绿色缓蚀剂技术在工业腐蚀防护的应用
摘要
蚀剂,实现腐蚀防护;自动组装层提供均匀防护层;智能缓蚀材料根据环境变化自动调节缓蚀效果,共同提升工业
腐蚀防护能力。
关键词
全文:
PDF参考
[1]Haruna K, Saleh T A, Obot I B, et al. Cyclodextrinbased functionalized grapheme oxide as an effective corrosion
inhibitor for carbon steel in acidic environment[J]. Progress in
Organic Coatings, 2019, 128: 157-167.
[2]Bashir S, Singh G, Kumar A. Shatavari (Asparagus
Racemosus) as Green Corrosion Inhibitor of Aluminium in
Acidic Medium[J]. Journal of Materials and Environmental
Sciences, 2017, 12(8): 84-91.
[3]刘云霞,文家新.绿色缓蚀剂对金属铝的缓蚀性
能研究进展 [J].广州化工,2019,47(12):27-28.
[4]Bashir S, Singh G, Kumar A. Shatavari (Asparagus
Racemosus) as Green Corrosion Inhibitor of Aluminium in
Acidic Medium[J]. Journal of Materials and Environmental
Sciences, 2017, 12(8): 84-91.
[5]Feng L, Zhang S T, Lu Y, et al. Synergistic corrosion
inhibition effect of thiazolyl-based ionicliquids between
anions and cations for copper in HCl solution[J]. Applied
Surface Science, 2019, 483: 901-911.
[6]Zhang K G, Yang W Z, Chen Y, et al. Enhanced
inhibitive performance of fluoro-substituted imidazoliumbased ionic liquid for mild steel corrosion in hydrochloric acid
at elevated temperature[J]. Journal of Materials Science, 2018,
53(20): 14666-14680.
[7]Cao S Y, Liu D, Zhang P, et al. Green Brönsted acid
ionic liquids as novel corrosion inhibitors for carbon steel in
acidic medium[J]. Scientific Reports, 2017,7(1): 1-14.
[8]Wei Z F, Chen X, Duan J, et al. Branched chain
versus straight chain fluorinated surfactant: A comparative
study of their anticorrosion performance on carbon steel[J].
Journal of molecular liquids, 2019, 280: 327-333.
[9]Nuer M, Duan J, Wei Z, et al. Fluorocarbonhydrocarbon hybrid cationic surfactants: Synthesis, surfaceactivity properties and anti-corrosion performance[J]. Journal
of Molecular Liquids, 2020, 306: 112897.
[10]M. EHTESHAMZADE, T. SHAHRABI, M.G.
HOSSEINI. Inhibition of copper corrosion by self-assembled
films of new Schiff bases and their modification with alkanethiols
in aqueous medium[J]. Applied Surface Science: A Journal
Devoted to the Properties of Interfaces in Relation to the
Synthesis and Behaviour of Materials,2006,252(8):2949-2959.
[11]张镇川,陈友媛,宋芳,等.植酸对咸水介质中
316L不锈钢耐蚀性的影响 [J].材料导报,2016,30(6):
106-110,140.
[ 1 2 ] Z H A O , W E I J I E , G O T H E L I D , M A T S ,
HOSSEINPOUR, SAMAN, et al. The nature of selfassembled octadecylphosphonic acid (ODPA) layers on
copper substrates[J]. Journal of Colloid and Interface
Science,2021,581(Pt.B):816-825.
[13]HU, YONGMAO, LI, RUHENG, ZHANG,
XUEQING, et al. Aluminium films roughened by hot water
treatment and derivatized by fluoroalkyl phosphonic acid:
wettability studies[J]. Surface Engineering,2020,36(5/6):589-600.
[14]郭孟莹.自修复涂料用微胶囊的制备及性能表征
[D].黑龙江:哈尔滨工程大学,2018.
[15]莫师.铜的防腐蚀技术:香料类绿色缓蚀剂及
pH刺激响应型自修复涂层 [D].重庆:西南大学,2017.
[16]IZADI, M., SHAHRABI, T., RAMEZANZADEH,
B.. Synthesis and characterization of an advanced layer-bylayer assembled Fe3O4/polyaniline nanoreservoir filled with
Nettle extract as a green corrosion protective system[J]. Journal
of industrial and engineering chemistry,2018,57263-274.
[17]Luo Xiaohu, Pan Xinyu, Yuan Song, Du Shuo, Liu
Yali*. Corrosion inhibition of mild steel in simulated seawater
solution by a green eco-friendly mixture of glucomannan
(GL) and bisquaternary ammonium salt (BQAS). Corrosion
Science, 2017, 125: 139-151.
[18]李俐枝,彭云超,李丰渟,等.哌嗪类曼尼希
碱壳聚糖缓蚀剂的制备及缓蚀性能研究 [J].表面技术,
2022,51(5):139-147,157.
[19]魏 佳 煜, 邱 诗 惠, 赵 海 超, 等.聚 左 旋 多
巴-SiO2复合材料在 1M HCl中的缓蚀作用 [J].中国表面
工程,2022,35(2):55-62.
[20]Elshafe A. Gad • Ashraf M. El‑Shamy, Mechanism
of Corrosion and Microbial Corrosion of 1,3-Dibutyl
Thiourea Using the Quantum Chemical Calculations Journal
of Bio-andTribo-Corrosion,2198-4220, Volume 8, Issue 3,
2022, Pages 1-12.
DOI: http://dx.doi.org/10.12361/2661-3654-06-11-140627
Refbacks
- 当前没有refback。