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使用TiO₂纳米管光催化剂悬浮液通过微波辅助快速完全降解莠去津

Microwave assisted rapid and complete degradation of atrazine using TiO(2) nanotube photocatalyst suspensions.

作者信息

Zhanqi Gao, Shaogui Yang, Na Ta, Cheng Sun

机构信息

State Key Laboratory of Pollution Control and Resources, School of the Environment, Nanjing University, Nanjing 210093, China.

出版信息

J Hazard Mater. 2007 Jul 16;145(3):424-30. doi: 10.1016/j.jhazmat.2006.11.042. Epub 2006 Nov 25.

Abstract

A technology, microwave-assisted photocatalysis on TiO(2) nanotubes, which can be applied to degrade atrazine rapidly and completely, was investigated. TiO(2) nanotubes were prepared, and confirmed by XRD, TEM and ESR. Microwave-assisted photocatalytic degradation of atrazine in aqueous solution was investigated. The result indicates that atrazine is completely degraded in 5min and the mineralization efficiency is 98.5% in 20min, which is obviously more efficient than that by the traditional photocatalytic degradation methods. It may be attributed to the intense UV radiation generated by electrodeless discharge lamps under microwave irradiation, the increased number of OH, additional defect sites on TiO(2) under the irradiation of microwave and larger specific surface area of TiO(2) nanotubes which could adsorb more organic substances to degrade than TiO(2) nanoparticles. Along with the degradation of atrazine, the concentrations of Cl(-) and NO(3)(-) increase gradually. In 20min [Cl(-)] and [NO(3)(-)] are 3, 27.8mg/L, respectively, which are close to their stoichiometric values. The major intermediates of atrazine were identified by HPLC/MS and possible degradation pathways of atrazine in microwave-assisted photocatalysis on TiO(2) nanotubes were proposed.

摘要

研究了一种可用于快速、完全降解阿特拉津的技术——TiO₂纳米管上的微波辅助光催化技术。制备了TiO₂纳米管,并通过XRD、TEM和ESR进行了表征。研究了微波辅助光催化降解水溶液中阿特拉津的情况。结果表明,阿特拉津在5分钟内完全降解,20分钟内矿化效率为98.5%,这明显比传统光催化降解方法更高效。这可能归因于微波辐照下无电极放电灯产生的强烈紫外线辐射、微波辐照下TiO₂表面OH数量增加、额外的缺陷位点以及TiO₂纳米管比TiO₂纳米颗粒具有更大的比表面积,能吸附更多有机物进行降解。随着阿特拉津的降解,Cl⁻和NO₃⁻的浓度逐渐增加。20分钟时[Cl⁻]和[NO₃⁻]分别为3、27.8mg/L,接近其化学计量值。通过HPLC/MS鉴定了阿特拉津的主要中间体,并提出了阿特拉津在TiO₂纳米管上微波辅助光催化降解的可能途径。

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