Department of Chemical and Biochemical Engineering, Western University, London, Ontario, Canada.
Environ Sci Technol. 2013 Aug 20;47(16):9372-80. doi: 10.1021/es401276r. Epub 2013 Aug 2.
It is essential to capture carbon dioxide from flue gas because it is considered one of the main causes of global warming. Several materials and different methods have been reported for CO2 capturing including adsorption onto zeolites and porous membranes, as well as absorption in amine solutions. All such methods require high energy input and high cost. A new class of porous materials called Metal Organic Frameworks (MOFs) exhibited excellent performance in extracting carbon dioxide from a gas mixture. In this study, the breakthrough curves for the adsorption of carbon dioxide on CPM-5 (crystalline porous materials) were obtained experimentally and theoretically using a laboratory-scale fixed-bed column at different experimental conditions such as feed flow rate, adsorption temperature, and feed concentration. It was found that the CPM-5 has a dynamic CO2 adsorption capacity of 11.9 wt % (2.7 mmol/g) (corresponding to 8 mL/min, 298 K, and 25% v/v CO2). The tested CPM-5 showed an outstanding adsorption equilibrium capacity (e.g., 2.3 mmol/g (10.2 wt %) at 298 K) compared to other adsorbents, which can be considered as an attractive adsorbent for separation of CO2 from flue gas.
从烟道气中捕获二氧化碳是至关重要的,因为它被认为是全球变暖的主要原因之一。已经有几种材料和不同的方法被报道用于 CO2 捕获,包括吸附在沸石和多孔膜上,以及在胺溶液中吸收。所有这些方法都需要高能量输入和高成本。一类称为金属有机骨架(MOFs)的新型多孔材料在从气体混合物中提取二氧化碳方面表现出优异的性能。在这项研究中,使用实验室规模的固定床柱在不同的实验条件下(如进料流速、吸附温度和进料浓度),通过实验和理论获得了在 CPM-5(结晶多孔材料)上吸附二氧化碳的穿透曲线。结果表明,CPM-5 具有 11.9wt%(2.7mmol/g)(对应于 8mL/min、298K 和 25%v/v CO2)的动态 CO2 吸附能力。与其他吸附剂相比,所测试的 CPM-5 表现出出色的吸附平衡能力(例如,在 298K 时为 2.3mmol/g(10.2wt%)),可被视为从烟道气中分离 CO2 的有吸引力的吸附剂。