The corrosion behavior of Ni-Mo alloys in a H sub 2 /H sub 2 O/H sub 2 S gas mixture
Journal Article
·
· Oxidation of Metals; (United States)
OSTI ID:7266950
- Univ. di Genova (Italy)
The corrosion behavior of Ni-Mo alloys containing up to 40 wt.% Mo was studied over the temperature range of 550-800 C. in a mixed gas of H{sub 2}/H{sub 2}O/H{sub 2}S. The scales formed on all alloys contained only sulfides and were double-layered. The outer scale was single-phase Ni{sub 3}S{sub 2}. Depending on the alloy composition and reaction conditions, the inner scale was: (1) a mixture of MoS{sub 2}plus Ni{sub 3}S{sub 2} with/without Ni, (2) MoS{sub 2}, or (3) MoS{sub 2} plus intermediate particles and/or double sulfide Ni{sub 2.5}Mo{sub 6}S{sub 6.7}. Neither internal oxidation nor internal sulfidation were observed at lower temperatures. Internal sulfidation was however observed at higher temperature when the scale apparently melted. The parabolic law was generally obeyed for the most concentrated alloys. For the two more-dilute alloys the kinetics were mostly linear. A decrease in the corrosion rate occurred with increasing Mo content of the alloy and may be attributed to the presence of increasing volume fractions of MoS{sub 2} and/or of a double Ni-Mo sulfide in the inner region of the scale. For the two most concentrated alloys this may also be due to the presence of a number of particles of the unsulfidized intermetallic compound, which is Ni{sub 3}Mo for Ni-30Mo, but NiMo for Ni-40Mo.
- OSTI ID:
- 7266950
- Journal Information:
- Oxidation of Metals; (United States), Journal Name: Oxidation of Metals; (United States) Vol. 37:5-6; ISSN 0030-770X; ISSN OXMEA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
01 COAL, LIGNITE, AND PEAT
010404 -- Coal
Lignite
& Peat-- Gasification
36 MATERIALS SCIENCE
360105* -- Metals & Alloys-- Corrosion & Erosion
ACTIVATION ENERGY
ALLOYS
CHALCOGENIDES
CHEMICAL COMPOSITION
CHEMICAL REACTION KINETICS
CHEMICAL REACTIONS
COAL GASIFICATION
COHERENT SCATTERING
CORROSION
CORROSION PRODUCTS
CORROSIVE EFFECTS
CRYSTAL STRUCTURE
DATA
DIAGRAMS
DIFFRACTION
ELECTRON MICROSCOPY
ELEMENTS
ENERGY
EXPERIMENTAL DATA
FLUIDS
GASES
GASIFICATION
HYDROGEN
HYDROGEN COMPOUNDS
HYDROGEN SULFIDES
INFORMATION
INTERMETALLIC COMPOUNDS
KINETICS
LAYERS
MICROSCOPY
MICROSTRUCTURE
MOLYBDENUM ALLOYS
MOLYBDENUM COMPOUNDS
MOLYBDENUM SULFIDES
NICKEL ALLOYS
NICKEL BASE ALLOYS
NICKEL COMPOUNDS
NICKEL SULFIDES
NONMETALS
NUMERICAL DATA
PHASE DIAGRAMS
QUANTITY RATIO
REACTION KINETICS
REFRACTORY METAL COMPOUNDS
SCANNING ELECTRON MICROSCOPY
SCATTERING
SPECTROSCOPY
STABILITY
SULFIDATION
SULFIDES
SULFUR COMPOUNDS
TEMPERATURE RANGE
TEMPERATURE RANGE 0400-1000 K
TEMPERATURE RANGE 1000-4000 K
THERMOCHEMICAL PROCESSES
TRANSITION ELEMENT COMPOUNDS
VAPORS
WATER VAPOR
WEIGHT
X-RAY DIFFRACTION
X-RAY SPECTROSCOPY
010404 -- Coal
Lignite
& Peat-- Gasification
36 MATERIALS SCIENCE
360105* -- Metals & Alloys-- Corrosion & Erosion
ACTIVATION ENERGY
ALLOYS
CHALCOGENIDES
CHEMICAL COMPOSITION
CHEMICAL REACTION KINETICS
CHEMICAL REACTIONS
COAL GASIFICATION
COHERENT SCATTERING
CORROSION
CORROSION PRODUCTS
CORROSIVE EFFECTS
CRYSTAL STRUCTURE
DATA
DIAGRAMS
DIFFRACTION
ELECTRON MICROSCOPY
ELEMENTS
ENERGY
EXPERIMENTAL DATA
FLUIDS
GASES
GASIFICATION
HYDROGEN
HYDROGEN COMPOUNDS
HYDROGEN SULFIDES
INFORMATION
INTERMETALLIC COMPOUNDS
KINETICS
LAYERS
MICROSCOPY
MICROSTRUCTURE
MOLYBDENUM ALLOYS
MOLYBDENUM COMPOUNDS
MOLYBDENUM SULFIDES
NICKEL ALLOYS
NICKEL BASE ALLOYS
NICKEL COMPOUNDS
NICKEL SULFIDES
NONMETALS
NUMERICAL DATA
PHASE DIAGRAMS
QUANTITY RATIO
REACTION KINETICS
REFRACTORY METAL COMPOUNDS
SCANNING ELECTRON MICROSCOPY
SCATTERING
SPECTROSCOPY
STABILITY
SULFIDATION
SULFIDES
SULFUR COMPOUNDS
TEMPERATURE RANGE
TEMPERATURE RANGE 0400-1000 K
TEMPERATURE RANGE 1000-4000 K
THERMOCHEMICAL PROCESSES
TRANSITION ELEMENT COMPOUNDS
VAPORS
WATER VAPOR
WEIGHT
X-RAY DIFFRACTION
X-RAY SPECTROSCOPY