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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Bare, gold and silver nanoparticle decorated, monodisperse-porous titania microbeads for photocatalytic dye degradation in a newly constructed microfluidic, photocatalytic packed-bed reactor
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Bare, gold and silver nanoparticle decorated, monodisperse-porous titania microbeads for photocatalytic dye degradation in a newly constructed microfluidic, photocatalytic packed-bed reactor

机译:裸,金和银纳米粒子修饰的单分散多孔二氧化钛微珠,用于新型新建的微流态光催化填充床反应器中的光催化染料降解

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摘要

Monodisperse porous titania microbeads were synthesized by a sol-gel templating protocol. Gold nanoparticles (AuNPs) synthesized by Turkevich and Martin methods 16 and 5 nm in size, respectively and silver nanoparticles (AgNPs) 12 nm in size were decorated onto the primary amine attached titania microbeads. Both size and porous properties of bare or AuNP/AgNP decorated monodisperse-porous titania microbeads were suitable for using them as a photocatalyst in a "Microfluidic, Photocatalytic Packed Bed Reactor (MPPBR)" with reasonable pressure drops in the microflow rate range. Then, a MPPBR system for "continuous photocatalytic dye degradation" was first constructed by slurry packing of bare or AuNP/AgNP decorated titania microbeads into a fused silica capillary 320 mu m in diameter. The photocatalytic activities of bare and AuNP/AgNP decorated titania microbeads were determined in MPPBR using a textile dye, Remazol Black 5 (RB5). The complete removal of RB5 was achieved in continuous mode and an appreciable enhancement in the photoremoval rate of RB5 was observed with the MPPBR containing Martin AuNP decorated titania microbeads. The system constructed can be evaluated as a promising tool for both pre-column and post-column applications involving the removal of coloured contaminants in the assays conducted in micro-liquid chromatography systems. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过溶胶-凝胶模板协议合成了单分散多孔二氧化钛微珠。通过Turkevich和Martin方法合成的金纳米颗粒(AuNPs)分别为16和5 nm,银纳米颗粒(AgNPs)分别为16 nm和5 nm。裸露的或AuNP / AgNP修饰的单分散多孔二氧化钛微珠的尺寸和多孔性能均适合在“微流控,光催化填充床反应器(MPPBR)”中将其用作光催化剂,并且在微流速范围内具有合理的压降。然后,首先通过将裸露的或AuNP / AgNP装饰的二氧化钛微珠浆料填充到直径为320μm的熔融石英毛细管中,构建用于“连续光催化染料降解”的MPPBR系统。使用纺织染料Remazol Black 5(RB5)在MPPBR中测定裸露的光片和AuNP / AgNP修饰的二氧化钛微珠的光催化活性。 RB5的完全去除以连续模式实现,并且在含有Martin AuNP修饰的二氧化钛微珠的MPPBR中观察到RB5的光去除率有明显提高。可以将构建的系统评估为用于在微液相色谱系统中进行测定的柱前和柱后应用(包括去除有色污染物)的有前途的工具。 (C)2016 Elsevier B.V.保留所有权利。

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