Solar photodegradation of malathion from aqueous media using Al-doped ZnO/Fe3O4 nanocomposite

Author:

Salehzadeh Hamzeh,Wantala Kitirote,Mohammadi Ebrahim,Shivaraju H.P.,Shahmoradi Behzad,Rtimi Sami,Maleki Afshin,Safari Mehdi

Funder

University of Kurdistan

Kurdistan University Of Medical Sciences

Khon Kaen University

Publisher

Elsevier BV

Subject

Process Chemistry and Technology,General Chemistry,Catalysis

Reference100 articles.

1. Z-scheme binary 1D ZnWO4 nanorods decorated 2D NiFe2O4 nanoplates as photocatalysts for high efficiency photocatalytic degradation of toxic organic pollutants from wastewater;Reddy;J. Environ. Manag.,2020

2. Leveraging the potential of silver nanoparticles-based materials towards sustainable water treatment;Khan;J. Environ. Manag.,2022

3. Physical, chemical, and microbial quality of drinking water in Sanandaj, Iran;Nouri;J. Adv. Environ. Health Res.,2018

4. Determination of organophosphorous and carbamat pesticides residue in drinking water resources of Hamadan in 2007;Khodadadi;Iran. J. Health Environ.,2010

5. The evaluation of malathion and Diazinon residues in pickled olive during preparation and production;Karami;Food Sci. Technol.,2019

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