US2014349204A1PendingUtilityA1
Energy unit with safe and stable hydrogen storage
Est. expiryFeb 28, 2031(~4.6 yrs left)· nominal 20-yr term from priority
Inventors:Nicolas Kernene
H01M 8/0656H01M 2008/1095F17C 11/005H01M 16/003H01M 8/04208H01M 8/04216H01M 8/0693H01M 8/04089Y02E60/50H01M 8/06Y02E60/10Y02E60/36Y02E60/32Y02E10/50C25B 1/04H01M 16/006
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Claims
Abstract
An energy unit in accordance with an embodiment of the present application stores at least water and hydrogen. The energy unit includes an electrolysis component operable to provide hydrogen from the water, a hydrogen storage component operable to safely and stably store hydrogen in sold form and a fuel cell component operable to produce electricity from the hydrogen. The energy unit may be grouped with other like energy units to provide constant power for desired applications.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An energy unit comprises:
a housing; a power source mounted in or on the housing and configured to provide electricity; a fluid chamber in the housing configured to hold a volume of fluid; an electrolysis element in the housing electrically connected to the power source and in fluid communication with the fluid chamber, the electrolysis chamber configured and operable to break the fluid down and to provide hydrogen gas; a hydrogen storage element in the housing connected to the electrolysis element and configured to store hydrogen in solid form; and a fuel cell in the housing, connected to the hydrogen storage element and operable to generate electricity using at least hydrogen supplied from the hydrogen storage element.
2 . The energy unit of claim 1 , wherein the power source is a solar power source configured and operable to provide electricity based on sunlight.
3 . The energy unit of claim 1 , wherein the fluid chamber holds water and the electrolysis element is configured to separate the water into hydrogen gas and oxygen gas utilizing electricity from the power source.
4 . The energy unit of claim 3 , wherein the oxygen gas is directed out of the housing.
5 . The energy unit of claim 1 , wherein the fluid chamber includes a bio fuel and the electrolysis element is configured to separate hydrogen gas from the bio fuel utilizing electricity from the power source.
6 . The energy unit of claim 1 , wherein the hydrogen storage chamber further comprises:
a cylindrical housing; a solenoid mounted on a first end of the cylindrical housing and configured to reciprocate at a desired frequency; a conical ram head attached to a free of the solenoid in the cylindrical housing and configured to reciprocate with the solenoid; and a metal hydride material positioned around the sides of the cylindrical housing, wherein the reciprocating motion of the solenoid and ram head drives hydrogen into the metal hydride material.
7 . The energy unit of claim 6 , wherein the cylindrical housing further comprises an inlet connected to the electrolysis element and an outlet connected to the fuel cell.
8 . The energy unit of claim 7 , further comprising:
an inlet valve positioned in the inlet and selectively openable to allow hydrogen gas from the electrolysis unit into the cylindrical housing; and an outlet valve positioned at the outlet and selectively openable to allow hydrogen in the cylindrical housing to exit into the fuel cell.
9 . The energy unit of claim 1 , further comprising:
at least one protrusion extending from the housing; and at least one recess, formed in the housing, opposite the protrusion.
10 . The energy unit of claim 9 , wherein the at least one protrusion is electrically connected to at least one of the fuel cell and the power source and is configured to supply or receive electricity to or from an external device.
11 . The energy unit of claim 10 , wherein the protrusion is in fluid communication with the fluid chamber and is configured to provide or receive fluid to or from the external device.
12 . The energy unit of claim 11 , wherein the external device is an energy unit in accordance with claim 1 .
13 . The energy unit of claim 9 , wherein the at least one recess is electrically connected to at least one of the fuel cell and the power source and is configured to supply or receive electricity to or from an external device.
14 . The energy unit of claim 13 , wherein the recess is in fluid communication with the fluid chamber and is configured to provide or receive fluid to or from an external source.
15 . The energy unit of claim 14 , wherein the external device is an energy unit in accordance with claim 1 .
16 . An energy system comprising:
a plurality of energy units;
each energy unit comprising:
a housing;
a power source mounted in or on the housing and configured to provide electricity;
a fluid chamber in the housing configured to hold a volume of fluid;
an electrolysis element in the housing electrically connected to the power source and in fluid communication with the fluid chamber, the electrolysis chamber configured and operable to break the fluid down and to provide hydrogen gas;
a hydrogen storage element in the housing connected to the electrolysis element and configured to store hydrogen in solid form; and
a fuel cell in the housing, connected to the hydrogen storage element and operable to generate electricity using at least hydrogen supplied from the hydrogen storage element;
wherein each energy unit is connected with at least one other energy unit such that multiple energy units operate together to provide electricity at a desired voltage or current.
17 . The energy system of claim 16 , wherein each energy unit of the plurality of energy units further comprises:
at least one protrusion extending from the housing; and at least one recess, formed in the housing, opposite the protrusion.
18 . The energy system of claim 17 , wherein the at least one protrusion is electrically connected to at least one other energy unit of the plurality of fuel cells to supply or receive electricity.
19 . The energy system of claim 17 , wherein the protrusion is in fluid communication with the fluid chamber and is configured to provide or receive fluid to or from from at least one other energy unit.
20 . The energy system of claim 16 , wherein the at least one recess is electrically connected to at least one of the fuel cell and the power source and is configured to supply or receive electricity to or from at least one other energy unit.
21 . The energy system of claim 20 , wherein the at least one recess is in fluid communication with the fluid chamber and is configured to provide or receive fluid to or from at least one other energy unit.Join the waitlist — get patent alerts
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