IP Library Granted Patent US 8,277,892
Granted Patent B2
US 8,277,892 · App. 11/678,438 · Granted Oct 2, 2012

Process for creating an oxygen scavenging particle

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Quick Facts
Patent No.
US 8,277,892
App. No.
11/678,438
Granted
Oct 2, 2012
Kind
B2
Abstract

A method is disclosed for manufacturing one or more oxygen scavenging particles, wherein the particle(s) comprises an oxidizable metal particle, such as elemental iron; an acidifying electrolyte such as sodium or potassium bisulfate and optionally a water hydrolysable Lewis acid, such as aluminum chloride. The method comprises the step of coating the oxidizable particle with a first compound and then reacting the first compound with a second compound to form a third compound, wherein the third compound promotes the reaction of the oxidizable particle with oxygen.

Claims (18)

1. A method for creating an oxygen scavenging particle comprising the steps of:

(A) depositing a first compound which is a precursor compound from a liquid or gas phase onto an oxidizable particle; wherein said first compound is reacted with a second compound deposited on the oxidizable product which reacts to form a third compound which is an acidifying electrolyte on the oxidizable particle which produces a pH less than 7 in a dilute aqueous solution and substantially disassociates into positive and negative ions in the presence of moisture wherein the third compound is capable of initiating the reaction of the oxidizable particle with oxygen, wherein the second compound comprises SO 3 and is deposited on the particle from a gas stream;

(B) wherein depositing is carried out under conditions sufficient for said second reactive compound to react with the first compound to form the third compound, and wherein the third compound is capable of initiating the reaction of the oxidizable particle with oxygen when the oxidizable particles comprising the third compound are exposed to water.

2. The method of claim 1 wherein the first compound is a metal hydroxide.

3. The process of claim 1 , wherein the first compound is selected from the group consisting of sodium hydroxide and potassium hydroxide.

4. The method according to claim 1 , wherein the particle is exposed to a further step wherein a water hydrolysable Lewis acid is deposited upon the oxidizable particle.

5. The method according to claim 4 , wherein the water hydrolysable Lewis acid is selected from the group consisting of titanium tetrachloride, tin tetrachloride, and POCl 3 , SOCl 2 , S 2 Cl 2 , PCl 3 , PSCl 3 , PBr 3 , POBr 3 , PSBr 3 , PCl 5 , SiCl 4 , GeCl 4 , SbCl 5 , AlCl 3 , FeCl2, FeCl 3 , AlBr 3 , SbCl 3 , SbBr 3 , and ZrCl 4 .

6. The method of claim 1 wherein the first component comprises NaOH or KOH and is deposited onto the oxidizable particle from solvent solution and then the particle has the solvent removed prior to depositing the second component.

7. A method for creating an oxygen scavenging particle comprising the steps of:

(A) depositing a first compound which is a precursor compound from a liquid or gas phase onto an oxidizable particle; wherein said first compound reacts with a second compound which is SO 3 to form a third compound which is an acidifying electrolyte which produces a pH less than 7 in a dilute aqueous solution and substantially disassociates into positive and negative ions in the presence of moisture wherein the third compound is capable of initiating the reaction of the oxidizable particle with oxygen;

(B) wherein depositing the first compound and the SO 3 is under conditions sufficient for the SO 3 to react with the first compound to form the third compound and wherein the third compound is capable of initiating the reaction of the oxidizable particles with oxygen when the oxidizable particle comprising the third compound are exposed to water, wherein the depositing of the first component is from solvent solution, and then the particle has the solvent removed prior to depositing the second component.

8. The method according to claim 7 , wherein the particle is exposed to a further step wherein a water hydrolysable Lewis acid is deposited upon the oxidizable particle.

9. The method according to claim 8 , wherein the water hydrolysable Lewis acid is selected from the group consisting of titanium tetrachloride, tin tetrachloride, and POCl 3 , SOCl 2 , S 2 Cl 2 , PCl 3 , PSCl 3 , PBr 3 , POBr 3 , PSBr 3 , PCl 5 , SiCl 4 , GeCl 4 , SbCl 5 , AlCl 3 , FeCl2, FeCl 3 , AlBr 3 , SbCl 3 , SbBr 3 , and ZrCl 4 .

10. A method for creating an oxygen scavenging particle comprising the steps of:

(A) depositing a first compound which is a precursor compound from a liquid or gas phase onto an oxidizable particle; wherein said first compound is reacted with a second compound deposited on the oxidizable product which reacts to form a third compound which is an acidifying electrolyte on the oxidizable particle which produces a pH less than 7 in a dilute aqueous solution and substantially disassociates into positive and negative ions in the presence of moisture wherein the third compound is capable of initiating the reaction of the oxidizable particle with oxygen;

(B) wherein depositing is carried out under conditions sufficient for said second reactive compound to react with the first compound to form the third compound, and wherein the third compound is capable of initiating the reaction of the oxidizable particle with oxygen when the oxidizable particles comprising the third compound are exposed to water, wherein the particle is exposed to a further step wherein a water hydrolysable Lewis acid is deposited upon the oxidizable particle and wherein the depositing of the first component is from solvent solution, and then the particle has the solvent removed prior to depositing the second component.

11. The method of claim 10 wherein the first compound is a metal hydroxide.

12. The method of claim 10 , wherein the water hydrolysable Lewis acid is selected from the group consisting of titanium tetrachloride, tin tetrachloride, and POCl 3 , SOCl 2 , S 2 Cl 2 , PCl 3 , PSCl 3 , PBr 3 , POBr 3 , PSBr 3 , PCl 5 , SiCl 4 , GeCl 4 , SbCl 5 , AlCl 3 , FeCl 2 , FeCl 3 , AlBr 3 , SbCl 3 , SbBr 3 , and ZrCl 4 .

Assignments (5)
PATENT SECURITY AGREEMENT Recorded Apr 22, 2025
From: MULTISORB TECHNOLOGIES, INC.; FACET (OKLAHOMA) LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 070905/0920 →
RELEASE OF SECURITY INTEREST Recorded Jun 13, 2018
From: HSBC BANK USA, NATIONAL ASSOCIATION
To: MULTISORB TECHNOLOGIES, INC.
Reel/Frame 046351/0248 →
SECURITY INTEREST Recorded Oct 10, 2014
From: MULTISORB TECHNOLOGIES, INC.
To: HSBC BANK USA
Reel/Frame 033958/0335 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2011
From: M & G USA CORPORATION; M & G POLIMERI ITALIA S.P.A.
To: MULTISORB TECHNOLOGIES, INC.
Reel/Frame 026859/0965 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2010
From: ROLLICK, KEVIN L
To: M&G USA CORPORATION; M&G POLIMERI ITALIA S.P.A.
Reel/Frame 023959/0833 →