IP Library Granted Patent US 8,715,867
Granted Patent B1
US 8,715,867 · App. 13/227,698 · Granted May 6, 2014

Deployable microbial fuel cell and methods

Inventor: Frank J. McNeilly (Portsmouth, RI)
Assignee: The United States of America as represented by the Secretary of the Navy
H01M8/16
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Quick Facts
Patent No.
US 8,715,867
App. No.
13/227,698
Granted
May 6, 2014
Kind
B1
Abstract

An anode/cathode system is disclosed for use in a Benthic microbial fuel cell. Carbon cloth forms at least a portion of the anode and is disposed on one side of a water oxygen impermeable layer, which can be weighted around a periphery thereof to hold the anode against a water-sediment interface. Carbon cloth flaps or strands can be attached to the other side of the impermeable layer to form the cathode. The anode and cathode can be divided into sections with each section having an electrical lead coupled thereto. The system is deployed onto the seafloor with the anode side in contact with the water-sediment interface.

Claims (24)

1. A microbial fuel cell assembly, which electrically interacts with an underwater surface, comprising:

a flexible anode electrode comprising a plurality of anode sections;

a plurality of anode electrical conductors, which are connected to said plurality of anode sections;

a flexible cathode electrode comprising a plurality of cathode sections;

a plurality of cathode electrical conductors, which are connected to said plurality of cathode sections;

an oxygen impermeable separation layer, said flexible anode electrode being attached to one side of said oxygen impermeable separation layer, and said flexible cathode electrode being secured to an opposite side of said oxygen impermeable separation layer; and

a lining around the circumference of said oxygen impermeable separation layer said lining being weighted to keep the microbial fuel cell assembly anchored to the seabed.

2. The microbial fuel cell assembly of claim 1 wherein said flexible anode electrode and said flexible cathode electrode comprise carbon fiber cloth.

3. The microbial fuel cell assembly of claim 2 wherein said flexible cathode electrode comprises a plurality of flaps.

4. The microbial fuel cell assembly of claim 1 comprising a plurality of spikes mounted on said flexible anode electrode side of said oxygen impermeable separation layer.

5. The microbial fuel cell assembly of claim 1 comprising a deployment cylinder operable for receiving said flexible anode electrode, said flexible cathode electrode, and said oxygen impermeable separation layer.

6. A microbial fuel cell assembly, which electrically interacts with an underwater surface, comprising:

a flexible anode electrode;

a flexible cathode electrode;

an oxygen impermeable separation layer, said flexible anode electrode being attached to one side of said oxygen impermeable separation layer, and said flexible cathode electrode being secured to an opposite side of said oxygen impermeable separation layer; and

a deployment cylinder operable for receiving said flexible anode electrode, said flexible cathode electrode, and said oxygen impermeable separation layer, wherein the weight of the deployment cylinder aids in pressing the anode and the oxygen impermeable separation layer against the underwater surface to ensure intimate contact between the two.

7. The microbial fuel cell assembly of claim 6 wherein

said flexible anode electrode comprises a plurality of anode sections;

further comprising a plurality of anode electrical conductors that are connected to said plurality of anode sections;

wherein said flexible cathode electrode comprises a plurality of cathode sections; and

further comprising a plurality of cathode electrical conductors that are connected to said plurality of cathode sections.

8. The microbial fuel cell assembly of claim 6 wherein said flexible anode electrode is positioned more radially exterior on said deployment cylinder than said flexible cathode electrode.

9. The microbial fuel cell assembly of claim 6 comprising at least one cable connected to said deployment cylinder operable to lower said deployment cylinder to said underwater surface.

10. The microbial fuel cell assembly of claim 9 comprising weighted portions on a periphery of said oxygen impermeable separation layer, which are of sufficient weight to hold said flexible anode electrode against said underwater surface to provide an oxygen impermeable separation barrier for the anode from the underwater surface.

Assignments (2)
CORRECTION OF CONFIRMATORY LICENSE ASSIGNOR NAME, PREVIOUSLY RECORDED AT REEL/FRAME 026884/0214. Recorded Sep 13, 2011
From: MCNEILLY, FRANK J.
To: UNITED STATES OF AMERICA, THE
Reel/Frame 026901/0296 →
CONFIRMATORY LICENSE Recorded Sep 9, 2011
From: NEILLY, FRANK J.
To: UNITED STATES OF AMERICA, THE
Reel/Frame 026884/0214 →