2018
DOI: 10.1021/acssuschemeng.7b04173
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Lab-Scale Alkaline Water Electrolyzer for Bridging Material Fundamentals with Realistic Operation

Abstract: Hydrogen produced by water electrolysis with renewable electricity is a reliable, affordable and environmental friendly energy carrier for future energy supply and storage. Alkaline water electrolysis is a well matured technique and proved to be suitable for large-scale applications. Materials development for alkaline water electrolyzers is still of interest for academia and industry to address the issues of low compatibility to renewable power sources. A lab-scale system for alkaline water electrolysis was de… Show more

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Cited by 79 publications
(66 citation statements)
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“…57 Indeed, carbon is used as fuel at the anode for molten NaOH carbon air batteries. 57 On the cathode side carbon can be readily used, 54,55,111,113,119,120,123,124,126 as well as Ni 95,101,102,108,115,121,127,128 and Ti. 117,118 The electrode preparation method is predominantly based on spraying a catalyst ink over the activated support surface.…”
Section: Catalyst-coated Substratementioning
confidence: 99%
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“…57 Indeed, carbon is used as fuel at the anode for molten NaOH carbon air batteries. 57 On the cathode side carbon can be readily used, 54,55,111,113,119,120,123,124,126 as well as Ni 95,101,102,108,115,121,127,128 and Ti. 117,118 The electrode preparation method is predominantly based on spraying a catalyst ink over the activated support surface.…”
Section: Catalyst-coated Substratementioning
confidence: 99%
“…Concentrations above 20 mass% are used in AE together with ion solvating membranes 95,103,104,127 or diaphragm separators. 104,109,128 With anion exchange polymer membranes, concentrations can range from 3 to 10 mass%. [99][100][101]113,123,126,144 Generally, electrolysis performance improves with increasing concentration of the hydroxide solution.…”
Section: Hydroxide Solutionsmentioning
confidence: 99%
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“…Firstly, a pilot-scale RED unit was optimized for SGP generation using industrial waste streams: the performance of the RED unit was evaluated in terms of voltage and power density at varying flow velocity and temperature of waste streams. Next, a laboratory-scale APWEL system, scaled-up 6-fold compared to most cases studied using single-cell designs (Ju et al, 2018;, was tested for potential hydrogen production driven by SGP: the hydrogen production rate was evaluated at varying electrolyte concentrations and temperatures to identify optimal operating conditions. The ultimate goal was to demonstrate the possibility of converting the electrochemical potential of industrial waste streams into clean energy and hydrogen by an integrated RED-APWEL energy system.…”
Section: Introductionmentioning
confidence: 99%