Naphthalene degradation dominated by homogeneous reaction in Fenton-like process catalyzed by pyrite: Mechanism and application
Author:
Publisher
Elsevier BV
Subject
Filtration and Separation,Analytical Chemistry
Reference46 articles.
1. Limitations and future directions of application of the Fenton-like process in micropollutants degradation in water and wastewater treatment: A critical review;Ziembowicz;Chemosphere,2022
2. Advanced oxidation processes for in-situ production of hydrogen peroxide/hydroxyl radical for textile wastewater treatment: a review;Asghar;J. Clean. Prod.,2015
3. Hydroxyl radical based photocatalytic degradation of halogenated organic contaminants and paraffin on silica gel;Qu;Environ. Sci. Technol.,2018
4. Removal of organic load and phenolic compounds from olive mill wastewater by Fenton oxidation with zero-valent iron;Kallel;Chem. Eng. J.,2009
5. Insights into the role of nanoscale zero‐valent iron in Fenton oxidation and its application in naphthalene degradation from water and slurry systems;Yang;Water Environ. Res,2022
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