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Investigation of High-Temperature Steam Hydration of Naturally Derived Calcium Oxide for Improved Carbon Dioxide Capture Capacity over Multiple Cycles

机译:多循环中加强二氧化碳捕获能力改善二氧化碳氧化钙高温蒸汽水合的研究

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The CaO—CaCO3 cycle offers a promising high-temperature CO2 capture technology, but the decay in CO2 absorption capacity of CaO over multiple cycles poses a challenge that needs to be overcome to make it an economically feasible process. Of the various methods suggested, intermediate hydration of CaO seems to be the most promising. Low-temperature hydration is known to produce a highly reactive sorbent; however, this will be detrimental for integration: in the high-temperature process. Hence, high-temperature steam hydration is proposed, and the effect of such hydration has been investigated on CaO obtained from commercially available precursors. In this work, the hydration was performed at 500 °C in. a fixed-bed reactor and thermogravimetry and Brunauer—Emmett—Teller (BET) techniques were used for sorbent analyses and characterization. Multiple cycles of carbonation—calcination—hydration were performed, and the reduction in the CO2 capture capacity was observed to be negligible.
机译:CAO-Caco3循环提供了一个有前途的高温CO2捕获技术,但CAO在多个周期上的CAO吸收能力的衰减构成了需要克服的挑战,以使其成为经济上可行的过程。在各种方法中表明,Cao的中间水合似乎是最有前途的。已知低温保湿物生产高反应性的吸附剂;然而,这将是有害的集成:在高温过程中。因此,提出了高温蒸汽水化,并在从市售前体获得的CAO上研究了这种水合的效果。在这项工作中,水合在500℃下进行。固定床反应器和热升降机和Brunauer-emmett-extrer(Bet)技术用于吸附剂分析和表征。进行多个碳酸化煅烧水合水合,并且观察到CO 2捕获能力的降低可忽略不计。

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