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David A Vermaas

Showing results (1-10 of 29) with videos related to

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Environmental Science & Technology|July 9, 2011
Doubled power density from salinity gradients at reduced intermembrane distanceDavid A Vermaas, Michel Saakes, Kitty Nijmeijer
Scientific Reports|May 14, 2022
Thermo-electrochemical redox flow cycle for continuous conversion of low-grade waste heat to powerJorrit Bleeker, Stijn Reichert, Joost Veerman, et al.
Water Research|December 26, 2012
Fouling in reverse electrodialysis under natural conditionsDavid A Vermaas, Damnearn Kunteng, Michel Saakes, et al.
ACS Applied Materials & Interfaces|July 29, 2025
Salt Ion Accumulation in Bipolar Membranes Limits the Maximum Rate of NeutralizationPavel A Loktionov, Erik M Kelder, David A Vermaas
Environmental Science & Technology|April 5, 2014
Thermodynamic, energy efficiency, and power density analysis of reverse electrodialysis power generation with natural salinity gradientsNgai Yin Yip, David A Vermaas, Kitty Nijmeijer, et al.
ACS Applied Energy Materials|January 17, 2025
Balancing pH and Pressure Allows Boosting Voltage and Power Density for a H<sub>2</sub>-I<sub>2</sub> Redox Flow BatteryKaustub Singh, Ameya Bondre, Kostadin V Petrov, et al.
Environmental Science & Technology|February 12, 2014
Periodic feedwater reversal and air sparging as antifouling strategies in reverse electrodialysisDavid A Vermaas, Damnearn Kunteng, Joost Veerman, et al.
Environmental Science & Technology|October 18, 2022
Feasibility of Producing Electricity, Hydrogen, and Chlorine via Reverse ElectrodialysisAmeya Ranade, Kaustub Singh, Alessandro Tamburini, et al.
ACS Sustainable Chemistry & Engineering|April 18, 2022
Narrow Pressure Stability Window of Gas Diffusion Electrodes Limits the Scale-Up of CO<sub>2</sub> ElectrolyzersLorenz M Baumgartner, Christel I Koopman, Antoni Forner-Cuenca, et al.
ACS ES&T Engineering|February 15, 2024
Unifying the Conversation: Membrane Separation Performance in Energy, Water, and Industrial ApplicationsSarah M Dischinger, Daniel J Miller, David A Vermaas, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Environmental Science & Technology|July 9, 2011
Doubled power density from salinity gradients at reduced intermembrane distanceDavid A Vermaas, Michel Saakes, Kitty Nijmeijer
Scientific Reports|May 14, 2022
Thermo-electrochemical redox flow cycle for continuous conversion of low-grade waste heat to powerJorrit Bleeker, Stijn Reichert, Joost Veerman, et al.
Water Research|December 26, 2012
Fouling in reverse electrodialysis under natural conditionsDavid A Vermaas, Damnearn Kunteng, Michel Saakes, et al.
ACS Applied Materials & Interfaces|July 29, 2025
Salt Ion Accumulation in Bipolar Membranes Limits the Maximum Rate of NeutralizationPavel A Loktionov, Erik M Kelder, David A Vermaas
Environmental Science & Technology|April 5, 2014
Thermodynamic, energy efficiency, and power density analysis of reverse electrodialysis power generation with natural salinity gradientsNgai Yin Yip, David A Vermaas, Kitty Nijmeijer, et al.
ACS Applied Energy Materials|January 17, 2025
Balancing pH and Pressure Allows Boosting Voltage and Power Density for a H<sub>2</sub>-I<sub>2</sub> Redox Flow BatteryKaustub Singh, Ameya Bondre, Kostadin V Petrov, et al.
Environmental Science & Technology|February 12, 2014
Periodic feedwater reversal and air sparging as antifouling strategies in reverse electrodialysisDavid A Vermaas, Damnearn Kunteng, Joost Veerman, et al.
Environmental Science & Technology|October 18, 2022
Feasibility of Producing Electricity, Hydrogen, and Chlorine via Reverse ElectrodialysisAmeya Ranade, Kaustub Singh, Alessandro Tamburini, et al.
ACS Sustainable Chemistry & Engineering|April 18, 2022
Narrow Pressure Stability Window of Gas Diffusion Electrodes Limits the Scale-Up of CO<sub>2</sub> ElectrolyzersLorenz M Baumgartner, Christel I Koopman, Antoni Forner-Cuenca, et al.
ACS ES&T Engineering|February 15, 2024
Unifying the Conversation: Membrane Separation Performance in Energy, Water, and Industrial ApplicationsSarah M Dischinger, Daniel J Miller, David A Vermaas, et al.
Pageof 3