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首页> 外文期刊>Water, Air, & Soil Pollution >Mesoporous SBA-15 Supported Iron Oxide: A Potent Catalyst for Hydrogen Sulfide Removal
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Mesoporous SBA-15 Supported Iron Oxide: A Potent Catalyst for Hydrogen Sulfide Removal

机译:介孔SBA-15负载的氧化铁:一种有效的脱硫化氢催化剂

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摘要

A novel silicate mesoporous material, SBA-15 supported Fe2O3, was synthesized by post-synthesis method via ultrasonic-assisted route. The desulfurization test from a gas mixture containing 0.1 vol% H2S was carried out over SBA-15 supported Fe2O3 in a fixed-bed system at atmospheric pressure and room temperature. The effects of the chemical nature of Fe2O3 and the textural properties of the material on desulfurization capacity were studied. Materials before and after the desulfurization test were characterized using nitrogen adsorption, XRD, TEM, FTIR, XPS, ICP and other standard methods. The characterization results suggest that modification process does not change the two-dimensional hexagonal mesostructure of SBA-15. Iron species disperses inside channels and the outside surface in the crystalline phase of iron oxide. The material with iron content of 31.3 wt% presented highest H2S uptake capacity. Structural properties of the material also play important roles in desulfurization performance besides the catalytic effects of iron oxide. The basic feature of material and enough oxygen supply are benefit for the reaction. SBA-15 supported Fe2O3 can be an effective alternative to capture H2S from gas streams.
机译:通过超声辅助后合成方法,合成了一种新型的SBA-15负载Fe 2 O 3 的硅酸盐介孔材料。在固定的SBA-15负载的Fe 2 O 3 上对含0.1%(体积)H 2 S的混合气体进行脱硫试验床系统在大气压和室温下。研究了Fe 2 O 3 的化学性质以及材料的组织性质对脱硫能力的影响。使用氮气吸附,XRD,TEM,FTIR,XPS,ICP和其他标准方法对脱硫试验前后的材料进行表征。表征结果表明,修饰过程不会改变SBA-15的二维六角形介观结构。铁物种在氧化铁的结晶相中分散在通道内部和外表面。铁含量为31.3 wt%的材料具有最高的H 2 S吸收能力。除氧化铁的催化作用外,该材料的结构性质在脱硫性能中也起着重要作用。材料的基本特征和充足的氧气供应对该反应有利。 SBA-15负载的Fe 2 O 3 可以有效地从气流中捕获H 2 S。

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