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聚(1-乙烯基-3-烷基咪唑六氟磷酸盐)对硫酸中铝腐蚀的抑制作用

The Inhibition of Aluminum Corrosion in Sulfuric Acid by Poly(1-vinyl-3-alkyl-imidazolium Hexafluorophosphate).

作者信息

Arellanes-Lozada Paulina, Olivares-Xometl Octavio, Guzmán-Lucero Diego, Likhanova Natalya V, Domínguez-Aguilar Marco A, Lijanova Irina V, Arce-Estrada Elsa

机构信息

Instituto Politécnico Nacional, ESIQIE, Departamento de Metalurgia y Materiales, Av. Instituto Politécnico Nacional S/N, Col. Lindavista, México D.F. 07300, Mexico.

Facultad de Ingeniería Química, Benemérita Universidad Autónoma de Puebla, Av. San Claudio, Ciudad Universitaria. Col. San Manuel, Puebla, Puebla 72570, Mexico.

出版信息

Materials (Basel). 2014 Aug 7;7(8):5711-5734. doi: 10.3390/ma7085711.

Abstract

Compounds of poly(ionic liquid)s (PILs), derived from imidazole with different alkylic chain lengths located in the third position of the imidazolium ring (poly(1-vinyl-3-dodecyl-imidazolium) (PImC), poly(1-vinyl-3-octylimidazolium) (PImC₈) and poly(1-vinyl-3-butylimidazolium) (PImC₄) hexafluorophosphate) were synthesized. These compounds were tested as corrosion inhibitors on aluminum alloy AA6061 in diluted sulfuric acid (0.1-1 M H₂SO₄) by weight loss tests, polarization resistance measurements and inductively coupled plasma optical emission spectroscopy. Langmuir's isotherms suggested film formation on bare alloy while standard free energy indicated inhibition by a physisorption process. However, compound efficiencies as inhibitors ranked low (PImC > PImC₈ > PImC₄) to reach 61% for PImC in highly diluted acidic solution. Apparently, the high mobility of sulfates favored their adsorption in comparison to PILs. The surface film displayed general corrosion, and pitting occurred as a consequence of PILs' partial inhibition along with a continuous dissolution of defective patchy film on formation. A slight improvement in efficiency was displayed by compounds having high molecular weight and a long alkyl chain, as a consequence of steric hindrance and PIL interactions.

摘要

合成了聚(离子液体)(PILs)化合物,其由咪唑衍生而来,咪唑环第三位具有不同烷基链长度(聚(1 - 乙烯基 - 3 - 十二烷基 - 咪唑鎓)(PImC)、聚(1 - 乙烯基 - 3 - 辛基咪唑鎓)(PImC₈)和聚(1 - 乙烯基 - 3 - 丁基咪唑鎓)(PImC₄)六氟磷酸盐)。通过失重试验、极化电阻测量和电感耦合等离子体发射光谱法,在稀硫酸(0.1 - 1 M H₂SO₄)中对这些化合物作为铝合金AA6061的缓蚀剂进行了测试。朗缪尔等温线表明在裸合金上形成了膜,而标准自由能表明通过物理吸附过程产生抑制作用。然而,作为缓蚀剂的化合物效率较低(PImC > PImC₈ > PImC₄),在高度稀释的酸性溶液中PImC的效率达到61%。显然,与PILs相比,硫酸盐的高迁移率有利于它们的吸附。表面膜表现出全面腐蚀,由于PILs的部分抑制以及形成的有缺陷的片状膜的持续溶解,出现了点蚀。由于空间位阻和PIL相互作用,具有高分子量和长烷基链的化合物显示出效率略有提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f78/5456171/3f39c20ec07f/materials-07-05711-g001.jpg

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