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Page 32
depth 162 near а a Accordingly , the concentrations of dissolved oxygen the bottom and the surface of the Atlantic Ocean are quite similar . However in the bottom muds of the Black Sea , which are deficient in oxygen , a high ...
depth 162 near а a Accordingly , the concentrations of dissolved oxygen the bottom and the surface of the Atlantic Ocean are quite similar . However in the bottom muds of the Black Sea , which are deficient in oxygen , a high ...
Page 221
Decomposition of vanadium pentoxide and , as a result , formation of oxygen at the metal / metal oxide interface . b . Formation of complexes of vanadium . Increase of the temperature at the interface accelerates the reaction and ...
Decomposition of vanadium pentoxide and , as a result , formation of oxygen at the metal / metal oxide interface . b . Formation of complexes of vanadium . Increase of the temperature at the interface accelerates the reaction and ...
Page 337
The waters are now nearly H2S free but they are saturated with dissolved oxygen : 8 mg / l ( Table 5 ) . As a result of the water - steel interaction , layers of corrosion products form . These mainly hematite , limonite and geothite ...
The waters are now nearly H2S free but they are saturated with dissolved oxygen : 8 mg / l ( Table 5 ) . As a result of the water - steel interaction , layers of corrosion products form . These mainly hematite , limonite and geothite ...
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Contents
CORROSION REVIEWS | 3 |
BIOCORROSION IN WATER | 31 |
SulphateReducing Bacteria and Anaerobic Corrosion | 104 |
Copyright | |
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acid activity addition alloy anaerobic anodic applied areas Association ASTM attack bacteria behaviour biological brackish carbon steel cathodic cause chemical chloride coating composition concentration containing copper corrosion products corrosion rate Dead Sea decrease deposits Desulfovibrio determined developed dissolved effect electrochemical Engineers environment et al field Figure flow formation formed fouling fuel hydrogen important increase indicate industrial inhibitor International iron laboratory layer levels lower Marine materials measurements mechanism metal metal surface methods microbial microorganisms mild steel natural observed obtained occurs organisms oxide oxygen pipelines pipes pitting plant polarization potential present problem properties protective reaction reduce resistance Saline Waters salts samples scaling seawater shown shows soil solution species stainless steel steel structures sulfate-reducing bacteria sulfide sulphide sulphur surface Table techniques temperature tests tubing values various Videla