Cargando…

Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment

To provide a theoretical basis for the design of super austenitic stainless steel used in flue gas desulfurization environment, by changing the Cu content in 00Cr20Ni18Mo6CuN super austenitic stainless steel to explore the influence of Cu on its corrosion resistance, by electrochemical methods, XPS...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Bingbing, Lang, Yuping, Chen, Haitao, Mi, ZhiShan, Sun, Xu, Qu, Huapeng, Feng, Hanqiu, Tian, Zhiling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9984440/
https://www.ncbi.nlm.nih.gov/pubmed/36879758
http://dx.doi.org/10.1016/j.heliyon.2023.e13652
_version_ 1784900746029826048
author Li, Bingbing
Lang, Yuping
Chen, Haitao
Mi, ZhiShan
Sun, Xu
Qu, Huapeng
Feng, Hanqiu
Tian, Zhiling
author_facet Li, Bingbing
Lang, Yuping
Chen, Haitao
Mi, ZhiShan
Sun, Xu
Qu, Huapeng
Feng, Hanqiu
Tian, Zhiling
author_sort Li, Bingbing
collection PubMed
description To provide a theoretical basis for the design of super austenitic stainless steel used in flue gas desulfurization environment, by changing the Cu content in 00Cr20Ni18Mo6CuN super austenitic stainless steel to explore the influence of Cu on its corrosion resistance, by electrochemical methods, XPS and first-principle computational simulations. The results show that Cu promotes the selective dissolution of Fe, Cr and Mo in stainless steel, and the copper content changes the proportion of compounds in the passive film, as well as its surface quality, resistance and defect density. The addition of one Cu atom increases the adsorption energy and work function of NH(3) on Cr(2)O(3) surface, reduces the charge transfer and hybridization. However, when the Cu content exceeds 1 wt%, the surface of the passive film is loose and has many defects. The appearance of oxygen vacancy and two Cu atoms leads to the decrease of adsorption energy and work function, and enhances the charge transfer and hybrid effect. The optimal Cu content is obtained through research, which not only improves the corrosion resistance of 00Cr20Ni18Mo6CuN super austenitic stainless steel in flue gas desulfurization environment, prolonging the service life of 00Cr20Ni18Mo6CuN super austenitic stainless steel, but also has practical application value.
format Online
Article
Text
id pubmed-9984440
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-99844402023-03-05 Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment Li, Bingbing Lang, Yuping Chen, Haitao Mi, ZhiShan Sun, Xu Qu, Huapeng Feng, Hanqiu Tian, Zhiling Heliyon Research Article To provide a theoretical basis for the design of super austenitic stainless steel used in flue gas desulfurization environment, by changing the Cu content in 00Cr20Ni18Mo6CuN super austenitic stainless steel to explore the influence of Cu on its corrosion resistance, by electrochemical methods, XPS and first-principle computational simulations. The results show that Cu promotes the selective dissolution of Fe, Cr and Mo in stainless steel, and the copper content changes the proportion of compounds in the passive film, as well as its surface quality, resistance and defect density. The addition of one Cu atom increases the adsorption energy and work function of NH(3) on Cr(2)O(3) surface, reduces the charge transfer and hybridization. However, when the Cu content exceeds 1 wt%, the surface of the passive film is loose and has many defects. The appearance of oxygen vacancy and two Cu atoms leads to the decrease of adsorption energy and work function, and enhances the charge transfer and hybrid effect. The optimal Cu content is obtained through research, which not only improves the corrosion resistance of 00Cr20Ni18Mo6CuN super austenitic stainless steel in flue gas desulfurization environment, prolonging the service life of 00Cr20Ni18Mo6CuN super austenitic stainless steel, but also has practical application value. Elsevier 2023-02-10 /pmc/articles/PMC9984440/ /pubmed/36879758 http://dx.doi.org/10.1016/j.heliyon.2023.e13652 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Li, Bingbing
Lang, Yuping
Chen, Haitao
Mi, ZhiShan
Sun, Xu
Qu, Huapeng
Feng, Hanqiu
Tian, Zhiling
Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title_full Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title_fullStr Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title_full_unstemmed Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title_short Copper content effects on passive film of modified 00Cr20Ni18Mo6CuN super austenitic stainless steels in acidic environment
title_sort copper content effects on passive film of modified 00cr20ni18mo6cun super austenitic stainless steels in acidic environment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9984440/
https://www.ncbi.nlm.nih.gov/pubmed/36879758
http://dx.doi.org/10.1016/j.heliyon.2023.e13652
work_keys_str_mv AT libingbing coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT langyuping coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT chenhaitao coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT mizhishan coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT sunxu coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT quhuapeng coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT fenghanqiu coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment
AT tianzhiling coppercontenteffectsonpassivefilmofmodified00cr20ni18mo6cunsuperausteniticstainlesssteelsinacidicenvironment