| Issue |
E3S Web Conf.
Volume 728, 2026
2026 3rd International Conference on Environment Engineering, Urban Planning and Design (EEUPD 2026)
|
|
|---|---|---|
| Article Number | 01008 | |
| Number of page(s) | 5 | |
| Section | Environmental Engineering and Earth Sciences | |
| DOI | https://doi.org/10.1051/e3sconf/202672801008 | |
| Published online | 27 July 2026 | |
Efficiency and Mechanism of Low-Cost Coal Fly Ash Magnetic Beads Enhanced Coagulation for Treating Relatively High-Turbidity and Low-Organic Wastewater
Hebei University of Technology, Tianjin 300401, P. R. China
* Renzhijun: This email address is being protected from spambots. You need JavaScript enabled to view it.
Abstract
The resource utilization of coal fly ash solid waste has become a research hotspot. In this work, magnetic beads were separated from industrial waste fly ash by wet magnetic separation and used as magnetic seeds (MS-CFA) in magnetic coagulation (MC). The superiority of MC was evaluated by comparison with traditional coagulation (TC). Meanwhile, The potential and feasibility of MS-CFA were evaluated by also employing Fe3O4 in the MC process. MS-CFA was characterized by SEM, XRD, VSM, and XPS. The results showed that MS-CFA was a composite microsphere crystal with a saturation magnetization of 33.71 emu/g. The addition of MS-CFA reduced the residual turbidity from 10.87 NTU to 3.27 NTU and increased the chemical oxygen demand (COD) removal rate from 42.92% to 64.24%. MS-CFA achieved water treatment performance comparable to or even better than Fe3O4, especially in organic matter removal. As a waste-derived material, MS-CFA not only reduces costs but also provides stronger adsorption for organic pollutants. This study provides a reference route for developing low-cost and high-efficiency magnetic coagulation technology.
© The Authors, published by EDP Sciences, 2026
This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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