Publication Cover
Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 51, 2016 - Issue 1
500
Views
19
CrossRef citations to date
0
Altmetric
ARTICLES

One-step solvothermal synthesis of magnetic Fe3O4–graphite composite for Fenton-like degradation of levofloxacin

, , , , , , , & show all
Pages 52-62 | Received 22 May 2015, Published online: 29 Oct 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Jan Bogacki, Piotr Marcinowski, Ewa Zapałowska, Justyna Maksymiec & Jeremi Naumczyk. (2017) Cosmetic wastewater treatment by the ZVI/H2O2 process. Environmental Technology 38:20, pages 2589-2600.
Read now

Articles from other publishers (18)

H. Germani Nejad, A. H. Hassani, H. Ahmad Panahi & E. Moniri. (2023) Efficiency of levofloxacin removal from aqueous solutions using three-dimensional magnetic composite graphene oxide nanoparticle grafted onto melamine and chitosan dialdehyde. International Journal of Environmental Science and Technology.
Crossref
Sanaa Rashid, Dominic Bale & Katherine Huddersman. 2023. Wastewater Management and Technologies. Wastewater Management and Technologies 107 124 .
Laishram Saya, Vipin Malik, Drashya Gautam, Geetu Gambhir, Balendra, W. Rameshwor Singh & Sunita Hooda. (2022) A comprehensive review on recent advances toward sequestration of levofloxacin antibiotic from wastewater. Science of The Total Environment 813, pages 152529.
Crossref
Kiran S. Varma, Atindra D. Shukla, Rajesh J. Tayade, Pradyuman A. Joshi, Arun K. Das, Kunal B. Modi & Vimal G. Gandhi. (2021) Photocatalytic performance and interaction mechanism of reverse micelle synthesized Cu-TiO2 nanomaterials towards levofloxacin under visible LED light. Photochemical & Photobiological Sciences 21:1, pages 77-89.
Crossref
Ho Gia Quynh, Nguyen Anh Kiet, Huynh Van Thanh, Ta Man Tue, Nguyen Thi Truc Phuong & Nguyen Quang Long. (2021) Removal of aqueous organic pollutant by photo-Fenton process using low-cost Fe 3 O 4 /zeolite A . IOP Conference Series: Earth and Environmental Science 947:1, pages 012013.
Crossref
Jingtao Shen, Lin Qian, Jialun Huang, Yongfu Guo & Zhenzong Zhang. (2021) Enhanced degradation toward Levofloxacin under visible light with S-scheme heterojunction In2O3/Ag2CO3: Internal electric field, DFT calculation and degradation mechanism. Separation and Purification Technology 275, pages 119239.
Crossref
Xiao-Yuan Lv, Guan-Ping Jin, Ding-Kun Yuan, Yan-Feng Ding & Peng-Xing Long. (2021) Improving generation of H2O2 and •OH at copper hexacyanocobaltate/graphene/ITO composite electrode for degradation of levofloxacin in photo-electro-Fenton process. Environmental Science and Pollution Research 28:14, pages 17636-17647.
Crossref
Shelja Sharma, Alex O. Ibhadon, M. Grazia Francesconi, Surinder Kumar Mehta, Sasikumar Elumalai, Sushil Kumar Kansal, Ahmad Umar & Sotirios Baskoutas. (2020) Bi2WO6/C-Dots/TiO2: A Novel Z-Scheme Photocatalyst for the Degradation of Fluoroquinolone Levofloxacin from Aqueous Medium. Nanomaterials 10:5, pages 910.
Crossref
Jian Zhang, Feng Ning, Minxia Kang, Changpo Ma & Zumin Qiu. (2020) Effective removal of humic acid from aqueous solution using adsorbents prepared from the modified waste bamboo powder. Microchemical Journal 153, pages 104272.
Crossref
Adam Muszyński, Piotr Marcinowski, Justyna Maksymiec, Klaudia Beskowska, Ewa Kalwarczyk & Jan Bogacki. (2019) Cosmetic wastewater treatment with combined light/Fe0/H2O2 process coupled with activated sludge. Journal of Hazardous Materials 378, pages 120732.
Crossref
Girish Gupta & Sushil K. Kansal. (2019) Novel 3-D flower like Bi3O4Cl/BiOCl p-n heterojunction nanocomposite for the degradation of levofloxacin drug in aqueous phase. Process Safety and Environmental Protection 128, pages 342-352.
Crossref
Manjot Kaur, Ahmad Umar, Surinder Kumar Mehta & Sushil Kumar Kansal. (2019) Reduced graphene oxide-CdS heterostructure: An efficient fluorescent probe for the sensing of Ag(I) and sunset yellow and a visible-light responsive photocatalyst for the degradation of levofloxacin drug in aqueous phase. Applied Catalysis B: Environmental 245, pages 143-158.
Crossref
Gabriela Coria, Tzayam Pérez, Ignasi Sirés, Enric Brillas & José L. Nava. (2018) Abatement of the antibiotic levofloxacin in a solar photoelectro-Fenton flow plant: Modeling the dissolved organic carbon concentration-time relationship. Chemosphere 198, pages 174-181.
Crossref
Yingying Wang, Xiaohong Wang, Yongmei Ding, Zilong Zhou, Chen Hao & Saisai Zhou. (2018) Novel sodium lignosulphonate assisted synthesis of well dispersed Fe3O4 microspheres for efficient adsorption of copper (II). Powder Technology 325, pages 597-605.
Crossref
Shelja Sharma, Ahmad Umar, Surinder Kumar Mehta, Alex O. Ibhadon & Sushil Kumar Kansal. (2018) Solar light driven photocatalytic degradation of levofloxacin using TiO 2 /carbon-dot nanocomposites . New Journal of Chemistry 42:9, pages 7445-7456.
Crossref
Amandeep Kaur, Deepak B. Salunke, Ahmad Umar, Surinder Kumar Mehta, A. S. K. Sinha & Sushil Kumar Kansal. (2017) Visible light driven photocatalytic degradation of fluoroquinolone levofloxacin drug using Ag 2 O/TiO 2 quantum dots: a mechanistic study and degradation pathway . New Journal of Chemistry 41:20, pages 12079-12090.
Crossref
Chunming Su. (2017) Environmental implications and applications of engineered nanoscale magnetite and its hybrid nanocomposites: A review of recent literature. Journal of Hazardous Materials 322, pages 48-84.
Crossref
Amandeep Kaur & Sushil Kumar Kansal. (2016) Bi 2 WO 6 nanocuboids: An efficient visible light active photocatalyst for the degradation of levofloxacin drug in aqueous phase. Chemical Engineering Journal 302, pages 194-203.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.