• 中国科技论文统计源期刊
  • 中文核心期刊
  • CSCD中国科学引文数据库来源期刊
  • Scopus数据库全文收录期刊
  • 中国学术期刊综合评价数据库来源期刊
Advanced Search
JIA Minghao, HU Pei, HU Gang. Stabilization and Protection of Catechins on Simulated Archaeological Iron[J]. Corrosion & Protection, 2022, 43(1): 1-7. DOI: 10.11973/fsyfh-202201001
Citation: JIA Minghao, HU Pei, HU Gang. Stabilization and Protection of Catechins on Simulated Archaeological Iron[J]. Corrosion & Protection, 2022, 43(1): 1-7. DOI: 10.11973/fsyfh-202201001

Stabilization and Protection of Catechins on Simulated Archaeological Iron

More Information
  • Received Date: August 16, 2021
  • To effectively select natural corrosion inhibitors for archaeological iron objects, Fourier transform infrared spectroscopy, X-ray diffraction, electrochemical impedance spectroscopy, polarization curves and scanning electron microscopy were used to study the corrosion inhibition and protection effect of catechin in 3.5 g/L NaCl solution for naked and rusted hypereutectic white cast iron. The results show that catechin was a corrosion inhibitor that mainly inhibited anodic reaction. Catechin had both physical and chemical adsorption with the naked cast iron, and reacted with Fe3+ to form black amorphous ferric catechin which could effectively inhibit the corrosion in NaCl solution. Catechin reacted with the unstable γ-FeOOH in the rust layer, consuming and transforming into black amorphous product depositing in the rust layer. The product could make the original rust layer denser, with the ability to block the transfer of charges and ions more effectively between rusted cast iron and corrosive solution, and enhanced the protective effect of the internal metal. Catechin can be used as a natural corrosion inhibitor and stabilizer in the protection of ancient iron cultural heritage, and its application prospects will be broad.
  • [1]
    顾来沅. 缓蚀剂在金属文物保护中的应用研究进展[J]. 材料保护,2016,49(S1):123-126.
    [2]
    夏琦兴,杜静楠,杨欢,等. 铁质文物的腐蚀机制及防护策略[J]. 材料保护,2020,53(12):101-105.
    [3]
    胡钢,胡沛. 一种复合缓蚀剂对铸铁材料带锈缓蚀保护作用研究[J]. 广东化工,2016,43(13):1-2,19.
    [4]
    滕飞,胡钢. WB-1复合气相缓蚀剂对清代带锈铁质钱币文物的保护研究[J]. 文物保护与考古科学,2016,28(1):18-23.
    [5]
    陈松松,林元华,SINGH Ambrish,等. 苦丁茶提取物对N80钢的缓蚀作用[J]. 腐蚀与防护,2017,38(10):800-805,811.
    [6]
    史妮,梅其政. 茶籽壳提取物复配酸洗缓蚀剂的研制及电化学性能[J]. 电镀与涂饰,2020,39(24):1710-1717.
    [7]
    ALSABAGH A M,MIGAHED M A,ABDELRAOUF M,et al. Utilization of green tea as environmentally friendly corrosion inhibitor for carbon steel in acidic media[J]. International Journal of Electrochemical Science,2015,10(2):1855-1872.
    [8]
    王福谆. 我国古代大型铸铜和铸铁文物的发展与现况[J]. 铸造设备与工艺,2016(1):59-66.
    [9]
    中国古代铸铁技术[J]. 西部资源,2013(6):80.
    [10]
    王志豪,王前进. 浅析中国古代冶铁技术[J]. 中国铸造装备与技术,2018,53(5):11-14.
    [11]
    KALAI SELVI I,NAGARAJAN S. Separation of catechins from green tea (Camellia sinensis L.) by microwave assisted acetylation,evaluation of antioxidant potential of individual components and spectroscopic analysis[J]. LWT,2018,91:391-397.
    [12]
    RAHIM M A,BJÖRNMALM M,BERTLEFF-ZIESCHANG N,et al. Rust-mediated continuous assembly of metal-phenolic networks[J]. Advanced Materials,2017,29(22):1606717.
    [13]
    REITZER F,ALLAIS M,BALL V,et al. Polyphenols at interfaces[J].Advances in Colloid and Interface Science,2018,257:31-41.
    [14]
    ZHANG R N,LI L,LIU J X. Synthesis and characterization of ferric tannate as a novel porous adsorptive-catalyst for nitrogen removal from wastewater[J]. RSC Advances,2015,5(51):40785-40791.
    [15]
    刘晶. 金属离子在典型铁氧化物表面的吸附、氧化/还原及结晶生长研究[D]. 北京:中国科学院大学(中国科学院广州地球化学研究所),2019.

Catalog

    Article views (7) PDF downloads (9) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return