IP Library Granted Patent US 8,467,977
Granted Patent B2
US 8,467,977 · App. 12/845,871 · Granted Jun 18, 2013

Fiber optic carbon dioxide purity sensor package and system

Inventors: Hua Xia (Altamont, NY); Anthony James George (Clifton Park, NY); Renato Guida (Wynantskill, NY); James Daniel Antalek (Valatie, NY); James Thomas Clark (Clifton Park, NY); Jeffrey James Andritz (Altamont, NY); Michael James Palleschi (Clifton Park, NY); Dennis Anthony Pasquarella (Schenectady, NY); Aniceto Domingo Bantug, IV (Clifton Park, NY)
Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,467,977
App. No.
12/845,871
Granted
Jun 18, 2013
Kind
B2
Abstract

A carbon dioxide (CO2) purity sensor package includes a fiber core, a periodic refractive index modulated fiber grating structure within the fiber core and a fiber cladding. A thermally conductive sensing layer is positioned about a portion of the fiber cladding surrounding the periodic refractive index modulated fiber grating structure. A gas chamber encloses the fiber cladding with the thermally conductive sensing layer.

Claims (20)

1. A carbon dioxide (CO2) purity sensor package, comprising:

a fiber core;

a fiber cladding;

a periodic refractive index modulated fiber grating structure within the fiber core;

a thermally conductive sensing layer positioned about a portion of the fiber cladding surrounding the periodic refractive index modulated fiber grating structure, wherein the thermally conductive sensing layer comprises a nanostructural thin film; and

a gas chamber enclosing the fiber cladding with the thermally conductive sensing layer.

2. The CO2 purity sensor package of claim 1 further comprising an apodized fiber grating for sensing a baseline temperature and variations in the baseline temperature.

3. The CO2 purity sensor package of claim 1 , wherein the periodic refractive index modulated fiber grating structure comprises one of a blazed profile, an apodized profile, or a blazed and apodized profile.

4. The CO2 purity sensor package of claim 1 , wherein the fiber core comprises germanium dioxide (GeO2) or fluorine (F) co-doped silica.

5. The CO2 purity sensor package of claim 4 , wherein the fiber cladding comprises pure silica or fluorine doped silica.

6. The CO2 purity sensor package of claim 1 , wherein the gas chamber is hermetically sealed and comprises a fiberglass protected thermal stabilizer for shielding the sensor package from ambient temperature variation and keeping the sensor package in an isotheiinal status.

7. The CO2 purity sensor package of claim 6 , wherein the thermal stabilizer comprises a heating tape, a heating pad, or a heating wire.

8. The CO2 purity sensor package of claim 1 , wherein a thermal conductivity of the thermally conductive material ranges from about 71 W/m.K to about 429 W/m.K.

9. The CO2 purity sensor package of claim 8 , wherein the thermally conductive material comprises aluminum, copper, nickel, cobalt, silver, gold, palladium or platinum.

10. The CO2 purity sensor package of claim 8 , wherein the thermally conductive material comprises diamond, diamond-like-carbon, or Indium tin oxides with controlled porous structure or nanoparticle morphology.

11. The CO2 purity sensor package of claim 1 , wherein the thickness of the thermally conductive sensing layer ranges from tens of nanometers to hundreds of nanometers.

12. The CO2 purity sensor package of claim 1 , wherein the thermally conductive sensing layer comprises a sandwiched triple layer structure comprising a first layer of a titanium or a chrome based bonding material, a middle layer of the thermally conductive material, and a bottom layer comprising a capping layer for protecting the thermally conductive material against oxidization, corrosion, and erosion.

13. The CO2 purity sensor package of claim 1 , wherein the periodic refractive index modulated fiber grating structure comprises a plurality of fiber Bragg grating structures and the thermally conductive sensing layer comprises a plurality of thermally conductive sensing layers positioned with respect to respective periodic refractive index modulated fiber Bragg grating structures, wherein at least some of the thermally conductive sensing layers are functionalized for measuring CO2 purity in different types of blended gases.

14. The CO2 purity sensor package of claim 1 , further comprising a valve for controlling a flow of a blended gas, and a lateral gas inlet and a lateral gas outlet for inducing zigzag gas flow path.

15. The CO2 purity sensor package of claim 14 , further comprising a flow meter for measuring the flow of the blended gas.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2010
From: XIA, HUA; GEORGE, ANTHONY JAMES; GUIDA, RENATO; ANTALEK, JAMES DANIEL; CLARK, JAMES THOMAS; ANDRITZ, JEFFREY JAMES; PALLESCHI, MICHAEL JAMES; PASQUARELLA, DENNIS ANTHONY; BANTUG, ANICETO DOMINGO, IV
To: GENERAL ELECTRIC COMPANY
Reel/Frame 024758/0850 →
Continuity (1)
Related Publication 20120029835A1 · Feb 2, 2012