Department of Chemical and Biomolecular Engineering, University of California , Berkeley, California 94720, United States.
Langmuir. 2013 Dec 23;29(51):15936-42. doi: 10.1021/la403824g. Epub 2013 Dec 12.
The presence of H2O in postcombustion gas streams is an important technical issue for deploying CO2-selective adsorbents. Because of its permanent dipole, H2O can interact strongly with materials where the selectivity for CO2 is a consequence of its quadrupole interacting with charges in the material. We performed molecular simulations to model the adsorption of pure H2O and CO2 as well as H2O/CO2 mixtures in 13X, a popular zeolite for CO2 capture processes that is commercially available. The simulations show that H2O reduces the capacity of these materials for adsorbing CO2 by an order of magnitude and that at the partial pressures of H2O relevant for postcombustion capture, 13X will be essentially saturated with H2O .
在燃烧后气流中存在 H2O 是部署 CO2 选择性吸附剂的一个重要技术问题。由于其永久偶极矩,H2O 可以与材料强烈相互作用,其中 CO2 的选择性是由于其四极矩与材料中的电荷相互作用的结果。我们进行了分子模拟,以模拟在 13X 中纯 H2O 和 CO2 以及 H2O/CO2 混合物的吸附,13X 是一种用于 CO2 捕获过程的流行沸石,商业上可获得。模拟表明,H2O 将这些材料吸附 CO2 的能力降低了一个数量级,并且在与燃烧后捕获相关的 H2O 分压下,13X 将基本上被 H2O 饱和。