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Titania-alumina aerogel materials for degradation of rhodamine B dye: Impact of particle size of titania.

机译:用于降解若丹明B染料的二氧化钛-氧化铝气凝胶材料:二氧化钛粒径的影响。

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摘要

Disposal of pollutants, mainly organic dyes from textile industries are the primary sources of water pollution in developing countries, and often leading to scarcity of clean water. These dyes can undergo further oxidation and form several toxic compounds, which possess threat to the water ecosystem. It is therefore necessary to remove these organics from effluents for a clean environment. Among the various methods, Advanced Oxidation Processes (AOPs) called heterogeneous photocatalysis is considered as an effective method for the removal of organics from water sources. In this regard, a set of titania-alumina (TiO2-Al2O3) mixed oxide materials were prepared by supercritical drying method and investigated towards the degradation of a model pollutant, rhodamine B (RhB). The physico-chemical properties of the synthesized materials were studied in detail using several techniques that include powder X-ray diffraction, nitrogen physisorption, diffuse reflectance spectroscopy, and X-ray photoelectron spectroscopy (XPS). The Electrospray ionization-Mass spectroscopic (ESI-MS) studies were also carried out to confirm the degradation of the RhB by identifying its intermediate products. The results indicate that the particle size of the photoactive species, titania, was the key factor for effective photocatalytic degradation of the RhB dye over the titania-alumina mixed oxide materials.
机译:污染物的处理,主要是纺织工业中的有机染料,是发展中国家水污染的主要来源,通常导致清洁水短缺。这些染料可能会进一步氧化并形成几种有毒化合物,对水生态系统构成威胁。因此,有必要从废水中去除这些有机物,以达到清洁的环境。在各种方法中,被称为多相光催化的高级氧化工艺(AOP)被认为是从水中去除有机物的有效方法。在这方面,通过超临界干燥方法制备了一组二氧化钛-氧化铝(TiO2-Al2O3)混合氧化物材料,并研究了其对模型污染物罗丹明B(RhB)的降解作用。使用包括粉末X射线衍射,氮物理吸附,漫反射光谱和X射线光电子能谱(XPS)在内的几种技术详细研究了合成材料的物理化学性质。还进行了电喷雾电离质谱分析(ESI-MS),以通过鉴定其中间产物来确认RhB的降解。结果表明,光活性物质二氧化钛的粒径是在二氧化钛-氧化铝混合氧化物材料上有效地催化RhB染料降解的关键因素。

著录项

  • 作者

    Shrestha, Sunav.;

  • 作者单位

    University of South Dakota.;

  • 授予单位 University of South Dakota.;
  • 学科 Nanotechnology.;Environmental studies.
  • 学位 M.S.
  • 年度 2016
  • 页码 89 p.
  • 总页数 89
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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