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- W2385790784 abstract "The cyclic calcination/carbonation reaction of calcium-based sorbents is an effective approach for capturing CO2 from coal combustion and gasification processes. It was proposed that limestone modified with acetic acid solution, i.e. calcium acetate, acts as a new CO2 sorbent to solve the problem about sharp decay of carbonation conversion for limestone with the number of cycles. The effects of carbonation temperature and calcination temperature on carbonation conversions for calcium acetate were experimentally investigated in a calcination/carbonation reactor. The results show that the carbonation conversion for calcium acetate achieves great value at the carbonation temperature range from 650 to 700 ℃ . The carbonation conversion for calcium acetate can reach 0.5 after 20 cycles which is much greater than that for limestone. Although calcium acetate is calcined at high calcination temperature (920-1050 ℃) and under high CO2 concentration atmosphere, it still achieves the great carbonation conversion. It indicates that the anti-sintering performance for calcium acetate is much better than that for limestone. Specific surface area and pore volume for calcined calcium acetate are higher than those for calcined limestone, as well as pore volume and pore area distributions for calcined calcium acetate are superior to those for calcined limestone after multiple cycles." @default.
- W2385790784 created "2016-06-24" @default.
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- W2385790784 date "2008-01-01" @default.
- W2385790784 modified "2023-09-26" @default.
- W2385790784 title "Cyclic Carbonation Characteristics of Calcium Acetate as a New CO_2 Sorbent" @default.
- W2385790784 hasPublicationYear "2008" @default.
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