Photobioreactor systems and methods

US10570359B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10570359-B2
Application numberUS-201816230036-A
CountryUS
Kind codeB2
Filing dateDec 21, 2018
Priority dateMar 14, 2013
Publication dateFeb 25, 2020
Grant dateFeb 25, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An algal growth system can include a frame and a flexible sheet material that can have a substantially vertical orientation, where the flexible sheet material can be configured to facilitate the growth and attachment of algae, where the flexible sheet material can be supported by the frame. The algal growth system can include a first drive shaft, where the first drive shaft can be coupled with the frame, where the first drive shaft can support and actuate the flexible sheet material, a gear system, where the gear system can be coupled with the first drive shaft, a first roller, where the first roller can be coupled with the frame and can be configured to guide the flexible sheet material, and a drive motor, where the drive motor can be coupled with the gear system, where the drive motor can actuate the gear system and the at least one drive shaft such that the flexible sheet material can be actuated.

First claim

Opening claim text (preview).

We claim: 1. An algal growth method comprising the steps of: providing an algal growth system, the algal growth system including; a. a frame; b. a first flexible sheet material mounted on a first frame in a first mounted geometry, the first flexible sheet material having a substantially vertical orientation when mounted on the first frame such that the height of the first mounted geometry is greater than the width of the first mounted geometry; c. a second flexible sheet material mounted on a second frame in a second mounted geometry, the first flexible sheet material and the second flexible sheet material being noncontiguous, where the second flexible sheet material has a substantially vertical orientation when mounted on the second frame such that the height of the second mounted geometry is greater than the width of the second mounted geometry; d. a first drive shaft, the first drive shaft being coupled with the first frame, wherein the first drive shaft supports and actuates the first flexible sheet material, and a second drive shaft, the second drive shaft being coupled with the second frame, wherein the second drive shaft supports and actuates the second flexible sheet material; e. a gear system, wherein the gear system is coupled with the first drive shaft and the second drive shaft such that the noncontiguous first flexible sheet material and the second flexible sheet material are concurrently actuated; f. a first roller coupled with the first frame to guide the first flexible sheet material, and a second roller coupled with the second frame to guide the second flexible sheet material; g. a drive motor, the drive motor being coupled with the gear system, wherein the drive motor actuates the gear system and the first drive shaft such that the first flexible sheet material is actuated and the second drive shaft such that the second flexible sheet material is actuated concurrently; h. a liquid phase and a gaseous phase, wherein the liquid phase comprises rotating the first flexible sheet material and the second flexible sheet material through a contacting liquid retained within a fluid reservoir and the gaseous phase comprises rotating the first flexible sheet material and the second flexible sheet material through a sunlight capture part wherein a majority of the first flexible sheet material and the second flexible sheet material is positioned within the gaseous phase and a minority of the first flexible sheet material and the second flexible sheet material is positioned within the liquid phase; and i. a harvesting mechanism, wherein the harvesting mechanism is positioned entirely within a sunlight capture part associated with the gaseous phase; and J. a raceway, at least a portion of the raceway being positioned beneath the frame, wherein the raceway at least partially defines the fluid reservoir; operating the algal growth system; and harvesting algae from the algal growth system. 2. An algal growth method comprising the steps of: providing an algal growth system, the algal growth system including; a. a frame; b. a first flexible sheet material mounted on a first frame in a first mounted geometry, the first flexible sheet material having a substantially vertical orientation when mounted on the first frame such that the height of the first mounted geometry is greater than the width of the first mounted geometry; c. a second flexible sheet material mounted on a second frame in a second mounted geometry, the first flexible sheet material and the second flexible sheet material being noncontiguous, where the second flexible sheet material has a substantially vertical orientation when mounted on the second frame such that the height of the second mounted geometry is greater than the width of the second mounted geometry; d. a first drive shaft, the first drive shaft being coupled with the first frame, wherein the first drive shaft actuates the first flexible sheet material, and a second drive shaft, the second drive shaft being coupled with the second frame, wherein the second drive shaft actuates the second flexible sheet material; e. an actuator system, wherein the actuator system is coupled with the first drive shaft and the second drive shaft such that the noncontiguous first flexible sheet material and the second flexible sheet material are concurrently actuated; f. a motor, motor being coupled with the actuator system, wherein the motor actuates the actuator system and the first drive shaft such that the first flexible sheet material is actuated and the second drive shaft such that the second flexible sheet material is actuated concurrently; and g. a harvesting mechanism; and h. a reservoir, at least a portion of the reservoir being positioned beneath the frame; operating the algal growth system; and harvesting algae from the algal growth system. 3. An algal growth method comprising the steps of: providing an algal growth system, the algal growth system including; a. a first flexible sheet material mounted on a first frame in a first mounted geometry, the first flexible sheet material having a substantially vertical orientation when mounted on the first frame such that the height of the first mounted geometry is greater than the width of the first mounted geometry; b. a second flexible sheet material mounted on a second frame in a second mounted geometry, the first flexible sheet material and the second flexible sheet material being noncontiguous, where the second flexible sheet material has a substantially vertical orientation when mounted on the second frame such that the height of the second mounted geometry is greater than the width of the second mounted geometry; c. a drive motor, the drive motor being coupled with a gear system, wherein the drive motor actuates the gear system such that the first flexible sheet material is actuated and a drive shaft such that the second flexible sheet material is actuated concurrently; and d. a raceway, at least a portion of the raceway being positioned beneath the first flexible sheet materials and the second flexible sheet material; operating the algal growth system; and harvesting algae from the algal growth system.

Assignees

Inventors

Classifications

  • Membranes; Filters (filters or filtration in general B01D24/00-B01D41/00) · CPC title

  • Unicellular algae; Culture media therefor (as new plants A01H13/00) · CPC title

  • Rotation or movement of the cells support, e.g. rotated hollow fibers · CPC title

  • Enzymes or microbial cells immobilised on or in an inorganic carrier · CPC title

  • Enzymes or microbial cells immobilised on or in an organic carrier · CPC title

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Frequently asked questions

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What does patent US10570359B2 cover?
An algal growth system can include a frame and a flexible sheet material that can have a substantially vertical orientation, where the flexible sheet material can be configured to facilitate the growth and attachment of algae, where the flexible sheet material can be supported by the frame. The algal growth system can include a first drive shaft, where the first drive shaft can be coupled with …
Who is the assignee on this patent?
Gross Wen Tech Inc, Univ Iowa State Res Found Inc
What technology area does this patent fall under?
Primary CPC classification C12M21/02. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Feb 25 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).