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用于从水中去除药物化合物的陶瓷载体负载的PdO/CuO TiO₂光催化膜的性能评估

Performance evaluation of PdO/ CuO TiO2 photocatalytic membrane on ceramic support for removing pharmaceutical compounds from water.

作者信息

Ghaderi Samaneh, Lahafchi Roxana Taleb, Jamshidi Sona

机构信息

Department of Chemical Engineering, Tabriz Branch, Islamic Azad University, Tabriz, Iran.

出版信息

J Environ Health Sci Eng. 2023 Jun 8;21(2):389-401. doi: 10.1007/s40201-023-00866-x. eCollection 2023 Dec.

Abstract

This study investigated photocatalytic degradation of pharmaceutical compound using CuO or PdO-TiO membrane. The synthesized membranes were characterized by some techniques including X-ray powder diffraction (XRD), dynamic light scattering (DLS), scanning electron microscopy (SEM), and Fourier-transform infrared spectroscopy (FT-IR). The structural properties confirmed that the photocatalytic membranes were successfully prepared on ceramic supports. The PdO-TiO and CuO-TiO membranes were employed as photocatalytic membranes to degrade metronidazole (MNZ) and diphenhydramine (DPH) in aqueous solutions, respectively. Some parameters affecting the photocatalytic reaction such as pH, initial concentration, and light source were also investigated. The maximum degradation for both pharmaceutical compounds was obtained at basic pH (pH = 10), low initial concentration (C = 10 ppm) under UV irradiation. At high transmembrane pressure (ΔP = 3 bar), the flow rate across the membrane increased up 0.0078 and 0.0082 cc/s.cm for CuO-TiO and PdO-TiO photocatalytic membrane respectively while not affected on degradation efficiency (DE). At the same condition operation (C = 10 ppm, pH = 10, ΔP = 2 bar under UV irradiation), the MNZ and DPH degradation of the PdO-TiO membrane was 94 and 95% respectively that relatively higher than the CuO-TiO membrane. It is probably due to the lower energy band gap of PdO-TiO (2.5 eV) than CuO-TiO (2.7 eV). The membrane stability tests confirmed the high performance of the prepared membranes.

摘要

本研究考察了使用CuO或PdO-TiO膜对药物化合物的光催化降解。通过包括X射线粉末衍射(XRD)、动态光散射(DLS)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)在内的一些技术对合成的膜进行了表征。结构特性证实光催化膜已成功制备在陶瓷载体上。分别使用PdO-TiO和CuO-TiO膜作为光催化膜来降解水溶液中的甲硝唑(MNZ)和苯海拉明(DPH)。还研究了一些影响光催化反应的参数,如pH值、初始浓度和光源。在碱性pH值(pH = 10)、低初始浓度(C = 10 ppm)和紫外线照射下,两种药物化合物均获得了最大降解率。在高跨膜压力(ΔP = 3 bar)下,CuO-TiO和PdO-TiO光催化膜的膜通量分别增加到0.0078和0.0082 cc/s·cm,而对降解效率(DE)没有影响。在相同的操作条件下(C = 10 ppm,pH = 10,紫外线照射下ΔP = 2 bar),PdO-TiO膜对MNZ和DPH的降解率分别为94%和95%,相对高于CuO-TiO膜。这可能是由于PdO-TiO(2.5 eV)的能带隙低于CuO-TiO(2.7 eV)。膜稳定性测试证实了所制备膜的高性能。

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