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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Sulfur removal from municipal gas using magnesium oxides and a magnesium oxide/silicon dioxide composite
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Sulfur removal from municipal gas using magnesium oxides and a magnesium oxide/silicon dioxide composite

机译:使用氧化镁和氧化镁/二氧化硅复合材料去除城市煤气中的硫

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摘要

Magnesium oxides (MgOs) were synthesized by polyol-meditation thermolysis, hydrothermal, and aerogel methods and utilized to remove sulfur compounds from municipal gas. The capacity to remove methyl mercaptan (291 mu mol/mol) from methane was evaluated by using an adsorption breakthrough method at different temperatures. Then, to improve the sulfur removal capacity, a MgO-SiO2 composite was developed using the aerogel method and its breakthrough capacity was compared to those of the MgOs. The synthesized MgOs and MgO-SiO2 composite were characterized by XRD, BET, TGA, and HR-TEM. The MgO prepared by the aerogel method had the highest surface area and sorptioh capacity among the as-synthesized MgOs. Furthermore, the sulfur sorption capacity of the MgO-SiO2 composite prepared by the same aerogel method as MgO was three times higher than the aerogel MgO even though the sorption capacity of SiO2 was negligible. (C) 2014 Elsevier Inc. All rights reserved.
机译:氧化镁(MgOs)是通过多元醇热解,水热和气凝胶法合成的,并用于去除市政燃气中的硫化合物。通过在不同温度下使用吸附突破方法,评估了从甲烷中除去甲硫醇(291μmol/ mol)的能力。然后,为了提高脱硫能力,使用气凝胶法开发了MgO-SiO2复合材料,并将其穿透能力与MgOs的穿透能力进行了比较。用XRD,BET,TGA和HR-TEM对合成的MgOs和MgO-SiO2复合材料进行了表征。通过气凝胶法制备的MgO在合成的MgO中具有最高的表面积和吸附容量。此外,即使SiO 2的吸附能力可以忽略,通过与MgO相同的气凝胶法制备的MgO-SiO 2复合材料的硫吸附能力也比气凝胶MgO高三倍。 (C)2014 Elsevier Inc.保留所有权利。

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