离子液体
材料科学
化学工程
连续流动
流量(数学)
化学
有机化学
机械
工程类
物理
催化作用
作者
Raquel V. Barrulas,Cristopher Tinajero,Diogo P.N. Ferreira,Carlos Illanes-Bordomás,Víctor Sans,M.M.L. Ribeiro Carrott,Carlos A. García‐González,Marcileia Zanatta,Marta C. Corvo
标识
DOI:10.1016/j.jcou.2024.102771
摘要
The atmospheric concentration of CO2 is rising at an alarming pace, creating a pressing need for new and sustainable materials capable of capture and conversion. Poly(ionic liquid)s (PILs) are particularly effective catalysts for processes at or near atmospheric pressure. PILs industrial application poses challenges due to the low porosity of PIL, the limited batch conversion capacity, and the difficulties in reuse. To overcome these limitations, we herein propose the use of AEROPILs catalysts obtained from the integration of PILs in chitosan-based aerogels. These cost-effective highly porous materials have unique and tuneable porous properties making them not only ideal sustainable CO2 sorbents but also promising heterogeneous catalysts. While AEROPILs show moderate yields for CO2 conversion in batch mode, high catalytic activity was achieved when AEROPILs were used to catalyse the CO2 cycloaddition reaction to epoxides in packed-bed reactors operated under continuous flow. The catalytic activity and stability were maintained over 60 h without activity loss, and high productivity (space-time yield of 21.18 gprod h−1 L−1). This research reveals the pioneering use of AEROPILs to efficiently upcycle CO2 into cyclic carbonate under a continuous flow setup.
科研通智能强力驱动
Strongly Powered by AbleSci AI