材料科学
硅酮
复合数
墨水池
聚合物
吸收(声学)
碳酸钠
溶剂
3d打印
复合材料
碳酸盐
水溶液
3D打印
化学工程
钠
化学
有机化学
生物医学工程
医学
冶金
工程类
作者
Du T. Nguyen,Maxwell Murialdo,Katherine Hornbostel,Simon H. Pang,Congwang Ye,William L. Smith,Sarah E. Baker,William L. Bourcier,Jennifer M. Knipe,Roger D. Aines,Joshuah K. Stolaroff
标识
DOI:10.1021/acs.iecr.9b04375
摘要
Here, we have developed polymer composite inks that may be three-dimensionally (3D) printed to produce new reactor designs for CO<sub>2</sub> capture. These inks are composed of solid sodium carbonate particles dispersed within an uncured silicone and are printed using direct ink writing (DIW). After printing, the silicone is cured, and the structures are hydrated to form aqueous sodium carbonate domains dispersed throughout the silicone. These domains enable high CO<sub>2</sub> absorption rates by creating domains with a high surface area of the solvent per unit volume in the printed structures. These results demonstrate an order-of-magnitude improvement in CO<sub>2</sub> absorption rates relative to a liquid pool of sodium carbonate. The results from this class of composite inks demonstrate the potential for the use of 3D printing to shape new and advanced CO<sub>2</sub> capture reactors.
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