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Inhibition for Zn Corrosion by Starch Grafted Copolymer |
WANG Yating1, WANG Kexu1, GAO Pengxiang1, LIU Ran1, ZHAO Dishun1( ), ZHAI Jianhua1, QU Guanwei2 |
1.College of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology Shijiazhuang 050000, China 2.Hebei Aohuan Adhesive Products Co. , Ltd. , Baoding 071000, China |
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Abstract Starch grafted copolymer (St-g-PAM) was prepared by grafting acrylamide monomer onto starch with ammonium persulfate sodium bisulfite as initiator, which can be used as a new "green" inhibitor. Then the inhibition effect of St-g-PAM on Zn in 1.0 mol/L HCl solution was studied by mass loss method and electrochemical techniques. The results show that St-g-PAM is a mixed inhibitor with good inhibition effect for Zn corrosion in HCl solution, while the inhibition efficiency increases with the increase of St-g-PAM concentration. However, the inhibition efficiency increases slowly when the St-g-PAM concentration exceeds 50 mg/L. At 20~50 ℃, the adsorption process of St-g-PAM on Zn sheet is consistent with Langmuir adsorption model. According to the results of potentiodynamic polarization and EIS measurements, the inhibition ability of St-g-PAM for Zn corrosion in HCl solution in the presence of St-g-PAM can be expressed in both of the decreased corrosion current density and increased charge transfer resistance values.
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Received: 18 November 2019
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Fund: National Natural Science and Foundation of China(20576026);Shijiazhuang City Science and;Technology Research and Development Plan(161070251A) |
Corresponding Authors:
ZHAO Dishun
E-mail: zhao_dsh@hebust.edu.cn
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