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AuthorEckl, Maximiliandc.contributor.author
AuthorZaubitzer, Stevedc.contributor.author
AuthorKöntje, Carstendc.contributor.author
AuthorFarkas, Attiladc.contributor.author
AuthorKibler, Ludwig A.dc.contributor.author
AuthorJacob, Timodc.contributor.author
Date of accession2023-03-15T13:40:47Zdc.date.accessioned
Available in OPARU since2023-03-15T13:40:47Zdc.date.available
Date of first publication2019-03-29dc.date.issued
Abstractlackening belongs to the predominant technological processes in preserving steel surfaces from corrosion by generating a protective magnetite overlayer. In place of the commonly used dipping-procedure into nitrite-containing blackening baths at boiling temperatures that are far above 100 °C, here we describe a more environmentally friendly electrochemical route that operates at temperatures, even below 100 °C. After an investigation of the electrochemical behavior of steel samples in alkaline solutions at various temperatures, the customarily required bath temperature of more than 130 °C could be significantly lowered to about 80 °C by applying a DC voltage that leads to an electrode potential of 0.5−0.6 V vs. Pt. Thus, it was possible to eliminate the use of hazardous sodium nitrite economically and in an optimum way. Electrochemical quantification of the corrosion behavior of steel surfaces that were in contact with 0.1 M KCl solution was carried out by linear sweep voltammetry and by Tafel slope analysis. When comparing these data, even the corrosion rates of conventional blackened surfaces are of the same magnitude as a blank steel surface. This proves that magnetite overlayers represent rather poor protective layers in the absence of additional sealing. Moreover, cyclic voltammetry (CV), atomic force microscopy (AFM), scanning electron microscopy (SEM) and auger electron spectroscopy (AES) characterized the electrochemically blackened steel surfaces.dc.description.abstract
Languageendc.language.iso
PublisherUniversität Ulmdc.publisher
LicenseCC BY 4.0 Internationaldc.rights
Link to license texthttps://creativecommons.org/licenses/by/4.0/dc.rights.uri
KeywordSurface Modificationdc.subject
KeywordBlackening of Steeldc.subject
KeywordCorrosion Protectiondc.subject
KeywordAuger-Electron Spectroscopydc.subject
Dewey Decimal GroupDDC 540 / Chemistry & allied sciencesdc.subject.ddc
Dewey Decimal GroupDDC 620 / Engineering & allied operationsdc.subject.ddc
LCSHMagnetitedc.subject.lcsh
TitleAn electrochemical route for hot alkaline blackening of steel: a nitrite free approach.dc.title
Resource typeWissenschaftlicher Artikeldc.type
SWORD Date2022-09-06T10:19:46Zdc.date.updated
VersionpublishedVersiondc.description.version
DOIhttp://dx.doi.org/10.18725/OPARU-47781dc.identifier.doi
URNhttp://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-47857-3dc.identifier.urn
GNDAuger-Elektrondc.subject.gnd
GNDKorrosionsschutzdc.subject.gnd
FacultyFakultät für Naturwissenschaftenuulm.affiliationGeneral
InstitutionInstitut für Elektrochemieuulm.affiliationSpecific
Peer reviewjauulm.peerReview
DCMI TypeTextuulm.typeDCMI
CategoryPublikationenuulm.category
DOI of original publication10.3390/surfaces2020017dc.relation1.doi
Source - Title of sourceSurfacessource.title
Source - Place of publicationMDPIsource.publisher
Source - Volume2source.volume
Source - Issue2source.issue
Source - Year2019source.year
Source - From page216source.fromPage
Source - To page228source.toPage
Source - eISSN2571-9637source.identifier.eissn
WoS000717477800001uulm.identifier.wos
Bibliographyuulmuulm.bibliographie


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