IP Library › Granted Patent US 11,547,976
Granted Patent B2
US 11,547,976 · App. 17/292,824 · Granted Jan 10, 2023

Reactor for a chemical reaction and method for controlling the chemical reaction

Inventors: Anton Ledwon (Troisdorf, DE); Waldemar Lewtschenko (Hennef, DE)
Assignee: HEION GMBH
B01J4/002B01J4/007B01J4/008B01J19/0033B01J19/26
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Quick Facts
Patent No.
US 11,547,976
App. No.
17/292,824
Granted
Jan 10, 2023
Kind
B2
Abstract

A reactor for a chemical reaction, comprising a housing and a reaction chamber, a nozzle member with an inlet for letting at least one reactant flow into the reaction chamber, wherein the nozzle member is mounted in a movable manner relative to the housing, a sensor device and an adjusting device influencing the movement of the nozzle member can be adjusted, a control unit configured for receiving from the sensor device a measurement signal of the sensor device based on the measuring quantity and generating a control signal for the adjusting device depending on the measurement signal.

Claims (20)

1. A reactor ( 1 ) for a chemical reaction, comprising

a housing ( 10 ) and a reaction chamber ( 3 );

a nozzle member ( 30 ) with an inlet ( 32 ) for letting at least one reactant flow into the reaction chamber ( 3 ), wherein the nozzle member ( 30 ) is mounted in a movable manner relative to the housing ( 10 );

a sensor device ( 80 ) by means of which at least one measuring quantity can be detected during the chemical reaction;

an adjusting device ( 50 ) by means of which at least one mounting parameter influencing the movement of the nozzle member ( 30 ) can be adjusted; and

a control unit ( 70 ) configured for receiving from the sensor device ( 80 ) a measurement signal of the sensor device ( 80 ) based on the measuring quantity and generating a control signal for the adjusting device ( 50 ) depending on the measurement signal.

2. The reactor ( 1 ) according to claim 1 , characterized in that the sensor device ( 80 ) has a sensor for detecting a frequency with which the nozzle member oscillates.

3. The reactor ( 1 ) according to claim 1 , characterized in that a first stop ( 21 ) and a second stop ( 52 ) for the nozzle member ( 30 ) are provided, between which the nozzle member ( 30 ) can move, wherein the adjustable mounting parameter is a distance between the first stop ( 21 ) and the second stop ( 52 ).

4. The reactor ( 1 ) according to claim 3 , characterized in that the distance extends parallel to the main flow direction with which the reactant flows through the nozzle member ( 30 ).

5. The reactor ( 1 ) according to claim 1 , characterized in that the nozzle member ( 30 ) has an outlet ( 33 ), wherein a flow cross-section of the outlet ( 33 ) is greater than a flow cross-section of the inlet ( 32 ).

6. The reactor ( 1 ) according to claim 1 , characterized in that the nozzle member ( 30 ) is configured as a disk with a central opening ( 31 ).

7. The reactor ( 1 ) according to claim 1 , characterized in that the nozzle member ( 30 ) is attached to the housing ( 10 ) via a peripherally extending diaphragm ( 40 ).

8. The reactor ( 1 ) according to claim 1 , characterized in that an adjusting member ( 91 ) with a needle-shaped tip ( 92 ) is provided, which is disposed in front of the inlet ( 32 ) of the nozzle member ( 30 ) or reaches through the inlet ( 32 ) of the nozzle member ( 30 ).

9. The reactor ( 1 ) according to claim 8 , characterized in that the position of the needle-shaped tip ( 92 ) relative to the inlet ( 32 ) of the nozzle member ( 30 ) is adjustable.

10. The reactor ( 1 ) according to claim 8 , characterized in that the needle-shaped tip ( 92 ) has a duct ( 93 ) for supplying the reactant or another reactant.

11. The reactor ( 1 ) according to claim 1 , characterized in that surface structures are incorporated in the vicinity of the inlet ( 32 ) of the nozzle member ( 30 ).

12. A method for controlling a chemical reaction taking place in a reaction chamber ( 3 ) of a reactor, wherein the reactor ( 1 ) comprises a housing ( 10 ) and a nozzle member ( 30 ), which is mounted in a movable manner relative to the housing ( 10 ) and has an inlet ( 32 ) for letting at least one reactant flow into the reaction chamber ( 3 ), wherein the nozzle member ( 30 ) executes an oscillating movement during the reaction, wherein at least one oscillation parameter of the oscillating movement is detected, and wherein the reaction is controlled based on the detected oscillation parameter.

13. The method according to claim 12 , characterized in that the oscillation parameter is a frequency of the oscillating movement of the nozzle member ( 30 ).

14. The method according to claim 12 or 13 , characterized in that the oscillating movement is stopped by a first stop ( 21 ) for the nozzle member ( 30 ) and a second stop ( 52 ) for the nozzle member, wherein a distance between the first stop and the second stop is being varied in order to control the reaction.

15. The method according to claim 11 , characterized in that a position, relative to the inlet ( 32 ) of the nozzle member ( 30 ), of a needle-shaped tip ( 92 ), which is disposed in front of the inlet of the nozzle member and/or protrudes at least partially into the inlet of the nozzle member, is changed in order to control the chemical reaction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2021
From: LEDWON, ANTON; LEWTSCHENKO, WALDEMAR
To: HEION GMBH
Reel/Frame 056212/0298 →
Priority Claims (1)
EP 18205787 · Nov 12, 2018 · regional
Continuity (1)
Related Publication 20220016588A1 · Jan 20, 2022
Cited By (6)
US 12,264,561 US 12,312,923 US 12,320,203 US 12,352,551 US 12,509,970 US 12,540,532