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Type
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Conference
Paper
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|
Author
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Shaoqiang
Guo
|
|
Author
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Fernando
Farelas
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|
URL
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|
|
Volume
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Paper
No. 7891
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Date
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2016
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|
Conference
Name
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NACE
Corrosion 2016 Conference & Expo
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Abstract
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In wet
gas pipelines , Monoethylene glycol (MEG) is a widely used hydrate inhibitor
which has been shown to decrease the corrosion rate of carbon steel in CO 2
environments. In a top of the line corrosion (TLC) situation, MEG is also
known to affect both water condensation and TLC rates. However, the extent of
its effect on corrosion depends mainly on the concentration of ME G present
in the condensed water. Until now, rather scarce and conflicting information
exist on this topic. This work presents a mechanistic water/MEG co
-condensation model in the presence of a noncondensing gas (CO 2 ).
The model predictions of condensation rate and MEG concentration in the condensing phase are compared with loop test results , showing good agreement. The results show that an increase of the MEG content at the bottom of the line decreases the water condensation rate and increa ses the MEG content of the condensing phase at the top of the line. However, this effect is not significant unless the MEG content in the bulk liquid phase is higher than 70 -80 wt% . Long term corrosion experiment s are also presented showing that the injection of 50 wt% and 70 wt% MEG at the bottom have a minim al effect on both general and localized corrosion rates . On the other hand, the presence of 90 wt% MEG at the bottom of the line decreased the top of the line corrosion rate significantly due to a shar p decrease in condensation rate and a significant increase in MEG content in the condensing phase. |
Sunday, September 4, 2016
Effect of monoethylene glycol on sweet top of the line corrosion
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