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- W60393514 abstract "Publisher Summary This chapter describes the significant researches on a novel CO2 removal approach—ammonia scrubbing. The preliminary experimental results are very promising. Under optimum conditions, the removal efficiencies are stable in the range from 95% to 99%, after one minute or so. This indicates a high potential for scrubbing with a fast absorption rate while using ammonia. The crystalline solids in the solution were analyzed by X-ray diffraction. It was proved that ammonium bicarbonate was the main product of the CO2–NH3 reaction in this study. Interest in CO2 removal has increased rapidly, mainly because of the growing awareness of the risks of a climate change due to greenhouse gas emissions, because CO2 is the largest component of greenhouse gases being emitted to air. The importance of carbon sequestration is now gradually being addressed by world nations. There are various technologies used to separate CO2 from flue gas streams—for example, chemical absorption, physical absorption, cryogenic methods, membrane separation, and biological fixation. Chemical absorption is generally recognized as the most effective technology among all the technologies at present. Although the MEA process is a promising system for the recovery of CO2 from flue gases, it has some shortcomings, including slow absorption rate and small solvent capacity. A novel approach that may provide another route of reducing CO2 emissions from power plants is separation by ammonia scrubbing." @default.
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- W60393514 date "2003-01-01" @default.
- W60393514 modified "2023-10-15" @default.
- W60393514 title "Carbon Dioxide Recovery from Flue Gases By Ammonia Scrubbing" @default.
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- W60393514 doi "https://doi.org/10.1016/b978-008044276-1/50031-3" @default.
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