IP Library Granted Patent US 8,637,197
Granted Patent B2
US 8,637,197 · App. 13/432,219 · Granted Jan 28, 2014

High efficiency, reversible flow battery system for energy storage

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Quick Facts
Patent No.
US 8,637,197
App. No.
13/432,219
Granted
Jan 28, 2014
Kind
B2
Abstract

The present invention relates to a reversible solid oxide electrochemical cell that may operate in two modes: a discharge mode (power generation) and a charge mode (electrolytic fuel production). A thermal system that utilizes a SOFB and is inclusive of selection of operating conditions that may enable roundtrip efficiencies exceeding about 80% to be realized is disclosed. Based on leverage of existing solid oxide fuel cell technology, the system concept is applicable to energy storage applications on the kW to MW scale.

Claims (15)

1. A battery system, comprising:

a reversible solid oxide electrochemical cell, wherein the reversible solid oxide electrochemical cell is capable of operating in a discharge mode and a charging mode;

a storage tank, wherein the storage tank provides a fuel gas to the reversible solid oxide electrochemical cell when the reversible solid oxide electrochemical cell is in the discharge mode, and wherein the storage tank provides a reactant gas to the reversible solid oxide electrochemical cell when the reversible solid oxide electrochemical cell is in the charging mode, and wherein the storage tank further comprises a separation device that separates the fuel gas from the reactant gas;

a fuel pump, wherein the fuel pump provides the fuel gas and the reactant gas to be stored in the storage tank; and

a preheater, wherein the preheater heats the fuel gas provided to the reversible solid oxide electrochemical cell from the storage tank when the reversible solid oxide electrochemical cell is in the discharge mode, and wherein the preheater heats the reactant gas provided to the reversible solid oxide electrochemical cell from the storage tank when the reversible solid oxide electrochemical cell is in the charging mode;

wherein the reactant gas comprises hydrogen gas, water, methane, carbon monoxide, and carbon dioxide and the fuel gas comprises hydrogen gas, water, and methane.

2. The battery system of claim 1 , wherein the separation device is selected from the group consisting of a free piston, a floating piston and a bladder.

3. A battery system, comprising:

a reversible solid oxide electrochemical cell, wherein the reversible solid oxide electrochemical cell is capable of operating in a discharge mode and a charging mode;

a first storage tank, wherein the first storage tank provides a fuel gas to the reversible solid oxide electrochemical cell when the reversible solid oxide electrochemical cell is in the discharge mode;

a second storage tank, wherein the second storage tank provides a reactant gas to the reversible solid oxide electrochemical cell when the reversible solid oxide electrochemical cell is in the charging mode;

a separation device, wherein the separation device moves between the first storage tank and the second storage tank and wherein the separation device separates the fuel gas from the reactant gas;

a fuel pump, wherein the fuel pump provides the fuel gas stored in the first storage tank and provides the reactant gas stored in the second storage tank; and

a preheater, wherein the preheater heats the fuel gas provided to the reversible solid oxide electrochemical cell from the first storage tank when the reversible solid oxide electrochemical cell is in the discharge mode, and wherein the preheater heats the reactant gas provided to the reversible solid oxide electrochemical cell from the storage tank when the reversible solid oxide electrochemical cell is in the charging mode;

wherein the reactant gas comprises hydrogen gas, water, methane, carbon monoxide, and carbon dioxide and the fuel gas comprises hydrogen gas, water, and methane.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2016
From: BRAUN, ROBERT J.; KEE, ROBERT J.; BARNETT, SCOTT
To: COLORADO SCHOOL OF MINES
Reel/Frame 040700/0993 →