Short-term exposure tests of γ-Al2O3 Sol-gel coating on X20Cr13 in artificial geothermal waters with different pH

被引:3
作者
Aristia, Gabriela [1 ]
Baessler, Ralph [1 ]
Nofz, Marianne [1 ]
Sojref, Regine [1 ]
Kohl, Anka [1 ]
机构
[1] Bundesanstalt Mat & Prufung, Unter Eichen 87, D-12205 Berlin, Germany
关键词
Al2O3; Corrosion; Coatings; Martensitic steel; HEAT-TREATMENT; GAMMA-ALUMINA; CORROSION BEHAVIOR; STEEL; HYDRATION; BOEHMITE;
D O I
10.1016/j.geothermics.2021.102193
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The suitability of an Al2O3 coating for corrosion protection on X20Cr13 was evaluated in various artificial geothermal brines, focusing on the influence of different pH (4, 6, and 8) and their chemical compositions on the coating properties. All experiments were performed in the laboratory using autoclaves at 150 degrees C and 1 MPa in deaerated condition for 1 and 7 days. Results showed that the pH of geothermal waters is the most detrimental factor in the transformation of gamma-Al2O3 and its protective abilities. Delaminations were found in the coating exposed to geothermal brines with pH 4. FTIR spectra indicated a transformation of gamma-Al2O3 to boehmite AlOOH after exposure to pH 4 and 6, and bayerite Al(OH)3 was formed after exposure to pH 8. Different crystal structures of the hydrated Al2O3 also contribute to the stability of the coatings, observed by the SEM- EDX of the surface and cross-section of coatings. This study indicated that gamma-Al2O3 sol-gel coating presents a promising aspect of corrosion protection in geothermal environment with a neutral pH.
引用
收藏
页数:9
相关论文
共 40 条
[31]   Pitting of AISI 304L stainless steel coated with nano structured sol-gel alumina coatings in chloride containing acidic environments [J].
Ruhi, G. ;
Modi, O. P. ;
Singh, I. B. .
CORROSION SCIENCE, 2009, 51 (12) :3057-3063
[32]   CORROSION BEHAVIOR OF ALUMINA CERAMICS IN CAUSTIC ALKALINE-SOLUTIONS AT HIGH-TEMPERATURES [J].
SATO, T ;
SATO, S ;
OKUWAKI, A ;
TANAKA, S .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 1991, 74 (12) :3081-3084
[33]   Corrosion of uncoated and alumina coated steel X20CrMoV12-1 in H2O-CO2-O2 and air at 600 °C [J].
Schulz, W. ;
Nofz, M. ;
Feigl, M. ;
Doerfel, I. ;
Neumann, R. Saliwan ;
Kranzmann, A. .
CORROSION SCIENCE, 2013, 68 :44-50
[34]   Formation of Anticorrosive Film for Suppressing Pitting Corrosion on Al-Mg-Si Alloy by Steam Coating [J].
Serizawa, Ai ;
Oda, Takuhiro ;
Watanabe, Kohei ;
Mori, Kotaro ;
Yokomizo, Tetsuya ;
Ishizaki, Takahiro .
COATINGS, 2018, 8 (01)
[35]   Effects of reference materials on texture coefficients determined for a CVD α-Al2O3 coating [J].
Stylianou, Rafael ;
Tkadletz, Michael ;
Schalk, Nina ;
Penoy, Marianne ;
Czettl, Christoph ;
Mitterer, Christian .
SURFACE & COATINGS TECHNOLOGY, 2019, 359 :314-322
[36]   Anti-silica fouling coatings in geothermal environments [J].
Sugama, T ;
Gawlik, K .
MATERIALS LETTERS, 2002, 57 (03) :666-673
[37]   Development of conversion coating on mild steel prior to sol gel nanostructured Al2O3 coating for enhancement of corrosion resistance [J].
Tiwari, S. K. ;
Sahu, R. K. ;
Pramanick, A. K. ;
Singh, Raghuvir .
SURFACE & COATINGS TECHNOLOGY, 2011, 205 (21-22) :4960-4967
[38]   γ-Alumina as a support for catalysts:: A review of fundamental aspects [J].
Trueba, M ;
Trasatti, SP .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2005, (17) :3393-3403
[39]  
VERDES G, 1992, EUR J MINERAL, V4, P767
[40]   Corrosion behaviour of Cr13 steel in CO2 saturated brine with high chloride concentration [J].
Yevtushenko, O. ;
Baessler, R. ;
Pfennig, A. .
MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2012, 63 (06) :517-521