Enhanced electrocatalytic removal of tetracycline using dual carbon material combined particle electrodes in a three-dimensional electrochemical system …

X Xu, X Zeng, C Zhang, R Huang, W Ding - Journal of Cleaner Production, 2023 - Elsevier
In order to assemble low cost and high performance electrochemical oxidation system for
wastewater treatment, biochar was decorated by graphene to synthesize carbon composite …

[HTML][HTML] Removal of ciprofloxacin and cephalexin antibiotics in water environment by magnetic graphene oxide nanocomposites; optimization using response surface …

M Alishiri, SA Abdollahi, AN Neysari, SF Ranjbar… - Results in …, 2023 - Elsevier
This study investigates the efficient removal of ciprofloxacin (Cip) and cephalexin (Cep)
using magnetic graphene oxide (Fe 3 O 4/GO) as an adsorbent. To this end, the magnetic …

Synthesis and characterization of iron oxide-commercial activated carbon nanocomposite for removal of hexavalent chromium (Cr6+) ions and Mordant Violet 40 …

SMI Mohamed, M Yılmaz, EK Güner, A El Nemr - Scientific Reports, 2024 - nature.com
Iron Oxide-commercial activated carbon nanocomposite (CAC-IO) was prepared from
commercial activated carbon (CAC) by the co-precipitation method, and the resulting …

Facile fabrication of Fe3O4-Biochar hybrid nanomaterials as catalysts for Photo-Fenton degradation of tetracycline

J Wang, Z Zhang, F Wu, W Sun, F Wang, J Han, Y Pan… - Optical Materials, 2023 - Elsevier
In this work, a simple hydrothermal method was designed to prepare Fe 3 O 4/Biochar (Fe 3
O 4/BC) for removing tetracycline (TC) with high efficiency. The material composition and …

An efficient investigation and machine learning-based prediction of decolorization of wastewater by using zeolite catalyst in electro-Fenton reaction

A El Jery, M Aldrdery, UR Shirode, JCO Gavilán… - Catalysts, 2023 - mdpi.com
The shortage of water resources has caused extensive research to be conducted in this field
to develop effective, rapid, and affordable wastewater treatment methods. For the treatment …

Electrolytic synthesis of γ-Al2O3 nanoparticle from aluminum scrap for enhanced methylene blue adsorption: experimental and RSM modeling

EA Bekele, HA Korsa, YM Desalegn - Scientific Reports, 2024 - nature.com
The presence of methylene blue (MB) dye in wastewater has raised concern about human
health and environmental ecology due to potential carcinogenic, and mutagenic effects …

Optimization of process parameters for trimethoprim and sulfamethoxazole removal by magnetite-chitosan nanoparticles using Box–Behnken design

M Alishiri, M Gonbadi, M Narimani, SA Abdollahi… - Scientific Reports, 2023 - nature.com
The contamination of the aquatic environment with antibiotics is among the major and
developing problems worldwide. The present study investigates the potential of adsorbent …

Thiourea crosslinked-amino modified graphene nanoflakes as an effective adsorbent to confine Cr (VI) via multiple combination mechanisms

S Qian, W Changlong, Z Lixin, Y Yanzhao - Journal of Cleaner Production, 2022 - Elsevier
The high pathogenicity to organisms and high destructiveness in the natural environment
determine the utmost importance of removing Cr (VI) from water. Herein, thiourea …

Synergistic effect of synthesized green nanocomposite of chitosan-activated carbon thin film (ACTF)@opuntia ficus-indica shell for removal of Sn (II) and As (V) ions …

AK El-Sawaf, SR El-Dakkony, MF Mubarak, AA Nassar - Cellulose, 2024 - Springer
The purpose of this study was to develop a green and sustainable chitosan-activated carbon
nanocomposite using Opuntia ficus-indica shell prepared from prickly pear plant material …

Efficient electrochemical oxidation of cephalosporin antibiotics by a highly active cerium doped PbO2 anode: Parameters optimization, kinetics and degradation …

Y Ni, W Yue, F Liu, W Bi, Z Sun, Y Wu - Colloids and Surfaces A …, 2023 - Elsevier
Removing cephalosporin contaminants from aquatic environments is of great concern
because of the hazards they pose to the environment and human health. In this study, a Ce …