ION - Modular Adaptive Packing (MAP) Technology
ION’s patent-pending Modular Adaptive Packing™ (MAP) technology is a revolutionary new approach to one of the most expensive aspects of CO2 capture: gas/liquid contacting devices. ION has leveraged the power of 3D printing to create optimal gas/liquid contacting devices that have been successfully benchmark tested against the best commercially available optimized packing designs. 3D printing gives ION’s engineers the ability to completely reimagine the structure and design of G/L contacting devices to optimize cooling, mass transfer, liquid hold-up, and pressure drop. The use of ION’s MAP in the capture process results in significant cost reductions in both capital and operational expenditures.
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Production
Production
Fuel for the power plant is burned in the boiler. Steam from the fuel drives the turbines that power the facility. CO2 is emitted during the production process and released into the environment if there is no carbon capture process in place.
Absorption
Flue gas rich with CO2 is directed into an absorption tower. ION’s Advanced Liquid Absorbent contacts the CO2-heavy flue gas and absorbs the CO2. Flue gas, now free of CO2, is returned to the stack and safely and cleanly released into the atmosphere.
Regeneration
The ION absorbent, now loaded with CO2 (“rich solvent”) is directed to the regeneration section of the process. The Liquid Absorbent is then heated, which strips our the CO2. The captured CO2 is then sent to be compressed and transported for utilization in a variety of industries or for permanent sequestration.
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