Department of Chemistry, Renmin University of China , Beijing 100872, China.
ACS Appl Mater Interfaces. 2017 Oct 4;9(39):34497-34505. doi: 10.1021/acsami.7b11315. Epub 2017 Sep 22.
Solid materials for CO capture and storage have attracted enormous attention for gaseous separation, environmental protection, and climate governance. However, their preparation and recovery meet the problems of high energy and financial cost. Herein, a controllable CO capture and storage process is accomplished in an emulsion-templated polymer foam, in which CO is breathed-in under dark and breathed-out under light illumination. Such a process is likely to become a relay of natural CO capture by plants that on the contrary breathe out CO at night. Recyclable CO capture at room temperature and release under light irradiation guarantee its convenient and cost-effective regeneration in industry. Furthermore, CO mixed with CH is successfully separated through this reversible breathing in and out system, which offers great promise for CO enrichment and practical methane purification.
用于 CO 捕获和储存的固态材料在气体分离、环境保护和气候治理方面引起了极大的关注。然而,它们的制备和回收面临着高能源和经济成本的问题。在此,通过乳液模板聚合物泡沫实现了可控的 CO 捕获和储存过程,其中 CO 在黑暗中被吸入,在光照下被呼出。这个过程可能成为植物自然 CO 捕获的接力,而植物在夜间则呼出 CO。在室温下可回收的 CO 捕获和在光照下的释放保证了其在工业中的方便和经济有效的再生。此外,通过这种可逆的呼吸进出系统成功地分离了 CO 与 CH,为 CO 富集和实际甲烷纯化提供了广阔的前景。