IP Library Granted Patent US 9,545,590
Granted Patent B2
US 9,545,590 · App. 14/598,622 · Granted Jan 17, 2017

Rotating centrifugal particle separator and gasifier having the same

Inventors: Scott Garrett (Kirkwood, MO); Andrew Schlote (Kirkwood, MO)
Assignee: INNERPOINT ENERGY CORPORATION
B01D45/14C10J3/84C10K1/026C10J2200/39
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Quick Facts
Patent No.
US 9,545,590
App. No.
14/598,622
Granted
Jan 17, 2017
Kind
B2
Abstract

A method of separating solid particles from gaseous matter comprises rotating a spinner about a spinner axis in a rotational direction. The spinner has fluid passageways that operatively connect a gaseous inlet environment to a gaseous outlet environment. The fluid passageways circumferentially extending in a direction opposite the rotational direction as the fluid passageways extend radially inward. The method further comprises forcing gaseous matter radially inward through the rotating spinner by creating pressure differential that is such that the pressure of the gaseous inlet environment exceeds the pressure of the gaseous fluid outlet. An assembly comprises a spinner configured to rotate in a rotational direction. The spinner has fluid passageways that operatively connect a gaseous inlet environment to a gaseous outlet environment. A heating element is positioned adjacent to the spinner in a manner such that particles flung from the spinner can strike the heating element.

Claims (20)

1. A method of separating solid particles from gaseous matter, the method comprising:

rotating a spinner about a spinner axis in a rotational direction, the spinner having bound fluid passageways that operatively connect a gaseous inlet environment to a gaseous outlet environment, the fluid passageways circumferentially extending in a direction opposite the rotational direction as the fluid passageways extend radially inward, the gaseous inlet environment having a pressure, the gaseous outlet environment having a pressure;

forcing gaseous matter radially inward through the rotating spinner by creating pressure differential that is such that the pressure of the gaseous inlet environment exceeds the pressure of the gaseous fluid outlet;

gasifying combustible material within a gasifier, the spinner being located in the gasifier, the gasified combustible material being forced through the spinner by the pressure differential.

2. A method in accordance with claim 1 wherein the spinner is rotated at a minimum of 4000 revolutions per minute.

3. A method in accordance with claim 2 wherein the spinner is rotated at a minimum of 6000 revolutions per minute.

4. A method in accordance with claim 1 wherein the spinner comprises a plurality of vanes that extend in a direction opposite the rotational direction and that partially define the fluid passageways.

5. A method in accordance with claim 4 wherein the spinner comprises an internal cavity that is in fluid communication with each of the fluid passageways and that operatively connects the fluid passageways to the gaseous fluid outlet.

6. A method in accordance with claim 1 wherein the gaseous fluid outlet is partially defined by a volute.

7. A method in accordance with claim 1 wherein the gasifier comprises a heating element positioned adjacent the spinner and the method comprises generating heat within the heating element and causing solid particles to be flung from the spinner and thereafter strike the heating element.

8. A method in accordance with claim 7 wherein the spinner axis is tilted from vertical and the heating element is at least partially beneath the spinner.

9. An assembly comprising:

a spinner, the spinner configured and adapted to rotate about a spinner axis in a rotational direction, the spinner having fluid passageways that operatively connect a gaseous inlet environment to a gaseous outlet environment;

a heating element, the heating element being positioned in the inlet environment adjacent to the spinner in a manner such that particles flung from the spinner can strike the heating element.

10. An assembly in accordance with claim 9 wherein the fluid passageways of the spinner passageways circumferentially extend in a direction opposite the rotational direction as the fluid passageways extend radially inward.

11. An assembly in accordance with claim 9 wherein the heating element is adapted and configured to be heated to a temperature in excess of 800 degrees Fahrenheit (426° C.).

12. An assembly in accordance with claim 9 wherein the assembly comprises a gasifier, and the spinner and heating element are positioned within the gasifier.

13. An assembly in accordance with claim 12 wherein the assembly comprises a waterjet washer configured to spray high pressure water directly at the spinner.

14. An assembly in accordance with claim 9 wherein the spinner axis is tilted from vertical and the heating element is at least partially beneath the spinner.

15. An assembly in accordance with claim 9 wherein the heating element is arcuate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 16, 2018
From: INNER POINT ENERGY CORPORATION
To: TRUSTEES OF THE ALICE ANHEUSER BEIMS MOORE IRREVOCABLE TRUST 1 AND THE ALICE ANHEUSER BEIMS MOORE IRREVOCALBE TRUST 2 FBO GRANDCHILDREN
Reel/Frame 046581/0595 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2015
From: GARRETT, SCOTT; SCHLOTE, ANDREW
To: INNERPOINT ENERGY CORPORATION
Reel/Frame 035341/0927 →
Continuity (1)
Related Publication 20160206985A1 · Jul 21, 2016