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Zeolite encapsulated active metal composites and their photocatalytic studies for rhodamine-B, reactive red-198 and chloro-phenols

机译:沸石包裹的活性金属复合物及其对罗丹明B,活性红198和氯酚的光催化研究

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摘要

Niobium (Nb), tantalum (Ta) and palladium (Pd) were impregnated in the cavities of a zeolite by the ion exchange method. The impregnation and composites stability were investigated by FTIR, DRS/UV-visible, XRD, XPS, BET, N-2 adsorption isotherms, AAS, FESEM/EDX, TEM, TGA and particle size. The composites denoted as PdY, NbPdY and TaPdY were used as visible light driven photocatalysts in the degradation of Rhodamine-B (RhB), reactive red-198 (RR), 2-chloro phenol (2CP) and 4-chloro phenol (4CP) under visible light irradiation. The composites catalytic ability was determined by UV-visible absorption spectral analysis. The TaPdY, and NbPdY exhibit superior degradation kinetics when compared to that of PdY and NaY, due to the presence of refractory metals such as Nb(V) and Ta(V) in the zeolite cavities. The percentage of degradation and rate of reaction is more for NbPdY and TaPdY. The photo oxidation reaction follows pseudo-first order reaction kinetics and this might be due to the fixed concentration of the reactants, photocatalysts and reaction medium. The NbPdY and TaPdY catalysts are recoverable and reusable for up to five cycles of repeated usage. The recovered and reusable catalyst shows comparable activity with that of the fresh catalyst.
机译:通过离子交换法将铌(Nb),钽(Ta)和钯(Pd)浸渍在沸石的空腔中。通过FTIR,DRS / UV可见光,XRD,XPS,BET,N-2吸附等温线,AAS,FESEM / EDX,TEM,TGA和粒度研究了浸渍和复合材料的稳定性。标记为PdY,NbPdY和TaPdY的复合材料在罗丹明B(RhB),反应性红198(RR),2-氯苯酚(2CP)和4-氯苯酚(4CP)的降解中用作可见光驱动的光催化剂。在可见光照射下。通过UV-可见吸收光谱分析确定复合材料的催化能力。与PdY和NaY相比,TaPdY和NbPdY表现出优异的降解动力学,这是由于沸石型腔中存在难熔金属(例如Nb(V)和Ta(V))所致。 NbPdY和TaPdY的降解百分比和反应速率更高。光氧化反应遵循拟一级反应动力学,这可能是由于反应物,光催化剂和反应介质的浓度固定所致。 NbPdY和TaPdY催化剂可回收和重复使用多达五个循环。回收和可重复使用的催化剂显示出与新鲜催化剂相当的活性。

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