IP Library › Granted Patent US 8,753,579
Granted Patent B2
US 8,753,579 · App. 11/816,687 · Granted Jun 17, 2014

Photoreactor

Inventors: Christian Sattler (Bonn, DE); Christian Jung (Troisdorf, DE); Hans-Jürgen Bigus (Eberstadt, DE)
Assignees: Deutsches Zentrum für Luft- und Raumfahrt e.V.; Hirschmann Laborgeräte GmbH & Co. KG
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Quick Facts
Patent No.
US 8,753,579
App. No.
11/816,687
Granted
Jun 17, 2014
Kind
B2
Abstract

The photoreactor comprises a tube bundle ( 10 ) made up of numerous capillary tubes ( 11 ) through which a reaction medium flows. The tubes ( 11 ) are transparent. Solar radiation or artificial radiation acts upon the reaction medium for effecting a photochemical or photobiological treatment. The inlet chamber ( 12 ) connected with the tube bundle ( 10 ) comprises a flow distributor ( 16 ) which distributes the reaction medium from the fluid inlet ( 15 ) to the tubes ( 11 ). The flow distributor ( 16 ) allows for a smaller volume of the inlet chamber ( 12 ). The reactor volume, which is not irradiated, is thus reduced, and the efficiency of the rector is enhanced.

Claims (15)

1. A photoreactor comprising radiation-permeable tubes through which a reaction medium is flowable and which are irradiated with light from outside, wherein the tubes extend from an inlet chamber provided with a fluid inlet,

said inlet chamber including a flow distributor that distributes the reaction fluid from said fluid inlet to inlet ends of said tubes, and wherein the flow distributor is a bulkhead provided with holes that are arranged in an offset manner relative to said inlet ends of the tubes.

2. The photoreactor according to claim 1 , wherein the tubes are capillary tubes having a wall thickness amounting to at least 10% of the inner diameter.

3. The photoreactor according to claim 1 , wherein the tubes have a wall thickness amounts to at least 10% of the inner diameter.

4. The photoreactor according to claim 1 , wherein the tubes define an elongate tube bundle extending between the inlet chamber and an outlet chamber, the dimension of said tube bundle being equal to or larger than a value of twice the outer diameter of one of the tubes as seen in the direction of light radiation.

5. The photoreactor according to claim 4 , wherein the tubes are arranged in planar layers.

6. The photoreactor according to claim 4 , wherein there is provided a mirror surface extending parallel to the tube bundle.

7. The photoreactor according to claim 4 , wherein ends of the tubes are embedded in a wall of the inlet chamber and/or the outlet chamber.

8. The photoreactor according to claim 4 , wherein inside or outside the tube bundle a radiation source is arranged which supplies the radiation required for the photoreaction.

9. The photoreactor according to claim 4 , wherein the tube bundle as well as the inlet chamber and the outlet chamber are combined to form a self-supporting structure defining a module for use a larger solar treatment plant.

10. The photoreactor according to claim 1 , wherein the inner surfaces of the tubes are provided with a coating.

11. The photoreactor according to claim 1 , wherein the inlet chamber and/or an outlet chamber comprise an electrode configured as an oxygen-reducing cathode, and another electrode configured as an anode.

12. The photoreactor according to claim 1 , wherein the inlet chamber and/or an outlet chamber comprise an electrode configured as a chloride-oxidizing anode, and another electrode configured as a cathode.

13. The photoreactor according to claim 11 , wherein the flow distributor defines one of the electrodes.

14. The photoreactor according to claim 1 , wherein the flow distributor is configured as a static mixer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2008
From: SATTLER, CHRISTIAN; JUNG, CHRISTIAN; BIGUS, HANS-JURGEN
To: DEUTSCHES ZENTRUM FUR LUFT-UND RAUMFAHRT E.V.; HIRSCHMANN LABORGERATE GMBH & CO. KG
Reel/Frame 021001/0863 →
Priority Claims (2)
DE 10 2005 007 771 · Feb 19, 2005 · national
WO PCT/EP2006/050400 · Jan 24, 2006 · international
Continuity (1)
Related Publication 20080299017A1 · Dec 4, 2008