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通过负载在还原氧化石墨烯纳米复合材料上的ZnO/TiO对苯酚和石化废水进行光催化净化:影响操作因素、机理及电能消耗

Photocatalytic decontamination of phenol and petrochemical wastewater through ZnO/TiO decorated on reduced graphene oxide nanocomposite: influential operating factors, mechanism, and electrical energy consumption.

作者信息

Hayati Farzan, Isari Ali Akbar, Fattahi Moslem, Anvaripour Bagher, Jorfi Sahand

机构信息

Department of Chemical Engineering, Abadan Faculty of Petroleum Engineering, Petroleum University of Technology Abadan Iran

Department of Environmental Health Engineering, School of Health, Ahvaz Jundishapur University of Medical Sciences Ahvaz Iran

出版信息

RSC Adv. 2018 Nov 30;8(70):40035-40053. doi: 10.1039/c8ra07936f. eCollection 2018 Nov 28.

Abstract

ZnO/TiO anchored on a reduced graphene oxide (rGO) ternary nanocomposite heterojunction was synthesized the multi-step method including hydrothermal, solvothermal and sol-gel methods. XRD, Raman, FESEM, EDX, Dot Mapping EDS, BET, FTIR, UV-VIS, TGA, and EIS techniques were utilized for characterizing as-synthesized catalysts. The XRD and Raman data proved the formation of anatase phase TiO and wurtzite phase ZnO in the prepared samples. Further, the UV-Vis spectrum confirmed that the band gap value of ZnO/TiO diminished on introduction of graphene oxide. Photocatalytic performance of the fabricated catalysts was investigated by decontamination of phenol in aqueous solutions. The effect of different operational factors such as pH, catalyst dosage, phenol concentration, and light illumination was investigated to find the optimum decontamination conditions. According to the results, complete degradation of phenol was achieved at pH = 4, catalyst dosage of 0.6 g L, light intensity of 150 W, and phenol initial concentration of 60 ppm at 160 min under visible light illumination. With the addition of graphene oxide to the composite, a significant increase was detected in the photocatalytic performance due to the higher available surface area and lower electron/hole recombination rate. In addition, the scavenging experiments revealed that the ·OH is responsible for the degradation of phenol during the reaction. The degradation mechanism, economic performance, mineralization, and recyclability were also investigated. Kinetic studies confirmed that photocatalytic degradation process followed the pseudo-first-order kinetic model. A case of real wastewater treatment was used to examine the performance of the catalyst for real case studies.

摘要

采用水热法、溶剂热法和溶胶 - 凝胶法等多步法合成了负载于还原氧化石墨烯(rGO)上的ZnO/TiO三元纳米复合异质结。利用XRD、拉曼光谱、场发射扫描电子显微镜(FESEM)、能谱仪(EDX)、能谱点映射(Dot Mapping EDS)、比表面积分析仪(BET)、傅里叶变换红外光谱仪(FTIR)、紫外 - 可见光谱仪(UV - VIS)、热重分析仪(TGA)和电化学阻抗谱(EIS)技术对合成的催化剂进行表征。XRD和拉曼光谱数据证明了在制备的样品中形成了锐钛矿相TiO和纤锌矿相ZnO。此外,紫外 - 可见光谱证实,引入氧化石墨烯后ZnO/TiO的带隙值减小。通过对水溶液中苯酚的去污处理研究了所制备催化剂的光催化性能。研究了不同操作因素如pH值、催化剂用量、苯酚浓度和光照等的影响,以找到最佳去污条件。结果表明,在可见光照射下,于160分钟时,在pH = 4、催化剂用量为0.6 g/L、光强为150 W以及苯酚初始浓度为60 ppm的条件下,苯酚实现了完全降解。向复合材料中添加氧化石墨烯后,由于更高的比表面积和更低的电子/空穴复合率,光催化性能显著提高。此外,清除实验表明,·OH在反应过程中负责苯酚的降解。还研究了降解机理、经济性能、矿化作用和可回收性。动力学研究证实,光催化降解过程遵循准一级动力学模型。通过实际废水处理案例来检验该催化剂在实际案例研究中的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79ad/9091293/504b5f9480d4/c8ra07936f-f1.jpg

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