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国家重点基础研究发展计划(2011CB201301)

作品数:2 被引量:5H指数:1
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Adsorptive removal of nitrogen-containing compounds from fuel by metal-organic frameworks被引量:4
2013年
The adsorptive denitrogenation from fuels over three metal-organic frameworks(MIL-96(Al),MIL-53(Al)and MIL-101(Cr))was studied by batch adsorption experiments.Four nitrogen-containing compounds(NCCs)pyridine,pyrrole,quinoline and indole were used as model NCCs in fuels to study the adsorption mechanism.The physicochemical properties of the adsorbents were characterized by XRD,N2physical adsorption,FT-IR spectrum and Hammett indicator method.The metal-organic frameworks(MOFs),especially the MIL-101(Cr)containing Lewis acid sites as well as high specific surface area,can adsorb large quantities of NCCs from fuels.In addition,the adsorptive capacity over MIL-101(Cr)will be different for NCCs with different basicity.The stronger basicity of the NCC is,the more it can be absorbed over MIL-101(Cr).Furthermore,pore size and shape also affect the adsorption capacity for a given adsorbate,which can be proved by the adsorption over MIL-53(Al)and MIL-96(Al).The pseudo-second-order kinetic model and Langmuir equation can be used to describe kinetics and thermodynamics of the adsorption process,respectively.Finally,the regeneration of the used adsorbent has been conducted successfully by just washing it with ethanol.
Zhaoyang WangZhiguo SunLinghao KongGang Li
关键词:METAL-ORGANICCOMPOUNDADSORPTIVEKINETICSTHERMODYNAMICS
气溶胶辅助合成介微孔TS-1/KIT-1分子筛催化氧化环己烯
<正>国内外大量的工作致力于合成多级孔道复合分子筛材料,希望此类材料能够结合微孔分子筛和介孔分子筛各自的优势[1,2],在大分子催化反应中展示良好的催化反应性能。气溶胶辅助法将预晶化的TS-1前体分散于介孔合成体系,通过...
郭振东熊光
关键词:TS-1气溶胶
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Co(II)-salen complex encapsulated into MIL-100(Cr) for electrocatalytic reduction of oxygen被引量:1
2014年
Co(II)-salen was encapsulated in MIL-100(Cr) metal organic framework by "ship in a bottle" to synthesize a new electrocatalyst, Cosalen@MIL-100(Cr). The material was characterized by XRD, FT-IR, UV-Vis and N2-adsorption. The Cosalen@MIL-100(Cr) modified glassy carbon electrode exhibits a well-defined reduction peak at the potential of –0.21 V toward the oxygen reduction reaction(ORR) by cyclic voltammetry(CV) in pH = 6.84 phosphate buffer. Almost 400 mV positive shift of potential at Cosalen@MIL-100(Cr) modified electrode for ORR compared with that at bare glassy carbon, indicates that Cosalen@MIL-100(Cr) possesses excellent electrocatalytic activity. The transferred number of electrons for ORR was determined by chronocoulometry. The result suggests that the introduction of Co(II)-salen complex into MOF increases the electrocatalytic activity via a four-electron reduction pathway. Furthermore, this electrocatalyst exhibits good stability and reproducibility.
Panpan MiaoGang LiGuoquan ZhangHong Lu
关键词:电催化还原电催化活性玻碳电极磷酸盐缓冲液
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