IP Library › Granted Patent US 10,654,006
Granted Patent B1
US 10,654,006 · App. 15/647,158 · Granted May 19, 2020

Devices and methods for infusing gas into a liquid

Inventors: Jim Rearden (Petaluma, CA); Daniel Whittemore (Sebastopol, CA); Chindia Tang (Zhejiang, CN); Thaddius Humphrey (Santa Rosa, CA)
Assignee: BioTherm Hydronic, Inc.
B01F3/04014B01F3/04078B01F3/04099B01D15/14C02F7/00
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Quick Facts
Patent No.
US 10,654,006
App. No.
15/647,158
Granted
May 19, 2020
Kind
B1
Abstract

A device for infusing gas into a liquid comprises a housing and a tube having a width that is smaller than that of the housing and which is positioned within the housing such that the longitudinal axis of the tube is approximately parallel to that of the housing. The device further comprises potting compound interposed between an outside surface of the tube and an inside surface of the housing at both ends of the tube. Microporous hollow fibers extend from the potting compound at the first end of the tube and through the potting compound at the second end of the tube. Openings in the device allow for the introduction of gas and liquid into the device. Gas enters the device and into the microporous hollow fibers. Liquid enters the device and is exposed to the outer surfaces of the microporous hollow fibers. Gas passes from the microporous hollow fibers to the liquid and is dissolved into the liquid. Liquid infused with gas exits the device.

Claims (36)

1. A device for infusing gas into a liquid comprising:

a housing comprising a first end, a second end having an opening configured to receive a gas, a longitudinal axis, and a width;

a tube having a first end, a second end, a longitudinal axis, and a width, wherein the width of the tube is smaller than the width of the housing and wherein the tube is positioned to extend through the first and second ends of the housing and such that the axis of the tube is approximately parallel to the axis of the housing, and wherein the tube is configured to receive a liquid at the first end and to discharge liquid infused with a gas at the second end;

a potting compound interposed between an outside surface of the tube and an inside surface of the housing wherein a first cavity is formed at the first end of the housing, and the potting compound interposed between the outside surface of the tube and an inside surface of the housing wherein a second cavity is formed at the second end of the housing and wherein a third cavity is formed between the housing and the tube and bounded by the potting compound at the ends of the housing;

a plurality of openings extending through a wall of the tube to the third cavity;

a plug configured to divide the tube into a first portion and a second portion and configured to limit fluid flow within the tube between the first portion of the tube and the second portion of the tube;

a plurality of microporous hollow fibers extending through the potting compound at the first end of the tube and through the potting compound at the second end of the tube, wherein ends of the hollow fibers are open to the first cavity and to the second cavity; and

a baffle configured to divide the third cavity into a first portion and a second portion and configured to limit fluid flow within the housing between the first portion of the third cavity and the second portion of the third cavity, the baffle comprising an outer shell and potting compound within the shell, wherein the plurality of microporous hollow fibers extend through the potting compound of the baffle.

2. The device according to claim 1 , wherein the baffle comprises a plurality of fluid passages.

3. The device according to claim 1 , wherein the baffle is circular and a fluid passage encircles the baffle.

4. The device according to claim 1 , further comprising a vent for expelling gas from the device.

5. The device according to claim 1 , wherein the first end of the housing comprises a first end cap sealed to the housing and wherein the second end of the housing comprises a second end cap sealed to the housing.

6. The device according to claim 1 , wherein the first end of the housing comprises a first end cap integrally formed with the housing and wherein the second end of the housing comprises a second end cap integrally formed with the housing.

7. The device according to claim 1 , wherein at least one of the housing and the tube is cylindrical.

8. A method of infusing a gas into a liquid utilizing the device of claim 1 , comprising:

introducing the gas into the opening in the second end of the housing; and

introducing the liquid into the first end of the tube.

9. The method according to claim 2 , wherein the gas is introduced at a first pressure and the liquid is introduced at a second pressure wherein the first pressure is equal to or higher than the second pressure.

10. The method according to claim 2 , wherein the gas consists of oxygen gas and the liquid consists of water.

11. A device for infusing gas into a liquid comprising:

a housing comprising a first end, a second end having an opening configured to receive a gas, a longitudinal axis, and a width;

a tube having a first end, a second end, a longitudinal axis, and a width, wherein the width of the tube is smaller than the width of the housing and wherein the tube is positioned to extend through the first and second ends of the housing and such that the axis of the tube is approximately parallel to the axis of the housing, and wherein the tube is configured to receive a liquid at the first end and to discharge liquid infused with a gas at the second end;

a potting compound interposed between an outside surface of the tube and an inside surface of the housing wherein a first cavity is formed at the first end of the housing, and the potting compound interposed between the outside surface of the tube and an inside surface of the housing wherein a second cavity is formed at the second end of the housing and wherein a third cavity is formed between the housing and the tube and bounded by the potting compound at the ends of the housing;

a plurality of openings extending through a wall of the tube to the third cavity;

a plug configured to divide the tube into a first portion and a second portion and configured to limit fluid flow within the tube between the first portion of the tube and the second portion of the tube;

a plurality of microporous hollow fibers extending through the potting compound at the first end of the tube and through the potting compound at the second end of the tube, wherein ends of the hollow fibers are open to the first cavity and to the second cavity; and

a baffle configured to divide the third cavity into a first portion and a second portion and configured to limit fluid flow within the housing between the first portion of the third cavity and the second portion of the third cavity, the baffle filling an entire cross section of the housing with multiple fluid passages being provided in the baffle.

12. The device according to claim 11 , further comprising a vent for expelling gas from the device.

13. The device according to claim 11 , wherein the first end of the housing comprises a first end cap sealed to the housing and wherein the second end of the housing comprises a second end cap sealed to the housing.

14. The device according to claim 11 , wherein the first end of the housing comprises a first end cap integrally formed with the housing and wherein the second end of the housing comprises a second end cap integrally formed with the housing.

15. The device according to claim 11 , wherein at least one of the housing and the tube is cylindrical.

16. A method of infusing a gas into a liquid utilizing the device of claim 11 , comprising:

introducing the gas into the opening in the second end of the housing; and

introducing the liquid into the first end of the tube.

17. The method according to claim 16 , wherein the gas is introduced at a first pressure and the liquid is introduced at a second pressure wherein the first pressure is equal to or higher than the second pressure.

18. The method according to claim 16 , wherein the gas consists of oxygen gas and the liquid consists of water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2019
From: REARDEN, JIM; WHITTEMORE, DANIEL; ZHEJIANG, CHINDIA TANG; HUMPHREY, THADDIUS
To: BIOTHERM HYDRONIC, INC.
Reel/Frame 048617/0165 →
Cited By (2)
US 1,116,102 US 12,377,389