Photo-catalytic degradation of triclosan with UV/iodide/ZnO process: Performance, kinetic, degradation pathway, energy consumption and toxicology

Author:

Azarpira Hossein,Sadani Mohsen,Abtahi Mehrnoosh,Vaezi Najmeh,Rezaei Soheila,Atafar Zahra,Mohseni Seyed Mohsen,Sarkhosh Maryam,Ghaderpoori Mansour,Keramati Hassan,Hosseini Pouya Rokhsane,Akbari Abbas,fanai Vahid

Funder

Student Research Committee

Research & Technology Chancellor

Publisher

Elsevier BV

Subject

General Physics and Astronomy,General Chemical Engineering,General Chemistry

Reference41 articles.

1. A Study on the Current State of Contaminants of Concern Research, with a Focus on Biosolids and Regulations;Fulton,2016

2. Triclosan: current status, occurrence, environmental risks and bioaccumulation potential;Dhillon;Int. J. Environ. Res. Public Health,2015

3. Triclosan degradation by heterogeneous photocatalysis using ZnO immobilized in biopolymer as catalyst;Kosera;J. Photochem. Photobiol. A: Chem.,2017

4. Fate of triclosan and triclosan-methyl in sewage treatmentplants and surface waters;Bester;Arch. Environ. Contam. Toxicol.,2005

5. Biodegradation of triclosan and formation of methyl-triclosan in activated sludge under aerobic conditions;Chen;Chemosphere,2011

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