2020
DOI: 10.1108/acmm-12-2019-2228
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New corrosion inhibitor for 13Cr stainless steel in 20% HCl solution

Abstract: Purpose A novel compound was synthesized by cyclohexylamine, acetophenone and cinnamaldehyde through Mannich reaction in laboratory to use as corrosion inhibitor for steel in acidification process. Design/methodology/approach The corrosion and inhibition of 13Cr stainless steel in conventional acidification solution were investigated by electrochemical measurements and soaking experiments. The corrosion appearance was observed with scanning electron microscope on the whole surface of 13Cr stainless steel in … Show more

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Cited by 8 publications
(2 citation statements)
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“…According to literature review, if the displacement of corrosion potential is greater than 85mV in the positive or negative direction compared to the acid system without the addition of corrosion inhibitor, it can be determined that the corrosion inhibitor is a cathode or anode-type. If the displacement of corrosion potential is less than 85mV, the inhibitor is a mixed-type corrosion inhibitor [34]. After adding corrosion inhibitor LD-H in this study, the displacement of corrosion potential was less than 85 mV, indicating that the inhibitor LD-H is a mixed-type corrosion inhibitor.…”
Section: Resultsmentioning
confidence: 80%
“…According to literature review, if the displacement of corrosion potential is greater than 85mV in the positive or negative direction compared to the acid system without the addition of corrosion inhibitor, it can be determined that the corrosion inhibitor is a cathode or anode-type. If the displacement of corrosion potential is less than 85mV, the inhibitor is a mixed-type corrosion inhibitor [34]. After adding corrosion inhibitor LD-H in this study, the displacement of corrosion potential was less than 85 mV, indicating that the inhibitor LD-H is a mixed-type corrosion inhibitor.…”
Section: Resultsmentioning
confidence: 80%
“…After adding the corrosion inhibitor, the radius of the capacitive arc in the high frequency region increases significantly, indicating that the impedance is caused by the charge transfer at the interface between electrolyte and electrode. Increasing HCQS corrosion inhibitor concentration, the radius of capacitive arc gradually increases, showing that the charge transfer resistance increases gradually, indicating that the low carbon steel has excellent corrosion resistance (Liu et al, 2020;Yazhou Zhao et al, 2019). resistance, CPE is a constant phase angle element, and Rp is the polarization resistance, that is, the charge transfer resistance in the presence of HCQS, and its value increases with HCQS concentration (Mobin et al, 2017).…”
Section: Thermodynamic Simulationmentioning
confidence: 99%