IP Library Granted Patent US 8,409,851
Granted Patent B2
US 8,409,851 · App. 12/655,233 · Granted Apr 2, 2013

Bioactive carbon dioxide filter apparatus and method therefor

Inventor: Param Jaggi (Plano, TX)
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Quick Facts
Patent No.
US 8,409,851
App. No.
12/655,233
Granted
Apr 2, 2013
Kind
B2
Abstract

A bioactive filter is provided which comprises a transparent canister having gas permeable membranes as entry and exit ports. A source of carbon dioxide in gaseous form is allowed to enter the entry membrane and pass through a solution contained in the canister which supports a live colony of algae. The algae carries out photosynthesis thereby altering the carbon dioxide to oxygen and sugar. The oxygen is released through the exit port.

Claims (41)

1. A carbon dioxide filter apparatus comprising:

a transparent canister having an entry port and an exit port, an interior surface and an external surface;

the entry port comprising a first gas permeable membrane;

the exit port comprising a second gas permeable membrane;

the canister including a first deposit of algae on the interior surface and containing a nutrient liquid; and

whereby when carbon dioxide enters the first gas permeable membrane and contacts the deposit of algae, the deposit of algae provides a photosynthesis reaction producing oxygen, which exits through the second gas permeable membrane;

a central tube operatively disposed in the canister, bounding the entry membrane, and providing an exit port;

the central tube being comprised of a third gas permissible membrane and incorporating a pattern of polymer fibers;

the central tube including a second deposit of algae adjacent the pattern of polymer fibers;

whereby carbon dioxide enters the entry port and traverses the third gas permissible membrane and reacts with the first deposit of algae and the second deposit of algae to form oxygen; and

whereby the oxygen escapes through the exit port.

2. The filter apparatus of claim 1 wherein the entry port is removably connected to a source of gaseous carbon dioxide.

3. The apparatus of claim 1 further comprising a light source, adjacent the algae, the light source being drawn from the group of electrical and chemical.

4. The apparatus of claim 1 further comprising a heat sink operatively connected to the central tube.

5. The apparatus of claim 1 wherein the central tube is comprised of a titanium alloy.

6. The apparatus of claim 1 further comprising a heat sink operatively connected to the transparent canister.

7. A carbon dioxide filter apparatus comprising:

a transparent canister having a first entry port, a second entry port, and an exit port;

the first entry port comprising a first gas permeable membrane;

the second entry port comprising a second gas permeable membrane;

the exit port comprising a third gas permeable membrane;

a first sealed digestion tube, comprised of a fourth gas permeable membrane, connected to the first gas permeable membrane and resident diagonally in the canister;

a second sealed digestion tube, comprised of a fifth gas permeable membrane, connected to the second gas permeable membrane and resident diagonally in the canister;

the first sealed digestion tube supporting a first colony of algae;

the second sealed digestion tube supporting a second colony of algae;

the canister containing a liquid nutrient adjacent the first sealed digestion tube and the second sealed digestion tube; and

whereby gaseous carbon dioxide enters the first entry port and the second entry port and the first colony of algae and the second colony of algae, in the presence of light through the canister, provide a photosynthesis reaction eliminating at least a fraction of the gaseous carbon dioxide and producing oxygen that exits through the exit port as an escaping gas.

8. The apparatus of claim 7 further comprising a flow control nozzle adjacent the exit membrane to control a flowrate of the escaping gas.

9. A filter for gaseous carbon dioxide apparatus comprising:

a support canister having an entry port and an exit port;

the exit port including an exit membrane;

the entry port connected to a dispersion chamber;

the disposition chamber ductedly connected to an entry membrane; the entry membrane being gas permeable;

a manifold operatively contained within the entry membrane;

the manifold connected to a source of ambient air pressure;

a nutrient liquid contained by support membrane;

a colony of vilified algae resident within the nutrient liquid;

a light source adjacent the colony of vilified algae; and

whereby when the light source is active and gaseous carbon dioxide under pressure enters the entry membrane, ambient air escapes into the nutrient liquid from the manifold and the colony of vilified algae provides a photosynthesis reaction to reduce a portion of the gaseous carbon dioxide to gaseous oxygen; the gaseous oxygen exiting through the exit membrane.

10. The apparatus of claim 9 further comprising an insulated material at least partially surrounding the support canister.

11. The apparatus of claim 9 further comprising a heat source adjacent the colony of vilified algae.

Continuity (2)
Provisional Application 61203564 · Dec 23, 2008
Related Publication 20100190241A1 · Jul 29, 2010