IP Library Granted Patent US 8,147,590
Granted Patent B2
US 8,147,590 · App. 12/270,282 · Granted Apr 3, 2012

Fluid filter separator and method

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Quick Facts
Patent No.
US 8,147,590
App. No.
12/270,282
Granted
Apr 3, 2012
Kind
B2
Abstract

A filter separator and method, including an annular microfilter and a separation chamber within the microfilter including a plurality of mixing blades circulating fluid upwardly and downward within the chamber. When the apparatus is used to purify syngas, adherent metal oxide particles are circulated in the chamber to adsorb waste oxides. The apparatus is purged by injecting hot CO 2 free gas into the chamber through the filter and the filter pores may be expanded during purging.

Claims (30)

1. A gas separator filter, comprising:

a gas inlet receiving gas and waste particulates;

an annular filtration chamber receiving gas and suspended waste particulates from said gas inlet;

an annular microfilter defining an inner wall of said annular filtration chamber filtering particulates from the gas;

a gas separation chamber located within said annular microfilter receiving filtered gas from said annular microfilter including fine gas adsorbent metal oxide particles and a plurality of radial mixing blades continuously circulating said fine adsorbent particles and filtered gas vertically upwardly and downwardly, said metal oxide particles adsorbing and removing waste gases from the filtered gas; and

a gas outlet removing filtered selected gas from said gas separation chamber.

2. The gas separator filter as defined in claim 1 , wherein said gas adsorbent metal oxide particles are calcium oxide particles adsorbing gaseous oxides of sulfur, nitrogen or carbon from the gas stream in said gas separation chamber.

3. The gas separator filter as defined in claim 1 , wherein said radial mixing blades each include a radial central portion, a first side portion adjacent a central axis of said gas separation chamber extending radially and circumferentially from said radial central portion at an obtuse angle to said radial central portion circulating gas upwardly adjacent said central axis and a second side portion extending from an opposite side of said central radial portion radially spaced from said first side portion adjacent a distal end of said central portion extending radially and circumferentially at an obtuse angle to said radial central portion circulating gas downwardly adjacent a distal end of said radial mixing blades.

4. The gas separator filter as defined in claim 1 , wherein said gas separator filter includes an air torch directing heated gas into said gas separation chamber.

5. The gas separator filter as defined in claim 1 , wherein said mixing blades are supported on a hollow shaft having radially ports and said gas separator filter includes an air torch directing heated gas through said hollow shaft into said gas separation chamber through said radial ports for desorbing gaseous oxides of nitrogen, sulfur or carbon adsorbed on said metal oxide particles in said gas separation chamber.

6. The gas separator filter as defined in claim 5 , wherein said air torch directs heated nitrogen gas through said hollow shaft.

7. The gas separator filter as defined in claim 1 , wherein said annular microfilter is a continuous flexible resilient helical coil having a regular sinusoidal shape in the direction of the helix including flat top and bottom surfaces having circumferentially spaced radial notches defining filter micropores.

8. The gas separator filter as defined in claim 7 , wherein said gas separator filter includes an actuator motor connected to said continuous flexible helical coil rotating at least one coil relative to a second coil into an outer registry to close loop-shaped filter pores between adjacent coils during filtering.

9. A gas separator filter apparatus for purifying syngas containing carbon monoxide, hydrogen, oxides of sulfur, nitrogen or carbon and suspended waste particulates, comprising:

a gas inlet receiving syngas, waste gas and particulates;

an annular filtration chamber receiving syngas, waste gas and particulates from said gas inlet;

an annular microfilter defining an inner wall of said annular filtration chamber filtering particulates from the gas;

a gas separation chamber located within said annular microfilter receiving filtered gas from said annular microfilter, said gas separation chamber including fine particles of an adsorbent metal oxide and a circulator circulating gas and fine particles of metallic oxide upwardly and downwardly within said gas separation chamber, wherein said particles of metal oxide adsorb gases containing sulfur and nitrogen compounds; and

a gas outlet removing filtered and purified syngas from said gas separation chamber.

10. The gas separator filter apparatus as defined in claim 9 , wherein said circulator includes radial mixing blades rotatably supported on a central axis of said gas separation chamber.

11. The gas separator filter apparatus as defined in claim 10 , wherein said radial mixing blades are supported on a central shaft, said radial mixing blades including a plurality of circumferentially spaced radial mixing blades on said central shaft each including a radial central portion extending generally perpendicular to an axis of said central shaft, a first side portion adjacent said central shaft extending radially and circumferentially at an obtuse angle from said radial central portion circulating gas upwardly adjacent said central shaft, and a second side portion extending from an opposite side of said central portion radially spaced from said first side portion adjacent a distal end of said radial mixing blades extending radially and circumferentially at an obtuse angle from said central portion circulating gas downwardly adjacent said distal end of said radial mixing blades.

12. The gas separator filter apparatus as defined in claim 9 , wherein said apparatus includes an air torch directing heated gas through said central shaft into said gas separation chamber, heating said particles of metallic oxide to the calcination temperature, desorbing gaseous oxides of sulfur, nitrogen or carbon dioxide from said fine particles of metal oxide.

13. The gas separator filter apparatus as defined in claim 9 , wherein said annular microfilter is a continuous flexible resilient helical coil having a regular sinusoidal shape in the direction of the helix having flat top and bottom surfaces having radial notches.

14. The gas separator filter apparatus as defined in claim 13 , wherein said gas separator filter apparatus includes an actuator motor connected to said continuous flexible helical coil rotating at least one of said coils relative to a second coil to rotate said one coil into an outer registry with said second coil.

15. A fluid separator filter, comprising:

a fluid inlet receiving fluid and waste particulates;

an annular filtration chamber receiving fluid and waste gas particulates from said fluid inlet;

an annular microfilter defining an inner wall of said annular filtration chamber filtering particulates from the fluid;

a fluid separation chamber located within said annular microfilter receiving filtered fluid from said annular microfilter including fine adsorbent particles and a plurality of radial mixing blades continuously circulating said fine adsorbent particles and filtered fluid vertically upwardly and downwardly, said adsorbent particles adsorbing and removing waste fluid from the filtered fluid; and

a fluid outlet removing filtered selected fluid from said fluid separation chamber.

Continuity (7)
Continuation In Part 12186421 · Aug 5, 2008
Continuation In Part 11942525 · Nov 19, 2007
Continuation In Part 11531986 · Sep 14, 2006
Division 10863798 · Jun 8, 2004
Division 09931510 · Aug 16, 2001
Provisional Application 60225895 · Aug 17, 2000
Related Publication 20090056542A1 · Mar 5, 2009