首页> 外文期刊>International Journal of Photoenergy >A Comparative Evaluation of TiO2Suspension Coating Techniques: A Novel Technique to Achieve Optimal Thickness and Uniformity of Photocatalytic Film
【24h】

A Comparative Evaluation of TiO2Suspension Coating Techniques: A Novel Technique to Achieve Optimal Thickness and Uniformity of Photocatalytic Film

机译:TiO2悬浮涂层技术的比较评估:一种实现光催化膜最佳厚度和均匀性的新技术

获取原文
           

摘要

The most important parameters affecting the efficiency of catalysts for the oxidation of the surrounding materials are considered to be the thickness and uniformity of the catalyst layer. The present method for the determination of thickness used in most studies is the analysis of cross-sectional pictures from SEM imaging. This method, however, has several restrictions. This study proposes a feasible and simple method for evaluating the optimal thickness and uniformity using UVA light transmitted through the samples. Three techniques for catalyst deposition have been investigated in this study using UVA light transmitted through the samples and by measuring the photocatalytic activity. These methods include lowering, dip coating, and spraying, which showed coefficients of variation for the coated catalyst weight of 28.4%, 13.6%, and 3.24%, respectively. The samples from the lowering, dip coating, and spraying techniques showed UVA transmissions of 95.02%, 68.8%, and 15.6%, respectively. The spraying technique displayed the lowest values for both. The estimated removal efficiencies (%RE/mg·cm−2) for lowering, dip coating, and spraying were 18.42, 16.84, and 24.15, respectively. Using these analyses it was determined that the spraying technique yielded the best photocatalytic oxidation performance of the three techniques studied.
机译:影响催化剂对周围材料氧化的效率的最重要的参数被认为是催化剂层的厚度和均匀性。用于大多数研究的确定厚度的当前方法是对SEM成像的横截面图片进行分析。但是,此方法有几个限制。这项研究提出了一种可行且简单的方法,可使用透过样品的UVA光评估最佳厚度和均匀性。在这项研究中,已经研究了三种使用沉积在样品中的UVA光并通过测量光催化活性来沉积催化剂的技术。这些方法包括降低,浸涂和喷涂,这对于涂覆的催化剂重量分别显示出28.4%,13.6%和3.24%的变化系数。降低,浸涂和喷涂技术的样品显示UVA透射率分别为95.02%,68.8%和15.6%。喷涂技术显示了两者的最低值。降低,浸涂和喷涂的估计去除效率(%RE / mg·cm-2)分别为18.42、16.84和24.15。使用这些分析,可以确定喷涂技术产生了所研究的三种技术中最佳的光催化氧化性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号