烟气脱硫
烟气
金属有机骨架
吸附
材料科学
化学工程
金属
废物管理
有机化学
化学
冶金
工程类
作者
Philipp Brandt,Alexander Nuhnen,Marcus Lange,Jens Möllmer,Oliver Weingart,Christoph Janiak
标识
DOI:10.1021/acsami.9b00029
摘要
Sulfur dioxide (SO 2 ) is an acidic and toxic gas and its emission from utilizing energy from fossil fuels or in industrial processes harms human health and environment. Therefore, it is of great interest to find new materials for SO 2 sorption to improve classic flue gas desulfurization. In this work, we present SO 2 sorption studies for the three different metal–organic frameworks MOF-177, NH 2 -MIL-125(Ti), and MIL-160. MOF-177 revealed a new record high SO 2 uptake (25.7 mmol·g –1 at 293 K and 1 bar). Both NH 2 -MIL-125(Ti) and MIL-160 show particular high SO 2 uptakes at low pressures ( p < 0.01 bar) and thus are interesting candidates for the removal of remaining SO 2 traces below 500 ppm from flue gas mixtures. The aluminum furandicarboxylate MOF MIL-160 is the most promising material, especially under application-orientated conditions, and features excellent ideal adsorbed solution theory selectivities (124–128 at 293 K, 1 bar; 79–95 at 353 K, 1 bar) and breakthrough performance with high onset time, combined with high stability under both humid and dry SO 2 exposure. The outstanding sorption capability of MIL-160 could be explained by DFT simulation calculations and matching heat of adsorption for the binding sites O furan ···S SO2 and OH Al-chain ···O SO2 (both ∼40 kJ·mol –1 ) and O furan/carboxylate ···S SO2 (∼55–60 kJ·mol –1 ).
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