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Ag 修饰的 g-CN 在紫外光照射下,在 EDTA 的存在下,对六价铬的光催化还原具有增强的活性。

Ag-modified g-CN with enhanced activity for the photocatalytic reduction of hexavalent chromium in the presence of EDTA under ultraviolet irradiation.

机构信息

Department of Chemistry for Materials, Graduate School of Engineering, Mie University, Mie, Japan.

Global Environment Center for Education & Research, Mie University, Mie, Japan.

出版信息

Environ Technol. 2023 Sep;44(23):3627-3640. doi: 10.1080/09593330.2022.2068379. Epub 2022 Apr 29.

Abstract

The photocatalytic reduction of Cr to Cr in an aqueous solution, using 3 wt% Ag/g-CN in the presence of ethylenediaminetetraacetic acid (EDTA), has been investigated here. The photocatalytic reduction of Cr with pure g-CN was very low. The addition of Ag and EDTA can significantly improve the photocatalytic reduction of Cr using g-CN. In the presence of EDTA, the efficiency with Ag/g-CN was better than those with Au/g-CN and Cu/g-CN. With EDTA, the reduction rate constant increased from 0.0005 for pure g-CN to 0.12 min for 3 wt% Ag/g-CN. By increasing the concentration of EDTA from 0 to 500 mg L, the reduction efficiency of Cr increased extremely, and the rate constant raised from 0.008 to 0.12 min. The optimal EDTA concentration was 500 mg L for the photocatalyst Ag/g-CN. The Ag-EDTA complex may be reduced to metallic silver by the conduction band electrons of g-CN. The electron-hole recombination was significantly suppressed by the electron trapping of Ag. EDTA may act in by the formation of Cr-complex and the separation of Cr from the g-CN surface and by the valence band hole scavenger of g-CN. X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscope (SEM), transmission electron microscope (TEM), X-ray photoelectron spectroscopy (XPS), UV-Vis diffuse reflectance spectroscopy (DRS) and photoluminescence spectra (PL) were used to characterize g-CN and Ag/g-CN nanoparticles. A possible mechanism for photocatalytic Cr reduction has also been demonstrated.

摘要

本文研究了在乙二胺四乙酸(EDTA)存在下,使用 3wt%Ag/g-CN 将水溶液中的 Cr 光催化还原为 Cr。纯 g-CN 的 Cr 光催化还原率非常低。Ag 和 EDTA 的添加可以显著提高 g-CN 的 Cr 光催化还原效率。在 EDTA 存在下,Ag/g-CN 的效率优于 Au/g-CN 和 Cu/g-CN。在 EDTA 存在下,还原速率常数从纯 g-CN 的 0.0005 增加到 3wt%Ag/g-CN 的 0.12min。通过将 EDTA 的浓度从 0 增加到 500mg/L,Cr 的还原效率极显著增加,速率常数从 0.008 增加到 0.12min。对于光催化剂 Ag/g-CN,最佳 EDTA 浓度为 500mg/L。Ag-EDTA 配合物可能通过 g-CN 的导带电子还原为金属银。电子空穴复合被 Ag 的电子捕获显著抑制。EDTA 可能通过形成 Cr 配合物和 Cr 从 g-CN 表面的分离以及 g-CN 的价带空穴清除剂的作用。X 射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X 射线光电子能谱(XPS)、紫外-可见漫反射光谱(DRS)和光致发光光谱(PL)用于表征 g-CN 和 Ag/g-CN 纳米粒子。还提出了一种光催化 Cr 还原的可能机制。

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