2013Energy ProcediaOpen access

Study on potential biphasic solvents: Absorption capacity, CO2 loading and reaction rate

Zhicheng Xu, Wang Shujuan, Bo Zhao, Chen Changhe

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Abstract

For its high potential in reducing energy penalty of power plant, the biphasic absorption system for CO 2 capture has attracted more and more attentions. Only few solvents, however, are reported to be suitable for this system. Meanwhile, as the previous researchers have pointed out, besides CO 2 loading and reaction rate, absorption capacity should also be considered when we evaluate new solvents. In this paper, therefore, 12 potential single or mixed amine solutions for biphasic system are studied by comparing their maximum CO 2 loading, absorption capacity, and the reaction rate. The results could be useful in the biphasic CO 2 capture system in the future.

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What this paper is about

For its high potential in reducing energy penalty of power plant, the biphasic absorption system for CO 2 capture has attracted more and more attentions. Only few solvents, however, are reported to be suitable for this system. Meanwhile, as the previous researchers have pointed out, besides CO 2 loading and reaction rate, absorption capacity should also be considered when we evaluate new solvents. In this paper, therefore, 12 potential single or mixed amine solutions for biphasic system are studied by comparing their maximum CO 2 loading, absorption capacity, and the reaction rate. The results could be useful in the biphasic CO 2 capture system in the future.

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Available abstract

For its high potential in reducing energy penalty of power plant, the biphasic absorption system for CO 2 capture has attracted more and more attentions. Only few solvents, however, are reported to be suitable for this system. Meanwhile, as the previous researchers have pointed out, besides CO 2 loading and reaction rate, absorption capacity should also be considered when we evaluate new solvents. In this paper, therefore, 12 potential single or mixed amine solutions for biphasic system are studied by comparing their maximum CO 2 loading, absorption capacity, and the reaction rate. The results could be useful in the biphasic CO 2 capture system in the future.

Key concepts: Absorption capacity, Absorption (acoustics), Absorption rate, Amine gas treating, Reaction rate, Chemistry, Chemical engineering, Materials science

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