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Carbamazepine degradation by visible-light-driven photocatalyst Ag_(3)PO_(4)/GO:Mechanism and pathway 被引量:2

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摘要 Carbamazepine(CBZ),as one of the most frequently detected pharmaceuticals,is of great concern due to its potential impact on the ecosystem and human health.This study provides an effective approach to remove CBZ by using photocatalyst silver phosphate combined with graphene oxide(Ag_(3)PO_(4)/GO)under visible irradiation.The morphology,composition,and optical properties of Ag_(3)PO_(4)/GO were characterized employing SEM,XRD,and DRS.Graphene oxide could improve the visible-light utilization and promote electron's charge to enhance the photocatalytic performance of Ag_(3)PO_(4)/GO.With the optimal reaction condition of 5.86 mW/cm_(2)light intensity,15-25℃ temperature,5-7 pH,and 0.5 mg/L catalytic dosages,5 mg/L CBZ could be completely degraded in 30 min,and the apparent rate constant could reach 0.12 min^(-1).Additionally,the radical trapping experiments indicated·OH and O_(2)^(-)· were the main reactive oxygen species employed to eliminate CBZ.The decay pathways of CBZ had been proposed accordingly,and the main product was the low-molecular products.
出处 《Environmental Science and Ecotechnology》 SCIE 2022年第1期17-26,共10页 环境科学与生态技术(英文)
基金 Shenzhen Science and Technology Innovation Commission[No.KCXFZ202002011006362] National Natural Science Foundation of China[No.52000051] Initial Scientific Research Foundation of Overseas High-level Talents of Harbin Institute of Technology(Shenzhen)[No.FA11409005]。
作者简介 Corresponding author:Zilong Zhao.School of Civil and Environmental Engineering,Harbin Institute of Technology Shenzhen,Shenzhen,518055,PR China.E-mail addresses:berthillon@hotmail.com;Corresponding author:Cesar Nieto-Delgado.E-mail addresses:cesar.nieto@ipicyt.edu.mx。
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