Long life sealed alkaline secondary batteries

US2025030073A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2025030073-A1
Application numberUS-202418755136-A
CountryUS
Kind codeA1
Filing dateJun 26, 2024
Priority dateDec 29, 2017
Publication dateJan 23, 2025
Grant date

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

In an aspect, provided is an alkaline rechargeable battery comprising: i) a battery container sealed against the release of gas up to at least a threshold gas pressure, ii) a volume of an aqueous alkaline electrolyte at least partially filling the container to au electrolyte level; iii) a positive electrode containing positive active material and at least partially submerged in the electrolyte, iv) an iron negative electrode at least partially submerged in the electrolyte, the iron negative electrode comprising iron active material; v) a separator at least partially submerged in the electrolyte provided between the positive electrode and the negative electrode; vi) an auxiliary oxygen gas recombination electrode electrically connected to the iron negative electrode by a first electronic component, ionically connected to the electrolyte by a first some pathway, and exposed to a gas headspace above the electrolyte level by a first gas pathway.

First claim

Opening claim text (preview).

1 - 121 . (canceled) 122 . A rechargeable battery comprising: a battery container; an electrolyte in the battery container; a positive electrode comprising positive active material, the positive electrode operationally connected to the electrolyte in the battery container; an iron negative electrode comprising an iron active material, the iron negative electrode operationally connected to the electrolyte in the battery container; a separator disposed in the electrolyte in the battery container with the separator and the electrolyte between the positive electrode and the iron negative electrode; and a sulfide-source material in a solid form electrochemically reducible, in a charge mode of the rechargeable battery, to sulfide releasable into the electrolyte in the battery container. 123 . The rechargeable battery of claim 122 , wherein the sulfide-source material is in the iron negative electrode. 124 . The rechargeable battery of claim 122 , wherein the sulfide-source material is about 0.1 wt % to 10 wt % of the iron active material. 125 . The rechargeable battery of claim 122 , further comprising a reservoir, wherein the sulfide-source material is disposed in the reservoir. 126 . The rechargeable battery of claim 125 , wherein the reservoir is outside of the iron negative electrode and the sulfide-source material in the reservoir is electrically connected to the iron negative electrode. 127 . The rechargeable battery of claim 122 , further comprising a sulfide-containing auxiliary electrode, wherein the sulfide-containing auxiliary electrode is electrically connected to the iron negative electrode. 128 . The rechargeable battery of claim 122 , wherein the sulfide-source material comprises one or more metal sulfides, one or more a sub-oxides of one or more metal sulfides, a solid solution of one or more metal sulfides and one or more oxides or hydroxides, one or more sulfosalt minerals, one or more metalloid sulfides, one or more nonmetal sulfides, or a combination thereof. 129 . The rechargeable battery of claim 122 , wherein sulfide concentration in the electrolyte is about 0.01 micromoles per liter to about 700 micromoles per liter. 130 . The rechargeable battery of claim 122 , wherein the sulfide-source material is in contact with the electrolyte and electrically connected to the positive electrode. 131 . The rechargeable battery of claim 122 , wherein, in the charge mode of the rechargeable battery, sulfide is releasable from the sulfide-source material into the electrolyte via electrochemical reduction and dissolution. 132 . The rechargeable battery of claim 122 , further comprising a sulfide detector, wherein the sulfide detector is configured to detect sulfide concentration in the electrolyte. 133 . A method of fabricating a rechargeable battery, the method comprising: positioning a positive electrode and an iron negative electrode in contact with an electrolyte in a battery container; and contacting the iron negative electrode with a sulfide-source material in solid form, the sulfide-source material in solid form electrochemically reducible, in a charge mode of the rechargeable battery, to sulfide releasable into the electrolyte in the battery container. 134 . The method of claim 133 , wherein contacting the iron negative electrode with the sulfide-source material includes adding the sulfide-source material to the iron negative electrode before positioning the iron negative electrode in contact with the electrolyte in the battery container. 135 . The method of claim 133 , further comprising arranging a separator in the electrolyte with the separator disposed between the positive electrode and the iron negative electrode in the battery container. 136 . The method of claim 133 , further comprising adding a sulfide-containing solution into the electrolyte. 137 . A method of operating an energy storage system, the method comprising: charging a rechargeable battery including a solid form of a sulfide-source material, an iron electrode, and an electrode, the iron electrode including an iron active material, and the electrode including a positive active material, wherein charging the rechargeable battery electrochemically reduces the solid form of the sulfide-source material to sulfide released into an electrolyte operationally connected to the iron electrode and a positive active material; and discharging the rechargeable battery, wherein discharging the rechargeable battery electrochemically oxidizes the sulfide to sulfur. 138 . The method of claim 137 , wherein charging the rechargeable battery includes dissolving the sulfide in the electrolyte. 139 . The method of claim 137 , further comprising detecting concentration of the sulfide in the electrolyte and, based on the concentration of the sulfide detected as below a predetermined threshold, delivering a quantity of the sulfide to the electrolyte.

Assignees

Inventors

Classifications

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US2025030073A1 cover?
In an aspect, provided is an alkaline rechargeable battery comprising: i) a battery container sealed against the release of gas up to at least a threshold gas pressure, ii) a volume of an aqueous alkaline electrolyte at least partially filling the container to au electrolyte level; iii) a positive electrode containing positive active material and at least partially submerged in the electrolyte,…
Who is the assignee on this patent?
Form Energy Inc
What technology area does this patent fall under?
Primary CPC classification H01M4/248. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jan 23 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).