Environmental aspects of endocrine-disrupting compounds in the aquatic ecosystem and the application of electrochemical technologies for their abatement
Author:
Publisher
Elsevier BV
Subject
Water Science and Technology,Geography, Planning and Development,Environmental Chemistry,Environmental Engineering
Reference193 articles.
1. Phenols and parabens in relation to reproductive and thyroid hormones in pregnant women;Aker;Environ. Res.,2016
2. Application of electrochemical oxidation in cold climate regions–Effect of temperature, pH and anode material on the degradation of Bisphenol A and the formation of disinfection by-products;Ambauen;J. Environ. Chem. Eng.,2020
3. Paraben content in adjacent normal-malignant breast tissues from women with breast cancer, Biomed;Amin;Environ. Sci.,2019
4. Electrochemical degradation of nonylphenol ethoxylate-7 (NP7 EO) using a DiaClean® cell equipped with boron-doped diamond electrodes (BDD), Water, Air;Armijos-Alcocer;Soil Pollut,2017
5. Diuron degradation using three-dimensional electro-peroxone (3D/E-peroxone) process in the presence of TiO2/GAC: application for real wastewater and optimization using RSM-CCD and ANN-GA approaches;Asgari;Chemosphere,2021
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1. Occurrence and sources of hormones in water resources—environmental and health impact;Environmental Science and Pollution Research;2024-05-21
2. Comparative behavior of carbon-based materials for the removal of emerging bisphenol A from water: adsorption modelling and mechanism;Groundwater for Sustainable Development;2024-05
3. Mechanism and application of enhanced degradation of phenol through peroxymonosulfate activation by sulfur-doped biochar prepared with sodium thiosulfate as activator and sulfur dopant;Journal of Water Process Engineering;2024-04
4. RSM-Based Electrochemical Treatment for the Removal of Endocrine-Disrupting Chemical Bisphenol A;Journal of Hazardous, Toxic, and Radioactive Waste;2024-01
5. Viable remediation techniques to cleansing wastewaters comprising endocrine-disrupting compounds;Environmental Research;2023-08
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