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普鲁士蓝类似物在 CO(2) 和 SO(2)捕获和分离应用中的研究进展。

Prussian blue analogues for CO(2) and SO(2) capture and separation applications.

机构信息

Energy and Environment Directorate, Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

Inorg Chem. 2010 Jun 7;49(11):4909-15. doi: 10.1021/ic902397w.

Abstract

Adsorption isotherms of pure gases present in flue gas including CO(2), N(2), SO(2), NO, H(2)S, and water were studied using prussian blues of chemical formula M(3)Co(CN)(6).nH(2)O (M = Co, Zn) using an HPVA-100 volumetric gas analyzer and other spectroscopic methods. All the samples were characterized, and the microporous nature of the samples was studied using the BET isotherm. These materials adsorbed 8-10 wt % of CO(2) at room temperature and 1 bar of pressure with heats of adsorption ranging from 200 to 300 Btu/lb of CO(2), which is lower than monoethanolamine (750 Btu/lb of CO(2)) at the same mass loading. At high pressures (30 bar and 298 K), these materials adsorbed approximately 20-30 wt % of CO(2), which corresponds to 3 to 5 molecules of CO(2) per formula unit. Similar gas adsorption isotherms for SO(2), H(2)S, and NO were collected using a specially constructed volumetric gas analyzer. At close to 1 bar of equilibrium pressure, these materials sorb around 2.5, 2.7, and 1.2 mmol/g of SO(2), H(2)S, and NO. In particular, the uptake of SO(2) and H(2)S in Co(3)Co(CN)(6) is quite significant since it sorbs around 10 and 4.5 wt % at 0.1 bar of pressure. The stability of prussian blues before and after trace gases was studied using a powder X-ray diffraction instrument, which confirms these materials do not decompose after exposure to trace gases.

摘要

采用化学式为 M(3)Co(CN)(6).nH(2)O(M=Co、Zn)的普鲁士蓝研究了烟道气中纯气体(包括 CO(2)、N(2)、SO(2)、NO、H(2)S 和水)的吸附等温线。使用 HPVA-100 容量气体分析仪和其他光谱方法对所有样品进行了表征,并使用 BET 等温线研究了样品的微孔性质。这些材料在室温下和 1 巴的压力下吸附了 8-10wt%的 CO(2),吸附热在 200 到 300Btu/lb CO(2)之间,在相同的质量负载下低于单乙醇胺(750Btu/lb CO(2))。在高压(30 巴和 298K)下,这些材料吸附了大约 20-30wt%的 CO(2),相当于每个分子式单元吸附了 3 到 5 个 CO(2)分子。使用专门设计的容量气体分析仪收集了 SO(2)、H(2)S 和 NO 的类似气体吸附等温线。在接近 1 巴的平衡压力下,这些材料吸附了约 2.5、2.7 和 1.2mmol/g 的 SO(2)、H(2)S 和 NO。特别是,Co(3)Co(CN)(6)对 SO(2)和 H(2)S 的吸收量非常显著,因为它在 0.1 巴的压力下吸收了约 10 和 4.5wt%。采用粉末 X 射线衍射仪研究了痕量气体前后普鲁士蓝的稳定性,证实这些材料在暴露于痕量气体后不会分解。

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