IP Library Granted Patent US 11,827,870
Granted Patent B2
US 11,827,870 · App. 17/669,290 · Granted Nov 28, 2023

Device for producing metabolites

Inventors: Markos Aurelio Salisbury (Austin, TX); Robert Allen Ersek (Austin, TX)
Assignee: Generen Labs, Inc.
C12M23/06C12M23/26C12M23/34C12M27/02C12M29/04C12M33/14C12M41/06C12M41/12C12M41/42
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,827,870
App. No.
17/669,290
Granted
Nov 28, 2023
Kind
B2
Abstract

A bioreactor for producing hydrogen gas and other metabolites. The bioreactor utilizes light, fermentation, and other metabolic processes for the production of metabolites, derived from various microorganisms contained within the bioreactor through respective metabolic pathways. The bioreactor comprises a main reactor chamber, a semipermeable membrane, a sleeve, a power supply, a substrate medium, a heating member, a plurality of tubing members, a collection reservoir, a pressure-sealed connecter member, and an agitator.

Claims (64)

1. A bioreactor comprising:

a main reactor chamber, including a substrate containment space;

a semipermeable membrane with a hollow inner lumen side and an external surface side;

a sleeve perimetrically enveloped around the main reactor chamber;

an electric power supply;

a substrate medium;

a heating member;

a plurality of tubing members;

a collection reservoir;

a pressure-sealed connecter member;

a metabolite purifying filter member;

an agitator;

the plurality of tubing members comprising an inlet tubing member and a collection tubing member;

the pressure-sealed connecter member hermetically sealed to the main reactor chamber, opposite the heating member and the agitator;

the substrate medium fills the substrate containment space by traveling through the inlet tubing member into the substrate containment space;

the substrate medium envelopes the external surface side of the semipermeable membrane and permeates through the semipermeable membrane to fill the inner lumen side;

the heating member maintains a predefined temperature to maintain a predefined substrate temperature;

the agitator maintains a predefined cyclical rate;

the electric power supply coupled to the heating member;

the collection tubing member traverses through the pressure-sealed connector member to enter the hollow inner lumen space of the semipermeable membrane;

the metabolite purifying filter member connected to the semipermeable membrane by the collection tubing member of the plurality of tubing members; and

the collection reservoir connected to the metabolite purifying filter member by the collection tubing member.

2. The bioreactor of claim 1 , wherein the semipermeable member is housed within the main reactor chamber within the substrate containment space.

3. The bioreactor of claim 1 , wherein

the plurality of tubing members further comprises an outlet tubing member;

the plurality of tubing members are hermetically sealed to the pressure-sealed connecter member;

the inlet tubing member and outlet tubing member traverse through the pressure-sealed connecter member to enter the substrate containment space; and

the collection tubing member traverses through the pressure-sealed connecter member to enter the hollow inner lumen space of the semipermeable membrane.

4. The bioreactor of claim 3 , further comprising:

a light source;

the light source contained within the sleeve; and

the light source having a variable wavelength, wherein the wavelength is varied to promote metabolite production by a plurality of microorganisms contained within the hollow lumen space of the semipermeable membrane.

5. The bioreactor of claim 3 , wherein the substrate medium is supplied to the substrate containment space at a predefined flow rate to permeate through the semipermeable membrane and into the hollow inner lumen space without disrupting or removing the contents therein.

6. The bioreactor of claim 5 , wherein a dial increases or decreases the temperature of the heating member and cyclical rate of the agitator.

7. A bioreactor comprising:

a main reactor chamber, including a substrate containment space;

a semipermeable membrane with a hollow inner lumen side and an external surface side;

a sleeve perimetrically enveloped around the main reactor chamber;

an electric power supply;

a substrate medium;

a heating member;

a plurality of tubing members;

a collection reservoir;

a pressure-sealed connecter member;

a metabolite purifying filter member;

an agitator;

the pressure-sealed connecter member hermetically sealed to the main reactor chamber, opposite the heating member and the agitator;

the semipermeable membrane is housed within the main reactor chamber within the substrate containment space;

the plurality of tubing members includes an inlet tubing member, an outlet tubing member, and a collection tubing member;

the plurality of tubing members are hermetically sealed to the pressure-sealed connecter member;

the inlet tubing member and outlet tubing member traverse through the pressure-sealed connecter member to enter the substrate containment space;

the collection tubing member traverses through the pressure-sealed connecter member to enter the hollow inner lumen space of the semipermeable membrane;

the substrate medium fills the substrate containment space by traveling through the inlet tubing member into the substrate containment space;

the substrate medium envelopes the external surface side of the semipermeable membrane and permeates through the semipermeable membrane to fill the inner lumen side;

the heating member maintains a predefined temperature to maintain a predefined substrate temperature;

the agitator maintains a predefined cyclical rate;

the electric power supply coupled to the heating member;

the metabolite purifying filter member connected to the semipermeable membrane by the collection tubing member of the plurality of tubing members; and

the collection reservoir connected to the metabolite purifying filter member by the collection tubing member.

8. The bioreactor of claim 7 , further comprising:

a light source;

the light source contained within the sleeve; and

the light source having a variable wavelength, wherein the wavelength is varied to promote metabolite production by a plurality of microorganisms contained within the hollow lumen space of the semipermeable membrane.

9. The bioreactor of claim 7 , wherein the substrate medium is supplied to the substrate containment space at a predefined flow rate to permeate through the semipermeable membrane and into the hollow inner lumen space without disrupting or removing the contents therein.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2023
From: SALISBURY, MARKOS AURELIO
To: GENEREN LABS, INC.
Reel/Frame 065128/0380 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2022
From: SALISBURY, MARKOS AURELIO; ERSEK, ROBERT ALLEN
To: SALISBURY, MARKOS AURELIO
Reel/Frame 059107/0704 →
Continuity (2)
Provisional Application 63191234 · May 20, 2021
Related Publication 20220372416A1 · Nov 24, 2022