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HAZ and Weld Metal Corrosion Behavior of SS316L in Permeate, Reject and Desalinated Water Circuits of ROSystem

Publish Year: 1386
Type: Conference paper
Language: English
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Document National Code:

INCC10_028

Index date: 22 February 2009

HAZ and Weld Metal Corrosion Behavior of SS316L in Permeate, Reject and Desalinated Water Circuits of ROSystem abstract

With the expanding use ofthe reverse osmosis desalination plants, the problems associated with weld metal decay and HAZ concentrated corrosion is being reported. The required long term 24-hour service ability and the high level dependability ofthe apparatus coupled. with excessive rates of corrosion detected, necessitates establishing the mechanisms involved. Effective parameters include high concentrations ofaggressive anions in different media comparable to the oil slurry and brine as well as susceptible phases generated during pre/post heat treatments. Following accurate chemical analysis of the raw, permeate and reject waters as well as the evaluation ofthe pipeline andweld metal materials before and after service; extensive microstructure and phase measurement studies were conducted. The results showed.that the copious ferrite furmation as a result ofchanges in equivalent carbon content could be the main cause ofthe detected corrosion. SEM and low angle XRD studies revealed the interconnected nature of scattered secondary phases. Sulfur was spotted in both different aqueous media and surface deposits, indicating the possibility of hydrogen ingress and possible HE damage.

HAZ and Weld Metal Corrosion Behavior of SS316L in Permeate, Reject and Desalinated Water Circuits of ROSystem Keywords:

SS316L , Reverse Osmosis. Delta Phase Weld Metal. Corrosion

HAZ and Weld Metal Corrosion Behavior of SS316L in Permeate, Reject and Desalinated Water Circuits of ROSystem authors

A. H. Jafari

Department ofMetallurgy, Shahid Bahonar University, Kerman, Iran,

M ayaz

Department ofMetallurgy, Shahid Bahonar University, Kerman, Iran,

A Memari

Alloy Steel Company of Iran.