IP Library › Granted Patent US 10,396,391
Granted Patent B2
US 10,396,391 · App. 15/341,169 · Granted Aug 27, 2019

Ionized gas metal core battery

Inventor: Mathew Steven Musick (Whitehall, MI)
Assignee: Hands of Jesus, Inc.
H01M10/02H01M10/36H01M10/42H01M10/613H01M10/615
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Quick Facts
Patent No.
US 10,396,391
App. No.
15/341,169
Granted
Aug 27, 2019
Kind
B2
Abstract

A battery is provided. The battery includes a pressurized gas circulating system and a reaction chamber. The reaction chamber includes a housing and a metal core disposed within the housing. The pressurized gas circulating system at least includes a high pressure storage tank. A delivery line fluidly connects the high pressure storage tank to the housing. An exhaust line fluidly connects the housing to the pressurized gas circulating system. The battery further includes a cathode terminal and an anode terminal.

Claims (36)

1. A battery comprising:

a pressurized gas circulating system comprising at least a high pressure storage tank;

a reaction chamber comprising a housing and a positively charged metal core disposed within the housing;

a delivery line fluidly connecting the high pressure storage tank to the housing;

an exhaust line fluidly connecting the housing to the pressurized gas circulating system;

a cathode terminal comprising a plurality of cathode reflectors disposed within the housing, the plurality of cathode reflectors comprising primary reflectors and secondary reflectors; and

an anode terminal connected to the positively charged metal core, wherein

the battery comprises a charging phase when connected to a power source and a discharging phase when connected to an external circuit,

the charging phase comprising a hydrogen gas flowing from the high pressure storage tank through the delivery line, wherein the hydrogen gas is ionized by the cathode terminal with electrons and the ionized hydrogen gas comes into contact with the metal core, wherein the primary reflectors are positioned to ionize and deflect the hydrogen gas from the delivery line to the metal core and the secondary reflectors are positioned to ionize and further deflect loose gas molecules to the metal core, and

the discharging phase comprising the anode terminal delivering the electrons to the external circuit and the hydrogen gas flowing from the housing into the exhaust line.

2. The battery of claim 1 , further comprising a heating element and a cooling element disposed within the housing, wherein the cooling element is activated during the charging phase and the heating element is activated during the discharging phase.

3. The battery of claim 2 , further comprising a first valve coupled to the delivery line and a second valve coupled to the exhaust line, wherein the exhaust line comprises a pump.

4. The battery of claim 3 , further comprising a control system consisting of a cathode control module operatively connected to the cathode terminal, an anode control module operatively connected to the anode terminal, a pressure control module operatively connected to the first valve and the pump, and a temperature control module operatively connected to the heating and cooling elements.

5. The battery of claim 4 , wherein when the power source is electrically connected to the control system, the cathode control module, the cooling element of the temperature control module, and the first valve of the pressure control module are actuated; and when the external circuit is electrically connected to the control system, the anode control module, the heating element of the temperature control module, and the pump of the pressure control module are actuated.

6. The battery of claim 1 , further comprising an anode enhancement layer and an insulating layer attached to the metal core with the anode enhancement layer disposed in between the metal core and the anode terminal.

7. The battery of claim 4 , wherein the pressurized gas circulating system further comprises:

a first storage tank fluidly connected to the reaction chamber by the exhaust line; and

a second storage tank fluidly connected to the first storage tank by a first auxiliary line and fluidly connected to the high pressure storage tank by a second auxiliary line.

8. The battery of claim 7 , wherein each of the exhaust line, the first auxiliary line and the second auxiliary line comprise a pump and at least two directional pressure valves.

9. The battery of claim 8 , wherein each of the first storage tank, the second storage tank, the high pressure storage tank, and the housing comprise a pressure sensor in communication with the pressure control module.

10. The battery of claim 9 , wherein each of the pumps and the first valve on the delivery line are in communication with the pressure control module.

11. The battery of claim 7 , wherein each of the exhaust line, the delivery line, the first auxiliary line, and the second auxiliary line comprise an outer wall and an inner wall, wherein a vacuum is formed therebetween.

12. The battery of claim 11 , wherein each of the exhaust line, the delivery line, the first auxiliary line, the second auxiliary line further comprise vented reinforcements connecting the outer wall and the inner wall together.

13. The battery of claim 7 , wherein each of the first storage tank, the second storage tank, and the high pressure storage tank comprise an outer wall, a first intermediate wall, a second intermediate wall, and an inner wall, wherein a vacuum is formed in between the outer wall and the first intermediate wall and in between the second intermediate wall and the inner wall.

14. The battery of claim 13 , wherein a refrigerant is disposed in between the first intermediate wall and the second intermediate wall.

15. The battery of claim 1 , wherein the positively charged metal is at least one of technetium and rhenium.

16. A battery comprising:

a pressurized gas circulating system comprising at least a high pressure storage tank;

a reaction chamber comprising a housing and a positively charged metal core disposed within the housing, wherein the positively charged metal is at least one of technetium and rhenium;

a delivery line fluidly connecting the high pressure storage tank to the housing;

an exhaust line fluidly connecting the housing to the pressurized gas circulating system;

a cathode terminal; and

an anode terminal connected to the positively charged metal core, wherein

the battery comprises a charging phase when connected to a power source and a discharging phase when connected to an external circuit,

the charging phase comprising a hydrogen gas flowing from the high pressure storage tank through the delivery line, wherein the hydrogen gas is ionized by the cathode terminal with electrons and the ionized hydrogen gas comes into contact with the metal core, and

the discharging phase comprising the anode terminal delivering the electrons to the external circuit and the hydrogen gas flowing from the housing into the exhaust line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2019
From: MUSICK, MATHEW STEVEN
To: HANDS OF JESUS, INC.
Reel/Frame 049760/0030 →
Continuity (2)
Provisional Application 62277223 · Jan 11, 2016
Related Publication 20170200969A1 · Jul 13, 2017