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TiO2 Nanosols Applied Directly on Textiles Using Different Purification Treatments

机译:TiO2纳米溶胶采用不同的净化处理工艺直接应用于纺织品

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摘要

Self-cleaning applications using TiO2 coatings on various supporting media have been attracting increasing interest in recent years. This work discusses the issue of self-cleaning textile production on an industrial scale. A method for producing self-cleaning textiles starting from a commercial colloidal nanosuspension (nanosol) of TiO2 is described. Three different treatments were developed for purifying and neutralizing the commercial TiO2 nanosol: washing by ultrafiltration; purifying with an anion exchange resin; and neutralizing in an aqueous solution of ammonium bicarbonate. The different purified TiO2 nanosols were characterized in terms of particle size distribution (using dynamic light scattering), electrical conductivity, and ζ potential (using electrophoretic light scattering). The TiO2-coated textiles’ functional properties were judged on their photodegradation of rhodamine B (RhB), used as a stain model. The photocatalytic performance of the differently treated TiO2-coated textiles was compared, revealing the advantages of purification with an anion exchange resin. The study demonstrated the feasibility of applying commercial TiO2 nanosol directly on textile surfaces, overcoming problems of existing methods that limit the industrial scalability of the process.
机译:近年来,在各种支撑介质上使用TiO2涂层的自清洁应用引起了越来越多的兴趣。这项工作讨论了工业规模的自清洁纺织品生产的问题。描述了一种从商业上的TiO2胶体纳米悬浮液(纳米溶胶)开始生产自清洁纺织品的方法。为纯化和中和市售的TiO2纳米溶胶,开发了三种不同的处理方法:超滤洗涤;水洗和过滤。用阴离子交换树脂纯化;并在碳酸氢铵水溶液中中和。根据粒径分布(使用动态光散射),电导率和ζ电位(使用电泳光散射)来表征不同的纯化TiO2纳米溶胶。 TiO2涂层纺织品的功能特性是通过将罗丹明B(RhB)用作光斑模型进行光降解来判断的。比较了不同处理的TiO2涂层纺织品的光催化性能,揭示了用阴离子交换树脂进行纯化的优势。这项研究证明了将商业化的TiO2纳米溶胶直接应用于纺织品表面的可行性,克服了限制该方法的工业可扩展性的现有方法的问题。

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