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Nanoporous metal-organic framework (MOF-199): Synthesis, characterization and photocatalytic degradation of Basic Blue 41

机译:纳米孔金属 - 有机框架(MOF-199):碱性蓝色41的合成,表征和光催化降解

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Herein, metal-organic framework (MOF-199) as a nanoporous material was synthesized and characterized using FESEM, EDS, FTIR, XRD, BET and TGA. Basic Blue 41 was used for investigating the photocatalytic activity of MOF-199. The SEM image showed that a nanoporous MOF was synthesized. The effect of catalyst dosage, initial pollutant concentration and pH on decolorization was studied. Contaminant degradation increases by increasing catalyst dose and decreases by initial dye concentration. Decolorization rate decreases by decreasing the pH of solution due to the electrostatic repletion of the cationic dye from the surface of MOF-199. The UV Vis spectra of dye solution during pollutant degradation by MOF-199 showed that the dye absorbance in visible region of spectrum diminished because of the azo band destruction. The data indicated that the synthesized nanoporous metal-organic framework-199 could be used as a photocatalyst for decolorizing wastewater.
机译:这里,使用FESEM,EDS,FTIR,XRD,BET和TGA合成并表征作为纳米多孔材料的金属 - 有机框架(MOF-199)。 基本的蓝色41用于研究MOF-199的光催化活性。 SEM图像显示纳米多孔MOF被合成。 研究了催化剂剂量,初始污染物浓度和pH对脱色的影响。 通过增加催化剂剂量增加污染物降解增加并通过初始染料浓度降低。 由于阳离子染料从MOF-199的表面静电地,通过降低溶液的pH来降低脱色速率。 MOF-199污染物降解期间染料溶液的UV Vis光谱显示,由于偶氮带破坏,光谱的可见区域中的染料吸光度降低。 数据表明,合成的纳米多孔金属 - 有机框架-99可用作脱色废水的光催化剂。

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