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Published in: Arabian Journal for Science and Engineering 5/2022

20-04-2021 | Research Article-Chemical Engineering

Designing a Feasible Phenol Destruction Process Using LaM1−xCuxO3 (M = Co, Cr, Fe) Perovskites as Heterogeneous Fenton-Like Catalysts

Authors: Anusha Jain, Sunder Lal Pal, Yash Jaiswal, Sanjay Srivastava

Published in: Arabian Journal for Science and Engineering | Issue 5/2022

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Abstract

Phenol is one of the most toxic and carcinogenic oxygenated organic compounds, which is often found in wastewater of various industries. Therefore, design of efficient phenol degradation method becomes crucial. B-site substitution into perovskite structure generates synergistic effects in its structure which enhances catalytic properties. However, to effectively design an economically feasible process, substitution of cheap and catalytically active B-site metal elements becomes significant. In view of this, three perovskite-type oxides with chemical formula LaM0.5Cu0.5O3 (M = Co, Cr, Fe) were synthesized and characterized in this work. Furthermore, their application in a feasible phenol oxidation process has been reported. The XRD and XPS analysis results demonstrate successful B-site substitution of transition metal elements in perovskite structure. Remarkably high BET surface areas were obtained for all three catalysts (32–47 m2/g). The results of catalytic activity tests constructively reveal that LaCo0.5Cu0.5O3 is superior when compared with the other two catalysts. Highest TOC removal and best catalytic performance was exhibited by all the catalysts at 90 ℃, atmospheric pressure, 1 g/l catalyst loading and 700 rpm stirring speed. The reaction was successfully completed with hydrogen peroxide concentration less than the stoichiometric amount required for the reaction. The order of catalytic activity is LaCo0.5Cu0.5O3 > LaCr0.5Cu0.5O3 > LaFe0.5Cu0.5O3. This order of catalytic activity of the prepared catalysts can be attributed to high amount of lattice oxygen provided by LaCo0.5Cu0.5O3 catalyst, and the same conclusion can be drawn from the XPS analysis. This suggests that excellent catalytic performance can be attained at low costs for phenol oxidation process.

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Appendix
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Literature
6.
go back to reference Autenrieth, R.-L.; Bonner, J.S.; Akgerman, A.; Okaygun, M.; Mccreary, E.M.: Biodegradation of phenolic wastes* (1991) Autenrieth, R.-L.; Bonner, J.S.; Akgerman, A.; Okaygun, M.; Mccreary, E.M.: Biodegradation of phenolic wastes* (1991)
14.
go back to reference Tanaka, H.; Misono, M.: PII: S1359–0286(01)00035–3. (2001) Tanaka, H.; Misono, M.: PII: S1359–0286(01)00035–3. (2001)
23.
26.
go back to reference Singh, C.; Rakesh, M.: Oxidation of phenol using LaMnO3 perovskite, TiO2, H2O2 and UV radiation. Indian J. Chem. Technol. 17, 451–454 (2010) Singh, C.; Rakesh, M.: Oxidation of phenol using LaMnO3 perovskite, TiO2, H2O2 and UV radiation. Indian J. Chem. Technol. 17, 451–454 (2010)
36.
go back to reference Zhou, C.; Liu, X.; Wu, C.; Wen, Y.; Xue, Y.; Chen, R.; Zhang, Z.; Shan, B.; Yin, H.; Wang, W.G.: NO oxidation catalysis on copper doped hexagonal phase LaCoO3: a combined experimental and theoretical study. Phys. Chem. Chem. Phys. 16, 5106–5112 (2014). https://doi.org/10.1039/c3cp54963aCrossRef Zhou, C.; Liu, X.; Wu, C.; Wen, Y.; Xue, Y.; Chen, R.; Zhang, Z.; Shan, B.; Yin, H.; Wang, W.G.: NO oxidation catalysis on copper doped hexagonal phase LaCoO3: a combined experimental and theoretical study. Phys. Chem. Chem. Phys. 16, 5106–5112 (2014). https://​doi.​org/​10.​1039/​c3cp54963aCrossRef
37.
go back to reference Abdolrahmani, M., Abdolrahmani, M., Parvari, M., Habibpoor, M.: Methane combustion and CO oxidation on Ag-doped LaMn 0.8 Cu 0.2 O 3±δ mixed oxides prepared by Pechini and sol-gel methods the role of water in heterogeneous catalysis view project control of Brønsted acid site of HZSM-5 zeolite by chemical washing using (2012) Abdolrahmani, M., Abdolrahmani, M., Parvari, M., Habibpoor, M.: Methane combustion and CO oxidation on Ag-doped LaMn 0.8 Cu 0.2 O 3±δ mixed oxides prepared by Pechini and sol-gel methods the role of water in heterogeneous catalysis view project control of Brønsted acid site of HZSM-5 zeolite by chemical washing using (2012)
41.
51.
go back to reference Porta, P.; De Rossi, S.; Faticanti, M.; Minelli, G.; Pettiti, I.; Lisi, L.; Turco, M.: Article ID jssc. (1999) Porta, P.; De Rossi, S.; Faticanti, M.; Minelli, G.; Pettiti, I.; Lisi, L.; Turco, M.: Article ID jssc. (1999)
53.
go back to reference Branch, T.N.: Experimental and kinetic study of CO oxidation over. 15, 91–102 (2018) Branch, T.N.: Experimental and kinetic study of CO oxidation over. 15, 91–102 (2018)
57.
go back to reference Jana, A.; Roy, O.; Ravuru, S.S.; De, S.: Tuning of graphene oxide intercalation in magnesium aluminium layered double hydroxide and their immobilization in polyacrylonitrile beads by single step mussel inspired phase inversion: a super adsorbent for lead. Chem. Eng. J. 391, 123587 (2020). https://doi.org/10.1016/j.cej.2019.123587CrossRef Jana, A.; Roy, O.; Ravuru, S.S.; De, S.: Tuning of graphene oxide intercalation in magnesium aluminium layered double hydroxide and their immobilization in polyacrylonitrile beads by single step mussel inspired phase inversion: a super adsorbent for lead. Chem. Eng. J. 391, 123587 (2020). https://​doi.​org/​10.​1016/​j.​cej.​2019.​123587CrossRef
65.
66.
go back to reference Jin, F.; Endo, T.; Takizawa, H.; Shimada, M.: Sdarticle-30.Pdf (1994) Jin, F.; Endo, T.; Takizawa, H.; Shimada, M.: Sdarticle-30.Pdf (1994)
70.
go back to reference Belessi, V.C.; Ladavos, A.K.; Pomonis, P.J.: Methane combustion on La–Sr–Ce–Fe–O mixed oxides: bifunctional synergistic action of SrFeO. Appl. Catal. 31, 183–194 (2001)CrossRef Belessi, V.C.; Ladavos, A.K.; Pomonis, P.J.: Methane combustion on La–Sr–Ce–Fe–O mixed oxides: bifunctional synergistic action of SrFeO. Appl. Catal. 31, 183–194 (2001)CrossRef
86.
go back to reference Lado Ribeiro, A.R.; Moreira, N.F.F.; Li Puma, G.; Silva, A.M.T.: Impact of water matrix on the removal of micropollutants by advanced oxidation technologies, (2019) Lado Ribeiro, A.R.; Moreira, N.F.F.; Li Puma, G.; Silva, A.M.T.: Impact of water matrix on the removal of micropollutants by advanced oxidation technologies, (2019)
Metadata
Title
Designing a Feasible Phenol Destruction Process Using LaM1−xCuxO3 (M = Co, Cr, Fe) Perovskites as Heterogeneous Fenton-Like Catalysts
Authors
Anusha Jain
Sunder Lal Pal
Yash Jaiswal
Sanjay Srivastava
Publication date
20-04-2021
Publisher
Springer Berlin Heidelberg
Published in
Arabian Journal for Science and Engineering / Issue 5/2022
Print ISSN: 2193-567X
Electronic ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-021-05655-y

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