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用于二氧化碳捕集的包裹液体吸附剂。

Encapsulated liquid sorbents for carbon dioxide capture.

机构信息

1] Lawrence Livermore National Laboratory, Livermore, California 94551, USA [2] Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

Lawrence Livermore National Laboratory, Livermore, California 94551, USA.

出版信息

Nat Commun. 2015 Feb 5;6:6124. doi: 10.1038/ncomms7124.

Abstract

Drawbacks of current carbon dioxide capture methods include corrosivity, evaporative losses and fouling. Separating the capture solvent from infrastructure and effluent gases via microencapsulation provides possible solutions to these issues. Here we report carbon capture materials that may enable low-cost and energy-efficient capture of carbon dioxide from flue gas. Polymer microcapsules composed of liquid carbonate cores and highly permeable silicone shells are produced by microfluidic assembly. This motif couples the capacity and selectivity of liquid sorbents with high surface area to facilitate rapid and controlled carbon dioxide uptake and release over repeated cycles. While mass transport across the capsule shell is slightly lower relative to neat liquid sorbents, the surface area enhancement gained via encapsulation provides an order-of-magnitude increase in carbon dioxide absorption rates for a given sorbent mass. The microcapsules are stable under typical industrial operating conditions and may be used in supported packing and fluidized beds for large-scale carbon capture.

摘要

目前二氧化碳捕获方法的缺点包括腐蚀性、蒸发损失和结垢。通过微胶囊化将捕获溶剂与基础设施和流出气体分离为可能的解决方案。在这里,我们报告了可能实现从烟道气中低成本和节能捕获二氧化碳的碳捕获材料。由液体碳酸盐核和高渗透性硅酮壳组成的聚合物微胶囊是通过微流体制备的。这种图案将液体吸收剂的容量和选择性与高表面积结合在一起,以促进在反复循环中快速和受控的二氧化碳吸收和释放。虽然相对于纯液体吸收剂,胶囊壳内的质量传输略低,但通过封装获得的表面积增强提供了给定吸收剂质量的二氧化碳吸收速率的数量级增加。微胶囊在典型的工业操作条件下稳定,并且可用于支持包装和流化床以进行大规模碳捕获。

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