IP Library Granted Patent US 8,076,040
Granted Patent B2
US 8,076,040 · App. 12/116,675 · Granted Dec 13, 2011

Direct oxidation fuel cell

Assignee: Panasonic Corporation
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Quick Facts
Patent No.
US 8,076,040
App. No.
12/116,675
Granted
Dec 13, 2011
Kind
B2
Abstract

A direct oxidation fuel cell of this invention has at least one unit cell including: a membrane-electrode assembly comprising an electrolyte membrane sandwiched between an anode and a cathode, each of the anode and the cathode including a catalyst layer and a diffusion layer; an anode-side separator with a fuel flow channel for supplying a fuel to the anode; and a cathode-side separator with an oxidant flow channel for supplying an oxidant containing oxygen gas to the cathode. The fuel flow channel and the oxidant flow channel are so structured that the concentration of the oxygen gas in the oxidant flow channel is higher at a part opposing an upstream part of the fuel flow channel than at a part opposing a downstream part of the fuel flow channel.

Claims (16)

1. A direct oxidation fuel cell comprising at least one unit cell, said unit cell including:

a membrane-electrode assembly comprising an electrolyte membrane sandwiched between an anode and a cathode, each of said anode and said cathode including a catalyst layer and a diffusion layer;

an anode-side separator with a fuel flow channel for supplying an aqueous solution of organic fuel to said anode; and

a cathode-side separator with an oxidant flow channel for supplying an oxidant containing oxygen gas to said cathode,

wherein said fuel flow channel and said oxidant flow channel are so structured that the flow direction of said aqueous solution of organic fuel and the flow direction of said oxidant are the same, and the concentration of the oxygen gas in said oxidant flow channel is higher at a part opposing an upstream part of said fuel flow channel than at a part opposing a downstream part of said fuel flow channel.

2. The direct oxidation fuel cell in accordance with claim 1 , wherein the flow direction of said aqueous solution of organic fuel and the flow direction of said oxidant are the same as the gravity direction.

3. A method for operating a direct oxidation fuel cell

said method using the direct oxidation fuel cell of claim 1 , said method comprising the step of supplying said aqueous solution of organic fuel and said oxidant to said fuel flow channel and said oxidant flow channel, respectively, so that the concentration of the oxygen gas in said oxidant flow channel is higher at a part opposing an upstream part of said fuel flow channel than at a part opposing a downstream part of said fuel flow channel.

4. The direct oxidation fuel cell in accordance with claim 1 , further comprising a fuel tank containing said aqueous solution of organic fuel to be supplied to said fuel flow channel.

5. A direct oxidation fuel cell comprising at least one unit cell, said unit cell including:

a membrane-electrode assembly comprising an electrolyte membrane sandwiched between an anode and a cathode, each of said anode and said cathode including a catalyst layer and a diffusion layer;

an anode-side separator with a fuel flow channel for supplying an aqueous solution of organic fuel to said anode; and

a cathode-side separator with an oxidant flow channel for supplying an oxidant containing oxygen gas to said cathode,

wherein said fuel flow channel and said oxidant flow channel are so structured that the flow direction of said aqueous solution of organic fuel and the flow direction of said oxidant are opposite, and the concentration of the oxygen gas in said oxidant flow channel is higher at a part opposing an upstream part of said fuel flow channel than at a part opposing a downstream part of said fuel flow channel.

6. A method for operating a direct oxidation fuel cell, said method using the direct oxidation fuel cell of claim 5 , said method comprising the step of supplying said aqueous solution of organic fuel and said oxidant to said fuel flow channel and said oxidant flow channel, respectively, so that the concentration of the oxygen gas in said oxidant flow channel is higher at a part opposing an upstream part of said fuel flow channel than at a part opposing a downstream part of said fuel flow channel.

7. The direct oxidation fuel cell in accordance with claim 5 , further comprising a fuel tank containing said aqueous solution of organic fuel to be supplied to said fuel flow channel.

Assignments (2)
CHANGE OF NAME Recorded Nov 21, 2008
From: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 021897/0606 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2008
From: UEDA, HIDEYUKI; TAKADA, MASAHIRO
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 021469/0367 →
Priority Claims (1)
JP 2007-128461 · May 14, 2007 · national
Continuity (1)
Related Publication 20080286617A1 · Nov 20, 2008