IP Library Granted Patent US 12,031,121
Granted Patent B2
US 12,031,121 · App. 17/959,263 · Granted Jul 9, 2024

Systems and methods for cultivating algae

Inventors: Daniel H. Yeh (Tampa, FL); Ivy Lea Cormier Drexler (St. Petersburg, FL); Melanie Pickett (Tampa, FL); David Fulcher (Tampa, FL)
Assignee: UNIVERSITY OF SOUTH FLORIDA
C12N1/12C12M23/22C12M23/50C12M29/04C12M29/20C12M31/08C12M41/32C12M41/40C12M41/46C12M41/48C12M47/02
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Quick Facts
Patent No.
US 12,031,121
App. No.
17/959,263
Granted
Jul 9, 2024
Kind
B2
Abstract

In one embodiment, an algae cultivation system includes a basin that contains a liquid and a photobioreactor at least partially immersed in the liquid of the basin, the photobioreactor comprising a closed container including multiple panels that together define an interior space in which algae can be cultivated, at least one of the panels being transparent, the photobioreactor further comprising an inflatable float associated with the container that can be filled with a gas to change one or both of the position and orientation of the container within the liquid.

Claims (22)

1. An algae cultivation system comprising:

a basin that contains a liquid; and

a photobioreactor at least partially immersed in the liquid of the basin, the photobioreactor comprising a container including multiple panels that together define an interior space in which algae can be cultivated to produce photosynthetic gas, at least one of the panels being transparent, the photobioreactor further comprising multiple inflatable floats associated with the container, wherein each of the multiple inflatable floats is in fluid communication with the interior space and can be selectively filled with the photosynthetic gas from the interior space to change one or both of the position and orientation of the container within the liquid,

wherein the multiple inflatable floats are mounted to opposite sides of the container and, when inflated, raise the height of the container in the liquid,

wherein the photobioreactor further comprises a porous membrane filter that enables water, gases, and nutrients contained within the liquid of the basin to pass into the interior space of the container but prevents contaminants contained within the liquid from passing into the interior space and wherein raising of the height of the container enables water to exit the container through the filter to dewater the algae.

2. The system of claim 1 , wherein the basin is an outdoor, open-top growth media reactor.

3. The system of claim 1 , wherein the container comprises multiple transparent panels.

4. The system of claim 1 , wherein at least one of the multiple inflatable floats comprises an inflatable bag.

5. The system of claim 1 , wherein at least one of the multiple inflatable floats is mounted to one side of the container and, when inflated, tilts the container in the liquid.

6. The system of claim 1 , wherein the container further comprises a gas vent through which photosynthetic gas produced by algae growth within the container can escape the container and a gas line that connects the gas vent to at least one of the multiple inflatable floats such that gas that escapes the container travels through the gas line and inflates the inflatable float.

7. The system of claim 1 , wherein the photobioreactor further comprises an algae extraction port through which algae can be removed from a bottom of the container.

8. A photobioreactor adapted for immersion in a liquid contained within a basin, the photobioreactor comprising:

a container including multiple panels that together define an interior space in which algae can be cultivated to produce photosynthetic gas in the interior space, at least one of the panels being transparent;

multiple inflatable floats mounted to the container that can be filled with the photosynthetic gas from the interior space to change one or both of the position and orientation of the container within the liquid; and

a gas vent incorporated into the container that fluidly connects the interior space to the inflatable float and enables the photosynthetic gas produced by algae growth within the container to be selectively directed to at least one of the multiple inflatable floats,

wherein the multiple inflatable floats are mounted to opposite sides of the container and, when inflated, raise the height of the container in the liquid,

wherein the photobioreactor further comprises a porous membrane filter that enables water, gases, and nutrients contained within the liquid of the basin to pass into the interior space of the container but prevents contaminants contained within the liquid from passing into the interior space and wherein raising of the height of the container enables water to exit the container through the filter to dewater the algae.

9. The photobioreactor of claim 8 , wherein the photobioreactor comprises multiple transparent panels.

10. The photobioreactor of claim 8 , wherein at least one of the multiple inflatable floats comprises an inflatable bag.

11. The photobioreactor of claim 8 , wherein at least one of the multiple inflatable floats is mounted to one side of the container and, when inflated, tilts the container in the liquid.

12. The photobioreactor of claim 8 , wherein the container further comprises a gas line that connects the gas vent to at least one of the multiple inflatable floats such that gas that escapes the container travels through the gas line and inflates the inflatable float.

13. The photobioreactor of claim 8 , wherein the photobioreactor further comprises an algae extraction port through which algae can be removed from a bottom of the container.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 30, 2025
From: UNIVERSITY OF SOUTH FLORIDA
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 070070/0551 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2023
From: YEH, DANIEL H.; DREXLER, IVY LEA CORMIER; PICKETT, MELANIE; FULCHER, DAVID
To: UNIVERSITY OF SOUTH FLORIDA
Reel/Frame 062651/0968 →
Continuity (3)
Division 15350657 · Nov 14, 2016
Provisional Application 62255044 · Nov 13, 2015
Related Publication 20230033254A1 · Feb 2, 2023