Ji, Wen-chan and Hu, Ping and Wang, Xiao-yu and Saji, Sandra Elizabeth and Chang, Tian and Zhu, Xin-yu and Yang, Fairy Fan and Cao, Qi-gao and Dang, Rui and Wang, Kuai-she and Yin, Zongyou (2021) One-Step Carbothermal Synthesis of Super Nanoadsorbents for Rapid and Recyclable Wastewater Treatment. Crystals, 11 (1). p. 75. ISSN 2073-4352
crystals-11-00075.pdf - Published Version
Download (2MB)
Abstract
As a potential magnetic super adsorbent in wastewater treatment, Fe3O4 has been researched intensively up to date. However, its key problem of poor comprehensive magnetic properties is still challenging. In this work, an effective solution to this problem has been developed by a one-step carbothermal synthesis of Fe3O4 crystals, which are merited with pure-stoichiometry (FeO-phase free), high crystallinity, small-size (~10 nm), strong magnetism and sensitive magnetic response. The unveiled saturation magnetization of Fe3O4 nanoparticles reaches as high as 90.32 emu·g−1, and the fastest magnetic response time is as short as only 5 s. Such magnetic Fe3O4 super adsorbents exhibit outstanding performance when applied as an adsorbent for wastewater treatment. They can quickly and effectively adsorb methylene blue with an adsorption capacity of 62.5 mg·g−1, which is much higher than that of Fe3O4 adsorbents prepared by other methods reported in the literature. Importantly, this capacity is refreshable after removing the adsorbed methylene blue just by ultrasonic cleaning. With such combined outstanding magnetic properties and recyclable adsorption capacity, the problems associated with the conventional adsorbent solid–liquid separation could be resolved, thus making a forward development towards industrial wastewater treatment. View Full-Text
Item Type: | Article |
---|---|
Uncontrolled Keywords: | magnetism; Fe3O4 nanoparticles; accurate fabrication; magnetic responsiveness; adsorption |
Subjects: | STM Repository > Chemical Science |
Depositing User: | Managing Editor |
Date Deposited: | 04 May 2023 05:10 |
Last Modified: | 31 Jul 2024 12:29 |
URI: | http://classical.goforpromo.com/id/eprint/526 |