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Phase Transfer-Catalyzed Fast CO2Absorption by MgO-Based Absorbents with High Cycling Capacity

Authors :
Yuhua Duan
Weizhen Li
Liyu Li
Keling Zhang
Prabhakar Singh
David L. King
Aashish Rohatgi
Xiaohong Shari Li
Source :
Advanced Materials Interfaces. 1:1400030
Publication Year :
2014
Publisher :
Wiley, 2014.

Abstract

CO2 capture from pre-combustion syngas in the temperature range of 250-400°C is highly desirable from an energy efficiency perspective. Thermodynamically, MgO is a promising material for CO2 capture, but the gas-solid reaction to produce MgCO3 is kinetically slow due to high lattice energy. We report here fast CO2 absorption over a solid MgO-molten nitrate/nitrite aggregate through phase transfer catalysis, in which the molten phase serves as both a catalyst and reaction medium. Reaction with CO2 at the gas-solid-liquid triple phase boundary results in formation of MgCO3 with significant reaction rate and a high conversion of MgO. This methodology is also applicable to other alkaline earth oxides, inspiring the design of absorbents which require activation of the bulk material.

Details

ISSN :
21967350
Volume :
1
Database :
OpenAIRE
Journal :
Advanced Materials Interfaces
Accession number :
edsair.doi...........b8b9d20962d71aa30e9f4cc1d8583b93