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PWA@MOF 的合成及其 吸附、氧化 - 吸附噻 吩硫性能研究

PWA@MOF 的合成及其 吸附、氧化 - 吸附噻 吩硫性能研究. 报告人:张艳飞 指导教师:贾绍义 教授 报告日期: 2012/11/30. 工作进展. 材料合成: MIL-101(Fe/Cr) 、 PWA@ MIL-101(Fe/Cr) 、 PWA/ MIL-101(Fe/Cr) 吸附实验: A MIL-101(Fe/Cr) B PWA@ MIL-101(Fe/Cr). 工作进展. 吸附试验条件: MF:500ppmS (3ml) 材料: 45mg, 15mg/mlMF 反应温度: 19℃ 反应时间: 3.5-8h. 工作进展. 工作进展.

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PWA@MOF 的合成及其 吸附、氧化 - 吸附噻 吩硫性能研究

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  1. PWA@MOF的合成及其吸附、氧化-吸附噻吩硫性能研究PWA@MOF的合成及其吸附、氧化-吸附噻吩硫性能研究 报告人:张艳飞 指导教师:贾绍义 教授 报告日期:2012/11/30

  2. 工作进展 材料合成: MIL-101(Fe/Cr)、PWA@ MIL-101(Fe/Cr)、PWA/ MIL-101(Fe/Cr) 吸附实验: A MIL-101(Fe/Cr) B PWA@ MIL-101(Fe/Cr)

  3. 工作进展 吸附试验条件: MF:500ppmS (3ml) 材料:45mg, 15mg/mlMF 反应温度:19℃ 反应时间:3.5-8h

  4. 工作进展

  5. 工作进展 Figure 1 effect of contact time

  6. 工作进展 figure2 adsorption isotherms for dibenzothiophene (black stand for MIL-101(Cr) and red for MIL-101(Fe))

  7. 实验计划 • 合成PWA/MIL-101(Fe/Cr) • PWA@MIL-101(Fe/Cr)和PWA/MIL-101(Fe/Cr)吸附动力学实验 • 选择吸附效果最优材料(两种) 改变吸附温度 引入甲苯类芳香族化合物

  8. 请批评指正!

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