To meet the requirements of continuous electrolysis operations and address the high heat generation associated with electrochemical reactions, a dual-electrode structure single-cell electrolyzer was designed and calculated. Within this cell, one set of electrodes serves both as the site for electrochemical electrolysis and as a chemical unit operation for rapid heat exchange. The electrode spacing within each cell is less than 2 mm, with five such cells connected in series in the liquid circuit and in parallel in the electrical circuit to achieve the desired performance.
To meet the requirements of continuous electrolysis operations and address the high heat generation associated with electrochemical reactions, a dual-electrode structure single-cell electrolyzer was designed and calculated. Within this cell, one set of electrodes serves both as the site for electrochemical electrolysis and as a chemical unit operation for rapid heat exchange. The electrode spacing within each cell is less than 2 mm, with five such cells connected in series in the liquid circuit and in parallel in the electrical circuit to achieve the desired performance.
