Lawrence Livermore National Laboratory, Livermore, CA, USA.
Faraday Discuss. 2016 Oct 20;192:271-281. doi: 10.1039/c6fd00049e.
Purpose-designed, water-lean solvents have been developed to improve the energy efficiency of CO capture from power plants, including CO-binding organic liquids (COBOLs) and ionic liquids (ILs). Many of these solvents are highly viscous or change phases, posing challenges for conventional process equipment. Such problems can be overcome by encapsulation. Micro-Encapsulated CO Sorbents (MECS) consist of a CO-absorbing solvent or slurry encased in spherical, CO-permeable polymer shells. The resulting capsules have diameters in the range of 100-600 μm, greatly increasing the surface area and CO absorption rate of the encapsulated solvent. Encapsulating these new solvents requires careful selection of shell materials and fabrication techniques. We find several common classes of polymers are not compatible with MECS production, but we develop two custom formulations, a silicone and an acrylate, that show promise for encapsulating water-lean solvents. We make the first demonstration of an encapsulated IL for CO capture. The rate of CO absorption is enhanced by a factor of 3.5 compared to a liquid film, a value that can be improved by further development of shell materials and fabrication techniques.
目的设计的、低水溶剂已经被开发出来,以提高从电厂捕获 CO 的能源效率,包括 CO 结合有机液体(COBOLs)和离子液体(ILs)。这些溶剂中的许多具有很高的粘性或相变,给传统的工艺设备带来挑战。这些问题可以通过封装来克服。微封装 CO 吸收剂(MECS)由 CO 吸收溶剂或浆液封装在球形 CO 渗透聚合物壳中组成。得到的胶囊直径在 100-600μm 范围内,大大增加了封装溶剂的表面积和 CO 吸收率。封装这些新型溶剂需要仔细选择壳材料和制造技术。我们发现几种常见的聚合物与 MECS 生产不兼容,但我们开发了两种定制配方,一种是硅酮,另一种是丙烯酸酯,它们在封装低水溶剂方面显示出了希望。我们首次展示了用于 CO 捕获的封装离子液体。与液膜相比,CO 吸收速率提高了 3.5 倍,通过进一步开发壳材料和制造技术,这个值可以进一步提高。