JAZ, Boon J, van Delft YC, Dijkstra JW, van den Brink RW
Catalysis Today, 156(3-4), 153, 2010
5 Development of a single stage heat integrated water-gas shift reactor for fuel processing
van Dijk HAJ, Boon J, Nyqvist RN, van den Brink RW
Chemical Engineering Journal, 159(1-3), 182, 2010
6 Towards full-scale demonstration of hydrogen-selective membranes for CO2 capture: Inhibition effect of WGS-components on the H-2 permeation through three Pd membranes of 44 cm long
Li H, Dijkstra JW, Pieterse JAZ, Boon J, van den Brink RW, Jansen D
Journal of Membrane Science, 363(1-2), 204, 2010
7 Carbon Capture by Sorption-Enhanced Water-Gas Shift Reaction Process using Hydrotalcite-Based Material
van Selow ER, Cobden PD, Verbraeken PA, Hufton JR, van den Brink RW
Industrial & Engineering Chemistry Research, 48(9), 4184, 2009
8 Modeling Study of the Sorption-Enhanced Reaction Process for CO2 Capture. I. Model Development and Validation
Reijers HTJ, Boon J, Elzinga GD, Cobden PD, Haije WG, van den Brink RW
Industrial & Engineering Chemistry Research, 48(15), 6966, 2009
9 Modeling Study of the Sorption-Enhanced Reaction Process for CO2 Capture. II. Application to Steam-Methane Reforming
Reijers HTJ, Boon J, Elzinga GD, Cobden PD, Haije WG, van den Brink RW
Industrial & Engineering Chemistry Research, 48(15), 6975, 2009
10 Selective catalytic reduction of NOx in real exhaust gas of gas engines using unburned gas: Catalyst deactivation and advances toward long-term stability
Pieterse JAZ, Top H, Vollink F, Hoving K, van den Brink RW
Chemical Engineering Journal, 120(1-2), 17, 2006