吸附
化学
氧化物
烟气脱硫
电子转移
铜
化学工程
氧化还原
碳纤维
电导率
反应性(心理学)
无机化学
活性炭
氧化铜
材料科学
物理化学
复合数
复合材料
有机化学
工程类
医学
替代医学
病理
作者
Chao Yang,Zhilong Liu,Zhelin Su,Yeshuang Wang,Feng Yu,Jinhong Luo,Meisheng Liang,Huiling Fan,Teresa J. Bandosz
标识
DOI:10.1016/j.jcis.2024.01.216
摘要
Adsorbents with dual-component active phases have attracted much attention owing to their potential application in synergistic H2S removal. The influence of spatial arrangements of two components within a support matrix on their desulfurization performance was investigated through regulating the mutual arrangements of CuO and MgO on an activated carbon surface. Their spatial locations were found to remarkably affect interfacial interactions, local pH, the conductivity of adsorbents, and electronic structure of copper oxide. A close contact of CuO with the carbon surface led to strong interactions of both components, inhibiting the reduction of CuO and decreasing its reactivity with H2S. On the other hand, a proximity of MgO to the carbon surface increased local pH, promoting the oxidation of H2S into elemental S, instead of sulfates. Cu+ in the copper oxide phase increased the desulfurization performance due to its ability to activate oxygen and to accelerate a lattice diffusion. Enhanced surface conductivity due to the interfacial interactions improved the desulfurization efficiency and favored the formation of elemental S through promoting an electron transfer in redox reactions.
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