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改性 TiO₂ 纳米管-沸石复合光催化剂:特性、微观结构及其在降解三氯卡班中的应用。

Modified TiO₂ nanotubes-zeolite composite photocatalyst: Characteristics, microstructure and applicability for degrading triclocarban.

机构信息

Micropollutant Research Centre (MPRC), Faculty of Civil Engineering and Built Environment, Universiti Tun Hussein Onn Malaysia (UTHM), 86400, Parit Raja, Batu Pahat, Johor, Malaysia.

Micropollutant Research Centre (MPRC), Faculty of Civil Engineering and Built Environment, Universiti Tun Hussein Onn Malaysia (UTHM), 86400, Parit Raja, Batu Pahat, Johor, Malaysia.

出版信息

Chemosphere. 2022 Jan;287(Pt 3):132278. doi: 10.1016/j.chemosphere.2021.132278. Epub 2021 Sep 18.

Abstract

The study explored the characteristics and effectiveness of modified TiO nanotubes with zeolite as a composite photocatalyst (MTNZC) for the degradation of triclocarban (TCC) from the aqueous solution. MTNZC samples have been produced via electrochemical anodisation (ECA) followed by electrophoretic deposition (EPD). Three independent factors selected include MTNZC size (0.5-1 cm), pH (3-10), and irradiation time (10-60 min). The observation revealed that the surface of Ti substrate by the 40 V of anodisation and 3 h of calcination was covered with the array ordered, smooth and optimum elongated nanotubes with average tube length was approximately 5.1 μm. EDS analysis proved the presence of Si, Mg, Al, and Na on MTNZC due to the chemical composition present in the zeolite. The average crystallite size of TiO₂ nanotubes increased from 2.07 to 3.95 nm by increasing anodisation voltage (10, 40, and 60 V) followed by 450 °C of calcination for 1, 3, and 6 h, respectively. The optimisation by RSM shows the F-value (36.12), the p-value of all responses were less than 0.0001, and the 95% confidence level of the model by all the responses indicated the model was significant. The R in the range of 0.9433-0.9906 showed the suitability of the model to represent the actual relationship among the parameters. The photocatalytic degradation rate of TCC from the first and the fifth cycles were 94.2 and 77.4%, indicating the applicability of MTNZC to be used for several cycles.

摘要

该研究探索了沸石复合光催化剂(MTNZC)修饰 TiO 纳米管的特性和有效性,用于降解水溶液中的三氯卡班(TCC)。MTNZC 样品通过电化学阳极氧化(ECA)和电泳沉积(EPD)制备。选择了三个独立的因素,包括 MTNZC 尺寸(0.5-1 cm)、pH(3-10)和辐照时间(10-60 min)。观察结果表明,经过 40 V 的阳极氧化和 3 h 的煅烧,Ti 基底表面覆盖着排列有序、光滑且最佳伸长的纳米管,平均管长约为 5.1 μm。EDS 分析证明由于沸石中的化学成分,MTNZC 中存在 Si、Mg、Al 和 Na。通过增加阳极氧化电压(10、40 和 60 V),并分别在 450°C 下煅烧 1、3 和 6 h,TiO2 纳米管的平均晶粒尺寸从 2.07 增加到 3.95 nm。通过 RSM 进行优化,F 值(36.12)、所有响应的 p 值均小于 0.0001,95%置信水平下所有响应的模型表明模型具有显著性。R 在 0.9433-0.9906 之间,表明该模型适合表示参数之间的实际关系。TCC 的光催化降解率在第一和第五个循环中分别为 94.2%和 77.4%,表明 MTNZC 适用于多个循环。

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