TABLE 4.17 Continued
Maximum Te mperature
Chemical
8 F
8 C
Nitric acid, 20%
b
400
204
Nitric acid. 70%
b
400
204
Nitric acid, anhydrous
b
400
204
Nitrous acid, conc.
400
204
Oleum
400
204
Perchloric acid, 10%
400
204
Perchloric acid, 70%
400
204
Phenol
b
400
204
Phosphoric acid, 50–80%
400
204
Picric acid
400
204
Potassium bromide, 30%
400
204
Salicylicacid
400
204
Silver bromide, 10%
400
204
Sodium carbonate4 00
204
Sodium chloride4 00
204
Sodium hydroxide, 10%
a
400
204
Sodium hydroxide, 50%
400
204
Sodium hydroxide, conc.
400
204
Sodium hypochlorite, 20%
400
204
Sodium hypochlorite, conc.
400
204
Sodium sulfide, to 50%
400
204
Stannic chloride
400
204
Stannous chloride
400
204
Sulfuric acid, 10%
400
204
Sulfuric acid, 50%
400
204
Sulfuric acid, 70%
400
204
Sulfuric acid, 90%
400
204
Sulfuric acid, 98%
400
204
Sulfuric acid, 100%
400
204
Sulfuric acid, fuming
b
400
204
Sulfurous acid
400
204
Thionylc hloride
b
400
204
Toluene
b
400
204
Trichloroacetic acid
400
204
White liquor
400
204
Zinc chloride
c
400
204
The chemicals listed are in the pures tate or in as aturated solution unless
otherwise indicated. Compatibility is shown to the maximum allowable
temperature for which data is available. Incompatibilityisshown by an X.
Ablank space indicates that the data is unavailable.
a Material will be absorbed.
b Material will permeate.
c Material will cause stress cracking.
Source:F rom P. A. Schweitzer.2004. Corrosion Resistance Ta bles,V ols. 1–4, 5th
ed., New York: Marcel Dekker.
Liquid-Applied Linings
133
CAT8247—CHAPTER 4—17/10/2006—14:35—SRIDHAR—XML MODEL B–pp. 69–174
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