Study on the Corrosion-Inhibiting Effect of Sodium Lignosulfonate Derivatives on Rebar

Reinforced concrete structures often fail prematurely due to rebar corrosion.Adding corrosion inhibitors can effectively mitigate rebar corrosion and enhance the durability of reinforced concrete structures.Lignosulfonate, as a green and efficient component, exhibits good corrosion-inhibiting proper...

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Veröffentlicht in:Cai liao bao hu 2024-08, Vol.57 (8), p.115-121
1. Verfasser: JIANG Shuaishuai, YANG Heng, ZHOU Yuxin, JI Tao, NIU Longlong, ZHANG Shiping
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Sprache:chi
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Zusammenfassung:Reinforced concrete structures often fail prematurely due to rebar corrosion.Adding corrosion inhibitors can effectively mitigate rebar corrosion and enhance the durability of reinforced concrete structures.Lignosulfonate, as a green and efficient component, exhibits good corrosion-inhibiting properties.However, its water-reducing effect is bad, and it cannot independently meet the technological demands of modern concrete technology for high fluidity and strength.In this study, sodium lignosulfonate was modified by grafting hydroxyl and carboxyl groups to synthesize sodium lignosulfonate derivatives.These derivatives were then incorporated into simulated pore solutions and cement mortar to investigate their corrosion-inhibiting effects on rebar.Results showed that, in both simulated alkaline chloride environments and mortar accelerated corrosion environments,the sodium lignosulfonate derivatives increased the charge transfer resistance and reduced the corrosion current density,demonstrating significant corros
ISSN:1001-1560
DOI:10.16577/j.issn.1001-1560.2024.0184