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Study on iron-based adsorbents for alternating removal of H2S and O-2 from natural gas and biogas

机译:从天然气和沼气中交替去除H2S和O-2的铁基吸附剂的研究

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This study deals with the development of iron oxide/hydroxide adsorbents for the alternating removal of H2S and O-2 from natural gas and biogas. The considered procedure initially implies the chemisorption of H2S. In the second step, O-2 is removed by reaction with the H2S-treated substrate accompanied by regeneration of the adsorbent. 35 different iron-based samples were physical-chemically characterized and tested towards H2S/O-2 break through behavior and adsorption capacity to evaluate structure-performance correlations. It was derived that high BET surface area, high proportion of meso and micro pores, small average pore diameter, low crystallinity and high number of Bronsted acid sites are crucial properties of the adsorbents. As a consequence, Fe (OH)(3) and alpha-FeOOH revealed highest efficiency for the successive adsorption of H2S and O-2, while alpha-Fe2O3 provided rather low performance.
机译:该研究涉及氧化铁/氢氧化物吸附剂的开发,用于从天然气和沼气中交替去除H2S和O-2。 所考虑的程序最初意味着H2S的化学吸附。 在第二步中,通过与吸附剂再生伴随的H 2 S处理的基材反应除去O-2。 35种基于铁基样品在物理化学表征和测试中,通过行为和吸附能力进行测定,以评估结构性能相关性。 它被衍生的是,高BET表面积,高比例的甲片和微孔,小的平均孔径,低结晶度和大量的支架位点是吸附剂的关键性质。 结果,Fe(OH)(3)和α-FeOh为连续吸附的H 2 S和O-2的最高效率,而alpha-Fe2O3提供了相当低的性能。

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