Cargando…

Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar

The three anionic species; chloride (Cl(−)), sulfate (SO(4)(2−)), and carbonate (CO(3)(2−)), are typical chemical factors that environmentally accelerate failure of concrete structures with steel rebar through long-term exposure. Efficient removal of these deleterious anions at the early stage of pe...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Ji Young, Lee, Jimin, Lim, Minseob, Go, Gwang-Myeong, Cho, Hong-Baek, Lee, Han-Seung, Choa, Yong-Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695808/
https://www.ncbi.nlm.nih.gov/pubmed/35423558
http://dx.doi.org/10.1039/d1ra00300c
_version_ 1784619662200274944
author Park, Ji Young
Lee, Jimin
Lim, Minseob
Go, Gwang-Myeong
Cho, Hong-Baek
Lee, Han-Seung
Choa, Yong-Ho
author_facet Park, Ji Young
Lee, Jimin
Lim, Minseob
Go, Gwang-Myeong
Cho, Hong-Baek
Lee, Han-Seung
Choa, Yong-Ho
author_sort Park, Ji Young
collection PubMed
description The three anionic species; chloride (Cl(−)), sulfate (SO(4)(2−)), and carbonate (CO(3)(2−)), are typical chemical factors that environmentally accelerate failure of concrete structures with steel rebar through long-term exposure. Efficient removal of these deleterious anions at the early stage of penetration is crucial to enhance the lifespan and durability of concrete structures. Here, we synthesize CaFe-layered double hydroxide (CaFe-LDHs) by a simple one-step co-precipitation technique and structural modulation by calcination process. It is applied for the removal of Cl(−), SO(4)(2−), and CO(3)(2−) anions as well as corrosion inhibition on steel rebar in aqueous solutions. The synthesized CaFe-LDHs with phase transfer show notable improvement of removal capacity (Q(max)) toward Cl(−) and SO(4)(2−) over 3.4 times and over 5.69 times, respectably, then those of previous literatures. Furthermore, the steel rebar exposed to an aqueous solution containing the three anionic sources shows a fast corrosion rate (1876.56 × 10(−3) mm per year), which can be remarkably inhibited showing 98.83% of corrosion inhibition efficiency when it is surrounded by those CaFe-LDHs. The novel adsorption mechanisms of these CaFe-LDHs-induced crystals and corresponding corrosion protection properties are elucidated drawing on synergy of memory effects and chemical reactions.
format Online
Article
Text
id pubmed-8695808
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-86958082022-04-13 Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar Park, Ji Young Lee, Jimin Lim, Minseob Go, Gwang-Myeong Cho, Hong-Baek Lee, Han-Seung Choa, Yong-Ho RSC Adv Chemistry The three anionic species; chloride (Cl(−)), sulfate (SO(4)(2−)), and carbonate (CO(3)(2−)), are typical chemical factors that environmentally accelerate failure of concrete structures with steel rebar through long-term exposure. Efficient removal of these deleterious anions at the early stage of penetration is crucial to enhance the lifespan and durability of concrete structures. Here, we synthesize CaFe-layered double hydroxide (CaFe-LDHs) by a simple one-step co-precipitation technique and structural modulation by calcination process. It is applied for the removal of Cl(−), SO(4)(2−), and CO(3)(2−) anions as well as corrosion inhibition on steel rebar in aqueous solutions. The synthesized CaFe-LDHs with phase transfer show notable improvement of removal capacity (Q(max)) toward Cl(−) and SO(4)(2−) over 3.4 times and over 5.69 times, respectably, then those of previous literatures. Furthermore, the steel rebar exposed to an aqueous solution containing the three anionic sources shows a fast corrosion rate (1876.56 × 10(−3) mm per year), which can be remarkably inhibited showing 98.83% of corrosion inhibition efficiency when it is surrounded by those CaFe-LDHs. The novel adsorption mechanisms of these CaFe-LDHs-induced crystals and corresponding corrosion protection properties are elucidated drawing on synergy of memory effects and chemical reactions. The Royal Society of Chemistry 2021-03-16 /pmc/articles/PMC8695808/ /pubmed/35423558 http://dx.doi.org/10.1039/d1ra00300c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Park, Ji Young
Lee, Jimin
Lim, Minseob
Go, Gwang-Myeong
Cho, Hong-Baek
Lee, Han-Seung
Choa, Yong-Ho
Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title_full Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title_fullStr Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title_full_unstemmed Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title_short Structure-modulated CaFe-LDHs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
title_sort structure-modulated cafe-ldhs with superior simultaneous removal of deleterious anions and corrosion protection of steel rebar
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695808/
https://www.ncbi.nlm.nih.gov/pubmed/35423558
http://dx.doi.org/10.1039/d1ra00300c
work_keys_str_mv AT parkjiyoung structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT leejimin structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT limminseob structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT gogwangmyeong structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT chohongbaek structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT leehanseung structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar
AT choayongho structuremodulatedcafeldhswithsuperiorsimultaneousremovalofdeleteriousanionsandcorrosionprotectionofsteelrebar