Advanced Ceramics, University of Bremen , Am Biologischen Garten 2, 28359 Bremen, Germany.
Institute of Fluid Mechanics, Dresden University of Technology , George-Bähr-Straße 3, 01062 Dresden, Germany.
ACS Appl Mater Interfaces. 2016 Feb 10;8(5):3277-86. doi: 10.1021/acsami.5b11120. Epub 2016 Jan 26.
Porous adsorbents with hierarchical structured macropores ranging from 1 to 100 μm are prepared using a combination of freeze casting and additional sacrificial templating of polyurethane foams, with a zeolite 13X powder serving as adsorbent. The pore system of the prepared monoliths features micropores assigned to the zeolite 13X particle framework, interparticular pores of ∼1-2 μm, lamellar pores derived from freeze casting of ∼10 μm, and an interconnected pore network obtained from the sacrificial templates ranging from around 100 to 200 μm with a total porosity of 71%. Gas permeation measurements show an increase in intrinsic permeability by a factor of 14 for monoliths prepared with an additional sacrificial templated foam compared to monoliths solely providing freeze casting pores. Cyclic CO2 adsorption and desorption tests where pressure swings between 8 and 140 kPa reveal constant working capacities over multiple cycles. Furthermore, the monoliths feature a high volumetric working capacity of ∼1.34 mmol/cm(3) which is competitive to packed beds made of commercially available zeolite 13X beads (∼1.28 mmol/cm(3)). Combined with the faster CO2 uptake showing an adsorption of 50% within 5-8 s (beads ∼10 s), the monoliths show great potential for pressure swing adsorption applications, where high volumetric working capacities, fast uptakes, and low pressure drops are needed for a high system performance.
采用冷冻铸造和聚氨酯泡沫的额外牺牲模板化相结合的方法制备具有 1 至 100 μm 大孔的分级结构多孔吸附剂,沸石 13X 粉末作为吸附剂。所制备的整体式的孔系统具有分配给沸石 13X 颗粒骨架的微孔、约 1-2 μm 的颗粒间孔、约 10 μm 的冷冻铸造衍生的层状孔、以及由牺牲模板获得的从约 100 至 200 μm 范围的相互连接的孔网络,总孔隙率为 71%。气体渗透测量表明,与仅提供冷冻铸造孔的整体式相比,具有额外牺牲模板化泡沫的整体式的本征渗透率增加了 14 倍。在 8 和 140 kPa 之间进行压力循环的 CO2 吸附和解吸测试显示出多个循环中恒定的工作容量。此外,该整体式具有约 1.34 mmol/cm3 的高体积工作容量,与市售沸石 13X 珠(约 1.28 mmol/cm3)制成的填充床相当。与在 5-8 s 内(珠子约 10 s)显示出 50%的吸附作用的更快的 CO2 吸收相结合,该整体式在压力波动吸附应用中具有很大的潜力,其中高体积工作容量、快速吸收和低压力降对于高系统性能是必需的。