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贵金属掺杂 TiO 薄膜对媒介黄橙 1 的高效去除:降解过程的见解。

Noble metal-doped TiO thin films in the efficient removal of Mordant Orange-1: insights of degradation process.

机构信息

Department of Chemistry, School of Physical Sciences, Mizoram University, Aizawl, 796004, India.

Department of Chemistry, Pachhunga University College, Mizoram University, Aizawl, 796001, India.

出版信息

Environ Sci Pollut Res Int. 2022 Jul;29(34):51732-51743. doi: 10.1007/s11356-021-17568-2. Epub 2022 Mar 5.

Abstract

Nanocomposite Ag(NPs)/TiO is synthesised in a facile template method enabling nanoparticles of reduced Ag evenly distributed within the titania network. The morphological studies of nanocomposites were extensively performed employing SEM/EDX (scanning electron microscopy/energy dispersive X-ray), TEM (transmission electron microscopy) and AFM (atomic force microscopy). Moreover, the bandgap energies of materials were obtained using the diffuse reflectance spectrometer (DRS). The newer insights in the photocatalytic elimination of Mordant Orange-1 (MO1) was obtained using the nanocomposite thin film for various parametric studies utilising the UV-A and LED illuminations. The kinetics of degradation of MO1 was performed, and the rate constant was favoured at lower concentrations of MO1. Moreover, the elimination efficiency of MO1 was favoured with a decrease in solution pH. The NPOC results inferred that a fairly good extent of MO1 was mineralised using a thin-film catalyst for both the UV-A and LED illuminations. The minimal effect of several co-ions demonstrated the applicability of thin films in the elimination of MO1, and the stability of the thin film has shown the potential applicability of thin-film catalysts. Further, the mechanism of photocatalytic degradation was demonstrated with the radical scavenger studies and ascertained the reaction pathways.

摘要

纳米复合 Ag(NPs)/TiO 通过简便的模板法合成,使还原 Ag 的纳米颗粒均匀分布在 TiO2 网络中。采用 SEM/EDX(扫描电子显微镜/能量色散 X 射线)、TEM(透射电子显微镜)和 AFM(原子力显微镜)对纳米复合材料进行了广泛的形态研究。此外,还使用漫反射分光光度计(DRS)获得了材料的能带隙能量。利用纳米复合薄膜进行了各种参数研究,利用 UV-A 和 LED 照明,获得了新型光催化消除媒染橙 1(MO1)的见解。进行了 MO1 的降解动力学研究,并且在 MO1 的较低浓度下有利于获得更高的速率常数。此外,随着溶液 pH 值的降低,MO1 的消除效率也得到了提高。NPOC 结果表明,使用薄膜催化剂在 UV-A 和 LED 照明下对 MO1 进行了相当程度的矿化。几种共存离子的最小影响表明薄膜在 MO1 的消除中的适用性,并且薄膜的稳定性表明了薄膜催化剂的潜在适用性。此外,通过自由基清除剂研究证明了光催化降解的机制,并确定了反应途径。

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