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Activity of nanosized titania synthesized from thermal decomposition of titanium (IV) n-butoxide for the photocatalytic degradation of diuron

机译:钛(IV)正丁醇热分解合成的纳米二氧化钛对杜伦的光催化活性

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Nanoparticles of anatase titania were synthesized by the thermal decomposition of titanium (IV) n-butoxide in 1,4-butanediol. The powder obtained was characterized by various characterization techniques, such as XRD, BET, SEM and TEM, to confirm that it was a collection of single crystal anatase with particle size smaller than 15?nm. The synthesized titania was employed as catalyst for the photodegradation of diuron, a herbicide belonging to the phenylurea family, which has been considered as a biologically active pollutant in soil and water. Although diuron is chemically stable, degradation of diuron by photocatalyzed oxidation was found possible. The conversions achieved by titania prepared were in the range of 70–80% within 6?h of reaction, using standard UV lamps, while over 99% conversion was achieved under solar irradiation. The photocatalytic activity was compared with that of the Japanese Reference Catalyst (JRC-TIO-1) titania from the Catalysis Society of Japan. The synthesized titania exhibited higher rate and efficiency in diuron degradation than reference catalyst. The results from the investigations by controlling various reaction parameters, such as oxygen dissolved in the solution, diuron concentration, as well as light source, suggested that the enhanced photocatalytic activity was the result from higher crystallinity of the synthesized titania.
机译:通过在1,4-丁二醇中热分解正丁醇钛(IV)来合成锐钛矿型二氧化钛纳米颗粒。通过各种表征技术,如XRD,BET,SEM和TEM对所得粉末进行表征,以确认它是粒径小于15nm的单晶锐钛矿的集合体。合成的二氧化钛被用作光降解敌草隆的催化剂,敌草隆属于苯基脲家族的除草剂,已被视为土壤和水中的生物活性污染物。尽管杜隆在化学上是稳定的,但发现通过光催化氧化降解杜隆是可能的。使用标准的紫外线灯,在制备的二氧化钛的反应过程中,在6?h内实现的二氧化钛转化率在70-80%的范围内,而在太阳辐射下,转化率超过99%。将光催化活性与来自日本催化学会的日本参考催化剂(JRC-TIO-1)二氧化钛进行了比较。合成的二氧化钛比对比例催化剂显示出更高的二脲降解速率和效率。通过控制各种反应参数(例如溶液中溶解的氧气,敌草隆浓度以及光源)的研究结果表明,增强的光催化活性是合成二氧化钛结晶度更高的结果。

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