Building emission processing and/or sequestration systems and methods
Systems and/or methods are provided for the capture of carbon dioxide from flue gas generated within a building.
1. A method for separating carbon dioxide from flue gas generated from a natural gas combustion boiler within a commercial or residential building having multiple units, the method comprising:
within the commercial or residential building, and upon demand for hot water or heat by at least one unit occupant, using a natural gas combustion boiler to generate flue gas from the combustion of air and natural gas, wherein the commercial or residential building includes a cooling tower;
using the natural gas combustion boiler to generate hot water and/or steam for use by commercial or residential building heating systems to provide the hot water or heat to the at least one unit;
cooling the flue gas using cooling water from the cooling tower to reduce the water in the flue gas to less than 3% water and provide cooled flue gas;
providing at least a portion of the cooled flue gas to a desiccant dryer assembly to lower the water content of the flue gas to less than 10 ppm;
after providing the cooled flue gas to the desiccant dryer assembly, providing the less than 10 ppm water flue gas to a pressure swing adsorption assembly and removing at least some of the nitrogen from the less than 10 ppm water flue gas to produce greater than about 95% carbon dioxide using the pressure swing adsorption assembly; and
using the nitrogen removed from the flue gas by the pressure swing adsorption assembly to remove water and regenerate spent desiccant of the desiccant dryer assembly.
2. The method of claim 1 further comprising providing the nitrogen removed from the flue gas by the pressure swing adsorption assembly to an exhaust stack of the commercial or residential building after being used to remove water and regenerate spent desiccant.
3. The method of claim 1 further comprising separating the nitrogen removed from the flue gas by the pressure swing adsorption assembly into parts and providing one part to the dryer and another part to an expander/generator.
4. The method of claim 3 wherein the one part is about a third of the nitrogen from the pressure swing adsorption assembly.
5. The method of claim 3 further comprising generating electricity using the expander/generator.
6. The method of claim 5 further comprising after using the nitrogen in the expander/generator, providing the nitrogen to an exhaust stack of the building.
7. The method of claim 1 wherein the cooling water is provided to a condensing heat exchanger.
8. The method of claim 7 further comprising compressing the cooled flue gas to form compressed flue gas having a water content of less than 3%.
9. The method of claim 8 wherein the desiccant dryer assembly comprises at least two chambers and the method further comprises using the nitrogen to remove water and regenerate desiccant in one chamber while another chamber receives the compressed flue gas.
10. The method of claim 1 further comprising providing another portion of the flue gas to an exhaust stack of the commercial or residential building.
11. The method of claim 1 further comprising removing tramp air from an exhaust of the natural gas combustion boiler before providing the portion of flue gas to the desiccant dryer assembly.