硫化氢
活性炭
吸附
硫化物
化学
碳纤维
无机化学
氢
化学工程
核化学
材料科学
硫黄
物理化学
有机化学
复合数
复合材料
工程类
作者
Jun Wan,Meng Liu,Wenxi Ding,Yufeng Duan
标识
DOI:10.1021/acs.iecr.4c03112
摘要
It is necessary to remove trace amounts of hydrogen sulfide (H 2 S) to a low degree at low temperatures; otherwise, it will lead to an increase in industrial desulfurization difficulty. Nano–Cu–Ce oxide-modified activated carbon adsorbents with different active components are synthesized by the sol–gel method and ball milling method. The adsorption properties of the materials are tested by the fixed-bed adsorbent evaluation system. The results show that 15%CuCe 0.75 O x /activated carbon (CAC-15) has the best adsorption performance for H 2 S, reaching 103.58 mg/g in an O 2 -free ambience under 40 °C. The composite had high adsorption capacity for H 2 S, and its adsorption property decreases with the increase of space velocity and H 2 S concentration and fluctuates with the increase of temperature. At 60 °C, the maximum absorption capacity is 155.59 mg/g. The desulphurization process includes active adsorption and catalytic oxidation, and the adsorption capacity is determined by the chemical property and surface structure of the active component. The adsorbent has a highly mesoporous structure, which was highly dependent on the loading of the Cu–Ce–O active component. The results of chemical characterization show that sulfur was the main adsorption product, and strong alkaline sites play a major role. The mechanism of H 2 S adsorption by the adsorbent is described. This study provides new insights into the Cu/Ce-doped activated carbon adsorbent and the reactive adsorption of H 2 S.
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