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FARADIC POROSITY CELL

InventionPending
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19Claims · 1 independent
§ Ⅰ

Dossier Overview

Inventor

Lindsay Boehme; Cameron Lippert; James Landon; Alan Rassoolkhani; Jeffrey Rentschler; Collin Dunn

IPC Classification

C2F 1/469C2F 1/28C2F 101/12C2F 101/16C2F 101/20C2F 101/22C2F 103/6

CPC Classification

C2F1/4691C2F1/283C2F2101/12C2F2101/16C2F2101/206C2F2101/22C2F2103/6C2F2201/46

The present invention is directed to an electrochemical device for at least partially removing or reducing a target ionic species from an aqueous solution using faradaic immobilization, the electrochemical device including at least one first electrode and at least one second electrode with different void fraction and surface area properties, due to differences in void fraction (also referred to as void ratio) of the at least one first and the at least one second electrode, water flows through an electrode with a high porosity, while the aqueous solution does not flow through an electrode with a low porosity. The asymmetry of the electrodes provides a desired voltage distribution across the device, which equates to a different voltage at each electrode, to control the speciation of the target ionic species at the anode and the cathode.

Original (Chinese)

The present invention is directed to an electrochemical device for at least partially removing or reducing a target ionic species from an aqueous solution using faradaic immobilization, the electrochemical device including at least one first electrode and at least one second electrode with different void fraction and surface area properties, due to differences in void fraction (also referred to as void ratio) of the at least one first and the at least one second electrode, water flows through an electrode with a high porosity, while the aqueous solution does not flow through an electrode with a low porosity. The asymmetry of the electrodes provides a desired voltage distribution across the device, which equates to a different voltage at each electrode, to control the speciation of the target ionic species at the anode and the cathode.

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