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Comparative Study on Corrosion Protection of Reinforcing Steel by Using Amino Alcohol and Lithium Nitrite Inhibitors
by
Lee, Han-Seung
, Ismail, Mohamed
, Ryu, Hwa-Sung
, Park, Won-Jun
in
Alcohol
/ Alcohols
/ Aqueous solutions
/ Cement hydration
/ Chloride
/ Chlorides
/ Concrete
/ Corrosion inhibitors
/ Corrosion prevention
/ Corrosion tests
/ Inhibition
/ Lithium
/ Metals
/ Nitrites
/ Reinforced concrete
/ Reinforcing steels
2015
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Comparative Study on Corrosion Protection of Reinforcing Steel by Using Amino Alcohol and Lithium Nitrite Inhibitors
by
Lee, Han-Seung
, Ismail, Mohamed
, Ryu, Hwa-Sung
, Park, Won-Jun
in
Alcohol
/ Alcohols
/ Aqueous solutions
/ Cement hydration
/ Chloride
/ Chlorides
/ Concrete
/ Corrosion inhibitors
/ Corrosion prevention
/ Corrosion tests
/ Inhibition
/ Lithium
/ Metals
/ Nitrites
/ Reinforced concrete
/ Reinforcing steels
2015
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Do you wish to request the book?
Comparative Study on Corrosion Protection of Reinforcing Steel by Using Amino Alcohol and Lithium Nitrite Inhibitors
by
Lee, Han-Seung
, Ismail, Mohamed
, Ryu, Hwa-Sung
, Park, Won-Jun
in
Alcohol
/ Alcohols
/ Aqueous solutions
/ Cement hydration
/ Chloride
/ Chlorides
/ Concrete
/ Corrosion inhibitors
/ Corrosion prevention
/ Corrosion tests
/ Inhibition
/ Lithium
/ Metals
/ Nitrites
/ Reinforced concrete
/ Reinforcing steels
2015
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Comparative Study on Corrosion Protection of Reinforcing Steel by Using Amino Alcohol and Lithium Nitrite Inhibitors
Journal Article
Comparative Study on Corrosion Protection of Reinforcing Steel by Using Amino Alcohol and Lithium Nitrite Inhibitors
2015
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Overview
In this study, the ability of lithium nitrite and amino alcohol inhibitors to provide corrosion protection to reinforcing steel was investigated. Two types of specimens—reinforcing steel and a reinforced concrete prism that were exposed to chloride ion levels resembling the chloride attack environment—were prepared. An autoclave accelerated corrosion test was then conducted. The variables tested included the chloride-ion concentration and molar ratios of anti-corrosion ingredients in a CaOH2-saturated aqueous solution that simulated a cement-pore solution. A concentration of 25% was used for the lithium nitrite inhibitor LiNO2, and an 80% solution of dimethyl ethanolamine ((CH3)2NCH2CH2OH, hereinafter DMEA) was used for the amino alcohol inhibitor. The test results indicated that the lithium nitrite inhibitor displayed anti-corrosion properties at a molar ratio of inhibitor of ≥0.6; the amino alcohol inhibitor also displayed anti-corrosion properties at molar ratios of inhibitor greater than approximately 0.3.
Publisher
MDPI AG,MDPI
Subject
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