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具有大表面积的多孔二氧化钛是用于回收含有超高浓度染料废水的高效催化剂载体。

Porous TiO with large surface area is an efficient catalyst carrier for the recovery of wastewater containing an ultrahigh concentration of dye.

作者信息

Zhou Yumeng, Zhang Lijing, Tao Shengyang

机构信息

Department of Chemistry, Dalian University of Technology Dalian Liaoning 116024 P. R. China

出版信息

RSC Adv. 2018 Jan 16;8(7):3433-3442. doi: 10.1039/c7ra11985b.

Abstract

The preparation of porous TiO as a carrier for the Fenton reaction is reported. Porous TiO is an excellent carrier to load with elemental iron due to the large specific surface area and negative surface charge. Porous TiO was synthesized in the form of a hierarchically porous silica monolith that was used as a microreactor, and a block copolymer served as a template for mesoporous forms. The crystalline TiO growing in confined spaces maintained the porous structure and high crystallinity. The surface area of our synthesized porous TiO can reach 205 m g. The zeta potential of the TiO was as low as -36.5 mV (pH 7). Elemental iron was highly and uniformly dispersed over the channel of the porous TiO an impregnation method and served as the catalyst for the Fenton reaction. In the Fenton reaction, the synthesized catalyst performed strong catalytic activity during the degradation of wastewater containing an ultrahigh concentration of aqueous dye, at 400 ppm. The aqueous dye solution was degraded over 95% in 30 min, and the catalyst could be reused many times.

摘要

报道了作为芬顿反应载体的多孔TiO的制备。由于大比表面积和表面负电荷,多孔TiO是负载元素铁的优良载体。多孔TiO以用作微反应器的分级多孔二氧化硅整体材料的形式合成,并且嵌段共聚物用作介孔形式的模板。在受限空间中生长的结晶TiO保持了多孔结构和高结晶度。我们合成的多孔TiO的表面积可达205 m²/g。TiO的ζ电位低至-36.5 mV(pH 7)。元素铁通过浸渍法高度均匀地分散在多孔TiO的通道上,并用作芬顿反应的催化剂。在芬顿反应中,合成的催化剂在降解含400 ppm超高浓度水性染料的废水过程中表现出很强的催化活性。水性染料溶液在30分钟内降解超过95%,并且催化剂可以重复使用多次。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c278/9077684/ada9b34f73cd/c7ra11985b-s1.jpg

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