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Effect of steam on CaO regeneration, carbonation and hydration reactions for CO2 capture

机译:蒸汽对CaO再生,碳酸化和水合反应以捕获CO2的影响

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CaO sorbent is one of the most promising sorbents for CO2 capture. However, the reactivity of CaO sorbent decreased rapidly with carbonation-calcination cycles. Steam activation is a feasible approach to improve the sorbent reactivity. In this study, the effects of steam on CaCO3 calcination (CaO regeneration), CaO carbonation and CaO hydration were both investigated. Compared with pure CO2 calcination atmosphere, introducing steam into calcination atmosphere enhanced CaCO3 decomposition rate, which was because that (1) the partial pressure of CO2 decreased; (2) the absorption of H2O by active site CaO* weakened the binding ability between CO2 and CaO*; (3) the amount of heat-transfer between steam and CaCO3 was higher. Lower decomposition temperature in steam/CO2 calcination atmosphere resulted in lower sorbent sintering and higher sorbent reactivity. Besides, the carbonation reactivity of CaO sorbent was over doubled when steam was introduced into carbonation atmosphere, which was due to the formation of OH-. In CaO hydration reaction, sorbent particle pore structure was also developed by hydration treatment. The hydrated Ca(OH)(2) sorbent reactivity as well as cyclic reactivity of CaO sorbent was therefore enhanced. (C) 2016 Elsevier B.V. All rights reserved.
机译:CaO吸附剂是用于捕获CO2的最有希望的吸附剂之一。但是,CaO吸附剂的反应性随碳酸钙煅烧循环而迅速降低。蒸汽活化是提高吸附剂反应性的可行方法。在这项研究中,研究了蒸汽对CaCO3煅烧(CaO再生),CaO碳酸化和CaO水化的影响。与纯CO2煅烧气氛相比,将蒸汽引入煅烧气氛可以提高CaCO3的分解速率,这是因为(1)CO2的分压降低了; (2)活性位CaO *对H2O的吸收减弱了CO2与CaO *之间的结合能力; (3)蒸汽与CaCO3之间的传热量更高。蒸汽/ CO2煅烧气氛中较低的分解温度导致较低的吸附剂烧结和较高的吸附剂反应性。此外,当将蒸汽引入碳酸化气氛中时,CaO吸附剂的碳酸化反应活性增加了一倍以上,这是由于OH-的形成所致。在CaO水合反应中,还通过水合处理形成了吸附剂颗粒的孔结构。因此增强了水合的Ca(OH)(2)吸附剂的反应性以及CaO吸附剂的循环反应性。 (C)2016 Elsevier B.V.保留所有权利。

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