Hydrogen sulfide imaging system
Various embodiments disclosed herein describe an infrared (IR) imaging system for detecting a gas. The imaging system can include an optical filter that selectively passes light having a wavelength in a range of 1585 nm to 1595 nm while attenuating light at wavelengths above 1600 nm and below 1580 nm. The system can include an optical detector array sensitive to light having a wavelength of 1590 that is positioned rear of the optical filter.
1. An infrared (IR) imaging system for detecting methane (CH 4 ) gas, the IR imaging system comprising:
an optical detector array; and
an optical filter that selectively transfers light within a band of IR wavelengths to the optical detector array,
wherein, within the band of IR wavelengths, a convolution of the optical filter with an absorption spectrum of CH 4 gas is greater than a convolution of the optical filter with an absorption spectrum of hydrogen sulfide (H 2 S), carbon dioxide (CO 2 ), sulfur dioxide (SO 2 ), or water (H 2 O), wherein the convolution of the optical filter with the absorption spectrum of CH 4 gas is in a range of 50 to 10,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H 2 S).
2. The IR imaging system of claim 1 , wherein the convolution of the optical filter with the absorption spectrum of CH 4 gas is in a range of 100 to 5,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H 2 S).
3. The IR imaging system of claim 1 , wherein the convolution of the optical filter with the absorption spectrum of CH 4 gas is in a range of 500 to 5,000 times greater than the convolution of the optical filter with the absorption spectrum of hydrogen sulfide (H 2 S).
4. The IR imaging system of claim 1 , wherein the optical filter selectively passes light having a wavelength in a range of 1600 nm to 1700 nm while attenuating light at wavelengths above 1700 nm and below 1600 nm.
5. The IR imaging system of claim 4 , wherein the optical filter includes a plurality of filter components.
6. The IR imaging system of claim 5 , wherein the optical filter passes light by reflection.
7. The IR imaging system of claim 6 , wherein the optical filter passes light by transmission.
8. The IR imaging system of claim 7 further comprising processing electronics configured to detect CH 4 gas in a scene comprising a plurality of gases.
9. The IR imaging system of claim 8 , wherein the processing electronics is configured to determine a concentration of the detected CH 4 gas.
10. The IR imaging system of claim 7 further comprising imaging optics to form a spectral image on the optical detector array.
11. The IR imaging system of claim 10 , wherein the imaging optics comprises one or more lenses.