Preparation of Co-Doped Graphitic Carbon Nitride and Degradation of MB by Heterogeneous Photo-Fenton-like Reaction System

Q2 Materials Science Revista de Chimie Pub Date : 2022-05-02 DOI:10.37358/rc.22.2.8523
Dejun Niu, Kai Bao, Xuanye Huang, Maojuan Bai, Jun Wan
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Abstract

In this study, Co-porous-g-C3N4(porous Co-Doped graphitic carbon nitride) was synthesized by a one-step calcination method successfully. Co-porous-g-C3N4 was characterized by transmission electron microscopy, X-ray photoelectron spectroscopy, UV-vis diffuse reflectance, and specific surface area determination. The Photo- Fenton-like system was successfully constructed under the condition of coexistence of Co-porous-g-C3N4 and H2O2. The synergistic effect of Fenton-like system and photo-catalysis was realized. Through the optimization of experimental conditions, the best photocatalytic performance of this heterogeneous reaction system was achieved. The degradation rate of MB (methylene blue, 40 mg/L) could reach 98.3% at 90 min. Co-porous-g-C3N4 had photocatalytic degradation activity for different organic pollutants and had wonderful recyclability and stability. The main degradation effect was attributed to �O2- which could be generated through two channels in the Photo- Fenton-like system. Moreover, the rate of photogenerated electron-hole complexation could be decreased due to the reaction of low-valent cobalt and photoelectrons in this heterogeneous reaction system.
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共掺杂石墨氮化碳的制备及非均相光fenton -like反应体系对MB的降解
本研究通过一步煅烧法成功合成了co - pore -g- c3n4(多孔共掺杂石墨氮化碳)。采用透射电镜、x射线光电子能谱、紫外-可见漫反射、比表面积测定等方法对共孔g- c3n4进行了表征。在co - pore -g- c3n4和H2O2共存的条件下,成功构建了类光芬顿体系。实现了类芬顿体系和光催化的协同作用。通过对实验条件的优化,获得了该非均相反应体系的最佳光催化性能。对MB(亚甲基蓝,40 mg/L)在90 min内的降解率可达98.3%。co -多孔g- c3n4对不同的有机污染物具有光催化降解活性,且具有良好的可回收性和稳定性。O2-在类光芬顿体系中可通过两个通道生成。此外,在这种非均相反应体系中,由于低价钴与光电子的反应,光生电子-空穴络合的速率降低。
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来源期刊
Revista de Chimie
Revista de Chimie 化学-工程:化工
自引率
0.00%
发文量
54
审稿时长
3-6 weeks
期刊介绍: Revista de Chimie publishes original scientific studies submitted by romanian and foreign researchers and offers worldwide recognition of articles in many countries enabling their review in the publications of other researchers. Published articles are in various fields of research: * Chemistry * Petrochemistry * Chemical engineering * Process equipment * Biotechnology * Environment protection * Marketing & Management * Applications in medicine * Dental medicine * Pharmacy
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