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Low-pressure electrolysis cell with separate cell chambers and an ion exchange membrane for potential change according to the Nernst equation by means of self-constructive pressure of hydrogen and oxygen and other gases to influence electrolytic substance conversions of organic and inorganic compounds
Low-pressure electrolysis cell with separate cell chambers and an ion exchange membrane for potential change according to the Nernst equation by means of self-constructive pressure of hydrogen and oxygen and other gases to influence electrolytic substance conversions of organic and inorganic compounds
A low-pressure electrolysis cell that is under pressure with separate half-cells for electrolysis is characterized in that the low-pressure cell consists of a transparent, pressure-stable plastic and has two or more half-cells (A, B), which are separated by stable partition walls (1) - with an ion exchange membrane ( 2) in the area close to the floor - are separated and can be closed gas-tight (4, 6a) and an - also automatic pressure increase, i.e. H. without supply of gases outside the electrolysis cell, only through the influence of electricity - allow pressure electrolysis with hydrogen and oxygen or other gases according to the Nernst equation through redox potential changes, so that new types of electrochemical reductions and oxidations as well as investigations of electrochemical processes with automatic pressure increases through mediation electrical current in an electrolysis cell.
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