All systems operational
Q1 2025

Preparation of trifunctional magnetic ZnO-based biochar for pollutions removal from wastewater

Chao Lv · Haoyu Li · Xiaojing Qin
10.25259/ajc_345_2025 382 Views 0 Citations
0
Citations
382
Views
Abstract

The trifunctional magnetic Fe3O4/ZnO-based biochar (ZF-BC) was prepared for the removal of levofloxacin and Cr6+ from wastewater in single and binary contaminant systems. The physical and chemical properties of the ZF-BC were characterized and analyzed. The adsorption amounts of levofloxacin and Cr6+ for ZF-BC are 332.11 and 34.40 mg/g in a single contaminant system based on Hill model calculation, respectively. Levofloxacin slightly contributes to Cr6+, while levofloxacin adsorption on ZF-BC is restrained at high Cr6+ concentration in the binary contaminant system. The levofloxacin and Cr6+ adsorption mechanism were investigated and analyzed, combined with density functional theory calculations. ZF-BC also has excellent reusability and stability for levofloxacin and Cr6+ adsorption. Using the photocatalytic degradation system, 97.60% of levofloxacin and 79.43% of Cr6+ were removed. The photocatalytic degradation mechanism analysis indicates that levofloxacin is first adsorbed on ZF-BC and then used as the hole sacrificial agent to release more electrons/holes to participate in the Cr6+ redox reaction.

Cite this Article (APA)
Chao, L., Haoyu, L., Xiaojing, Q. (2025). Preparation of trifunctional magnetic ZnO-based biochar for pollutions removal from wastewater. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_345_2025
Related Papers
9
cites
395
9
cites
395
Triazoles- A paradigm shift in drug discovery: A review on synthesis and therapeutic potential
Umme Farwa; Maimoona Arif; Mohd Farhan; Zeshan Ali Sandhu; Mohamed El Oirdi; Moh · 2025
6
cites
394
Light-controlled recovery and recycling of Pd nanoparticles with application in the semihydrogenatio…
Kaoxue Li; Rongshi Jing; Shaohui Ma; Yuanshuo Li; Xiaohui Tian; Shuhua Cao; Xing · 2025
5
cites
391
5
cites
393
Access
View Full Text via DOI
Published in
ISSN 1878-5352
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher Scientific Scholar
Country 🇸🇦 Saudi Arabia
View Journal Profile →
Authors
Publication Details
Year 2025
Language English
Added 01 Aug 2026