A self-synthesised non-homogeneous MoS2/Fe–Co–N–BC composite catalyst as an activator for peroxomonosulfate activation for efficient degradation of perfluorooctanoic acid

Literature Information

Publication Date 2023-12-18
DOI 10.1039/D3NJ05139K
Impact Factor 3.591
Authors

Ling Tao, Jiepu Zhang, Fangke Yu


View Original

Abstract

In this study, in order to achieve efficient activation of persulfate, we added MoS2 as a co-catalyst to the iron, cobalt and nitrogen modified biochar (Fe–Co–N–BC) catalytic system. Analytical methods such as scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) demonstrated that the MoS2/Co–Fe–N–BC catalytic materials were successfully prepared. In the MoS2/Fe–Co–N–BC/PMS system, 97.5% of PFOA was removed within 180 min with Kobs of 0.074 min−1. Composites with different mass ratios of MoS2 and Co–Fe–N–BC/PMS in the non-homogeneous PMS system both exhibit excellent catalytic efficiency for TOC removal. In particular, MoS2/Fe–Co–N–BC obtained extraordinary catalytic efficiency through synergistic radical (SO4˙−, ˙OH) and non-radical (1O2, FeIV and FeV) processes, which was proved by the quenching experiments and the EPR testing. The analysis of the activation mechanism reveals that the three redox ion pairs Fe2+/Fe3+, Co2+/Co3+ and Mo4+/Mo6+ simultaneously participated in the activation of PMS, realizing multi-path electron transfer. And MoS2 played an excellent co-catalysis role in promoting the cycling of the valence states of the ions. Compared to Fe3+ and Co3+, the low valence states of Fe2+ and Co2+ can activate PMS more rapidly and produce more ˙OH and SO4˙−. However, the recycling efficiency of Fe2+ and Co3+ in the Fe–Co–N–BC system is low, and the presence of MoS2 improves the efficiency of Fe3+ and Co3+ reduction to Fe2+ and Co2+, respectively. The possible degradation pathways of PFOA were proposed. This study provides some references for the design of polymetallic-doped catalysts to degrade difficult-to-degrade organic pollutants.

Related Literature

Calix[4]pyrogallolarenes as novel high temperature inhibitors of oxidative degradation of polymers

Przemyslaw Ziaja, Katarzyna Jodko-Piorecka, Rafal Kuzmicz, Grzegorz Litwinienko

2011-11-08 Communication

DOI: 10.1039/C1PY00494H

Enzymatically degradable nanogels by inverse miniemulsion copolymerization of acrylamide with dextran methacrylates as crosslinkers

Daniel Klinger, Eugen M. Aschenbrenner, Clemens K. Weiss, Katharina Landfester

2011-11-18 Paper

DOI: 10.1039/C1PY00415H

Inside front cover

2021-03-19 Cover

DOI: 10.1039/C6RE90003H

Thiol-Michael coupling chemistry: facile access to a library of functional exo-7-oxanorbornenes and their ring-opening metathesis (co)polymerization

Meina Liu, Johannes van Hensbergen, Robert P. Burford, Andrew B. Lowe

2012-04-13 Paper

DOI: 10.1039/C2PY20155K

Synthesis of low-temperature benzocyclobutene cross-linker and utilization

Julia N. Dobish, Sharon K. Hamilton, Eva Harth

2012-01-30 Communication

DOI: 10.1039/C2PY00606E

Modular oxime functionalization of well-defined alkoxyamine-containing polymers

Soma Mukherjee, Philip J. Costanzo

2011-11-07 Paper

DOI: 10.1039/C1PY00451D

Welcome to Reaction Chemistry & Engineering

2016-01-27 Editorial

DOI: 10.1039/C6RE90001A

Contents list

Front/Back Matter

DOI: 10.1039/C1PY90029C

You might also like

Compound Q&A

What industries use 4-(4-tert-Butylphenyl)-1H-pyrazol-3-amine (CAS: 1015845-73-4)?

4-(4-tert-Butylphenyl)-1H-pyrazol-3-amine finds applications in various industri...

1015845-73-44-(4-tert-Butylpheny...
Compound Q&A

What industries use H3TATAB (CAS: 63557-10-8)?

H3TATAB is used in the pharmaceutical industry for the synthesis of certain orga...

63557-10-8H3TATAB
Compound Q&A

What are the main uses of 1-Ethyl-3-fluorobenzene (CAS: 696-39-9)?

1-Ethyl-3-fluorobenzene (CAS: 696-39-9) is primarily used as a precursor in the ...

696-39-91-Ethyl-3-fluorobenz...
Compound Q&A

What are the main uses of 1-(tert-Butoxycarbonyl)-4-(4-methoxyphenyl)pyrrolidine-3-carboxylic acid (CAS: 851484-94-1)?

1-(tert-Butoxycarbonyl)-4-(4-methoxyphenyl)pyrrolidine-3-carboxylic acid is prim...

851484-94-11-(tert-Butoxycarbon...
Compound Q&A

What are the physical and chemical properties of 1-Cyclobutyl-4-piperidinone (CAS: 359880-05-0)?

1-Cyclobutyl-4-piperidinone (CAS: 359880-05-0) is a colorless or white crystalli...

359880-05-01-Cyclobutyl-4-piper...
Compound Q&A

What is Pyridine-2,6-dicarboxylic acid mono-tert-butyl ester (CAS: 575433-76-0)?

Pyridine-2,6-dicarboxylic acid mono-tert-butyl ester (CAS: 575433-76-0) is a che...

575433-76-0Pyridine-2,6-dicarbo...
Compound Q&A

What is the market or research trend for 2,3-Difluorophenylalanine (CAS: 236754-62-4)?

The market for 2,3-Difluorophenylalanine (CAS: 236754-62-4) is growing with incr...

236754-62-42,3-Difluorophenylal...
Compound Q&A

How is (2-Hydroxy-1-naphthyl)boronic acid (CAS: 898257-48-2) typically synthesized?

(2-Hydroxy-1-naphthyl)boronic acid can be synthesized through the reduction of 2...

898257-48-2(2-Hydroxy-1-naphthy...
1315351-28-0tert-Butyl (5-bromo-...
Compound Q&A

Are there alternatives to 5,7-Dihydroxy-4-oxo-2-(3,4,5-trihydroxyphenyl)-4H-chromen-3-yl beta-D-glucopyranoside (CAS: 19833-12-6) in synthesis?

While 5,7-Dihydroxy-4-oxo-2-(3,4,5-trihydroxyphenyl)-4H-chromen-3-yl beta-D-gluc...

19833-12-65,7-Dihydroxy-4-oxo-...

Source Journal

New Journal of Chemistry

New Journal of Chemistry
CiteScore: 5.3
Self-citation Rate: 3.7%
Articles per Year: 2153

NJC (New Journal of Chemistry) is a broad-based primary journal encompassing all branches of chemistry and its sub-disciplines. It contains full research articles, communications, perspectives and focus articles. This well-established journal, owned by the Centre National de la Recherche Scientifique (CNRS) of France, has been co-published with the Royal Society of Chemistry since January 1998. NJC is the forum for the publication of high-quality, original and significant work that opens new directions in chemistry or other scientific disciplines. In addition to having a significant chemical component, work published in NJC must demonstrate that it will have an impact on areas of research other than that of the reported work.

Recommended Suppliers

Disclaimer
This page provides academic journal information for reference and research purposes only. We are not affiliated with any journal publishers and do not handle publication submissions. For publication-related inquiries, please contact the respective journal publishers directly.
If you notice any inaccuracies in the information displayed, please contact us at support@chemtradehub.com. We will promptly review and address your concerns.