ABSTRACT
Carbon dioxide can be reduced electrochemically and in one single stage into hydrocarbons, typically between 1 and 9 carbon atoms and into ethanol. The main interest of these works lies in the reaction mode, that is to say with a continuous CO2 flow at the ambient temperature and at an ordinary pressure. Furthermore, the soft reaction conditions allow for limiting the energy intakes which should allow in the near future for the use of solar energy in order to eventually generate the necessary protons and electrons via water dissociation.
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INTRODUCTION
The present work demonstrates the possibility of electrochemically reducing carbon dioxide in a single step to hydrocarbons, typically between 1 and 9 carbon atoms, and ethanol. The main interest of this work lies in the mode of reaction, i.e. with a continuous flow of CO
2
, at room temperature and ordinary pressure, this having never been shown before. What's more, these mild reaction conditions allow energy inputs to be kept to a minimum, making it possible in the near future to use solar radiation to, ultimately, directly generate the protons and electrons required by dissociation of water.
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Conversion of CO2 into hydrocarbons via continuous flow electroreduction