Literature DB >> 28699008

Fe3O4 nanoparticle-encapsulated mesoporous carbon composite: An efficient heterogeneous Fenton catalyst for phenol degradation.

Angamuthu Mani1, Thirumoorthy Kulandaivellu1, Satishkumar Govindaswamy2, Akhila Maheswari Mohan1.   

Abstract

Magnetite (Fe3O4) nanoparticle-encapsulated mesoporous carbon nanocomposite was fabricated from Fe-based metal-organic framework (MOF) (MIL-102) through carbonization. It was found that Fe-based MOF (MIL-102) is a potential precursor for the fabrication of hexagonal mesoporous carbon nanodisk functionalized with Fe3O4 nanoparticles. The obtained nanocomposite was characterized by XRD, FT-IR, N2 adsorption and desorption, FE-SEM and HRTEM techniques. As a Fenton-like solid catalyst for phenol degradation, Fe3O4 nanoparticle-encapsulated mesoporous carbon showed greater catalytic activity for the production of hydroxyl radical from the decomposition of H2O2 and it accomplished 100% phenol and 82% total organic carbon (TOC) conversion, within 120 min of reaction. This enhanced catalytic performance was due to confined access for the pollutant to the iron oxide nanoparticles provided by mesopores in carbon shell. Bare Fe3O4 nanodisk shows poor catalytic performance in the degradation of phenol, and it obviously reveals the significance of the mesoporous carbon support for iron oxide nanoparticles.

Entities:  

Keywords:  AOP; Fe-MOF; Fe3O4 nanoparticle; Heterogeneous Fenton; Mesoporous carbon; Phenol degradation

Mesh:

Substances:

Year:  2017        PMID: 28699008     DOI: 10.1007/s11356-017-9663-4

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  15 in total

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Authors:  Guido Busca; Silvia Berardinelli; Carlo Resini; Laura Arrighi
Journal:  J Hazard Mater       Date:  2008-03-20       Impact factor: 10.588

2.  Research on degradation product and reaction kinetics of membrane electro-bioreactor (MEBR) with catalytic electrodes for high concentration phenol wastewater treatment.

Authors:  Tao Wang; Huanping Zhao; Hui Wang; Botan Liu; Chunqing Li
Journal:  Chemosphere       Date:  2016-04-22       Impact factor: 7.086

3.  Peanut-Shell-like Porous Carbon from Nitrogen-Containing Poly-N-phenylethanolamine for High-Performance Supercapacitor.

Authors:  Xianjun Wei; Suige Wan; Xiaoqiang Jiang; Zhe Wang; Shuyan Gao
Journal:  ACS Appl Mater Interfaces       Date:  2015-09-30       Impact factor: 9.229

4.  Enhanced Fenton Catalytic Efficiency of γ-Cu-Al₂O₃ by σ-Cu²⁺-Ligand Complexes from Aromatic Pollutant Degradation.

Authors:  Lai Lyu; Lili Zhang; Qiyuan Wang; Yulun Nie; Chun Hu
Journal:  Environ Sci Technol       Date:  2015-07-09       Impact factor: 9.028

5.  Noncontact Synergistic Effect between Au Nanoparticles and the Fe2O3 Spindle Inside a Mesoporous Silica Shell as Studied by the Fenton-like Reaction.

Authors:  Zhe Chen; Yu Liang; Jing Hao; Zhi-Min Cui
Journal:  Langmuir       Date:  2016-11-17       Impact factor: 3.882

6.  Chemical pathway and kinetics of phenol oxidation by Fenton's reagent.

Authors:  J A Zazo; J A Casas; A F Mohedano; M A Gilarranz; J J Rodríguez
Journal:  Environ Sci Technol       Date:  2005-12-01       Impact factor: 9.028

7.  Metal-organic framework derived magnetic nanoporous carbon: novel adsorbent for magnetic solid-phase extraction.

Authors:  Lin Hao; Chun Wang; Qiuhua Wu; Zhi Li; Xiaohuan Zang; Zhi Wang
Journal:  Anal Chem       Date:  2014-12-04       Impact factor: 6.986

8.  Mesoporous graphitic carbon nanodisks fabricated via catalytic carbonization of coordination polymers.

Authors:  Panpan Su; Liang Jiang; Jiao Zhao; Jingwang Yan; Can Li; Qihua Yang
Journal:  Chem Commun (Camb)       Date:  2012-07-27       Impact factor: 6.222

9.  Superparamagnetic Fe3O4 nanoparticles as catalysts for the catalytic oxidation of phenolic and aniline compounds.

Authors:  Shengxiao Zhang; Xiaoli Zhao; Hongyun Niu; Yali Shi; Yaqi Cai; Guibin Jiang
Journal:  J Hazard Mater       Date:  2009-01-16       Impact factor: 10.588

10.  Assembly of a nanoreactor system with confined magnetite core and shell for enhanced Fenton-like catalysis.

Authors:  Tao Zeng; Xiaole Zhang; Saihua Wang; Yurong Ma; Hongyun Niu; Yaqi Cai
Journal:  Chemistry       Date:  2014-04-15       Impact factor: 5.236

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