TABLE 6.12 Continued
Maximum Te mperature
Chemical
8 F
8 C
Ethylene glycol
80
27
Formaldehyde, dil.
80
27
Formaldehyde, 37%
80
27
Formic acid, 10–85%
80
27
Glycerine
80
27
Hydrochloric acid, dil.
80
27
Hydrochloric acid, 20%
XX
Hydrochloric acid, 35%
XX
Hydrochloric acid, 38%
XX
Hydrochloric acid, 50%
XX
Hydrofluoric acid, dil.
XX
Hydrofluoric acid, 30%
XX
Hydrofluoric acid, 40%
XX
Hydrofluoric acid, 50%
XX
Hydrofluoric acid, 70%
XX
Hydrofluoric acid, 100%
XX
Hydrogen
80
27
Hydrogen sulfide, dry
80
27
Lactic acid
80
27
Methyl ethyl ketone
80
27
Methylene chlorideX
X
Mineral oil
80
27
Muriatic acid
XX
Nitric acid
XX
Nitrobenzene
XX
Ozone
80
27
Phenol
XX
Potassium dichromate, 30%
80
27
Potassium hydroxide
80
27
Pyridine
80
27
Soap solutions
80
27
Sodium chloride
80
27
Sodium hydroxide, all conc.
80
27
Stannousc hloride, 15%
80
27
Stearic acid
80
27
Sulfuric acid, all conc.
XX
Toluene
80
27
Water,demineralized1 60
71
Water,distilled
160
71
Water,salt
160
71
Water,sea
160
71
Xylene
80
27
Zinc chloride
80
27
The chemicalslisted are in the purestate or in asaturated solution unless otherwise indicated.
Compatibility is shown to the maximum allowable temperaturef or which data is available.
Incompatibility is shown by an X. Ab lank space indicates that data is unavailable.
Source:F romP .A. Schweitzer.2 004. Corrosion Resistance Ta bles,V ols. 1–4, 5th ed., New York:
Marcel Dekker.
Corrosion of Linings and Coatings
330
CAT8247—CHAPTER 6—6/10/2006—12:29—SRIDHAR—XML MODEL B–pp. 287–402
Précédent

- 347/570

Suivant