Heterogeneous Fenton-like degradation of methyl blue using MCM-41-Fe/Al supported Mn oxides
Author:
Affiliation:
1. College of Chemistry and Molecular Engineering
2. Nanjing Tech University
3. Nanjing 210009
4. P. R. China
5. China Electronics Engineering Design Institute
6. Beijing 100000
Abstract
We prepared uniform and spherical M-Fe/Al at room temperature. Furthermore, this material was supported with Mn oxides by an impregnation method to accelerate the degradation process of methyl blue.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/RA/C6RA04709B
Reference37 articles.
1. Water pollution in Pakistan and its impact on public health — A review
2. Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative
3. Facile synthesis of paper mill sludge-derived heterogeneous catalyst for the Fenton-like degradation of methylene blue
4. Advanced oxidation processes for in-situ production of hydrogen peroxide/hydroxyl radical for textile wastewater treatment: a review
5. Oxidative degradation of herbicide diuron in aqueous medium by Fenton's reaction based advanced oxidation processes
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