DocumentCode :
1777234
Title :
Quantitative characterization of the sulfur-corrosion reaction
Author :
Yong Ma ; Jingjun Wang ; Qiuqin Sun ; Yang Liu ; Zhicheng Zhou
Author_Institution :
Jiangsu Electr. Co. Res. Inst., Nanjing, China
fYear :
2014
fDate :
20-22 Oct. 2014
Firstpage :
1230
Lastpage :
1233
Abstract :
According to the statistics of power utility, a great number of large transformers and shunt reactors failed due to the corrosive sulfur in the insulating mineral oil. The issue takes places because the corrosive sulfur reacts with copper conductors and silver contacts, resulting in the formation of metal sulfides which can contaminate the insulating paper. In order to study quantitative characterization mechanism of sulfur corrosion reaction, a series of accelerated aging tests were carried out on corrosive oil sample which had operated for 6 years, and made a comparison with 25# transformer fresh oil. By testing the total sulfur concentration and oil weight of the aging transformer oil samples, the absolute content of sulfur in oil increases with the aging time, indicating that sulfur comes into the oil with insulating paper splitting, increasing the total sulfur concentration. A new criterion for quantitative characterization of the sulfur corrosion was proposed, considering polymerization of insulating paper, total sulfur concentration and oil weight. The results provide useful references for the reliable operation of power transformers.
Keywords :
ageing; chemical analysis; corrosion; polymerisation; power transformer insulation; transformer oil; accelerated aging tests; aging transformer oil samples; copper conductors; corrosive oil sample; insulating mineral oil; insulating paper; metal sulfides; oil weight; polymerization; power transformers; power utility; quantitative characterization mechanism; silver contacts; sulfur concentration; sulfur-corrosion reaction; transformer fresh oil; Aging; Copper; Corrosion; Oil insulation; Power transformer insulation; Corrosive sulfur; DP; Quantitative characterization; Total sulfur concentration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
Type :
conf
DOI :
10.1109/POWERCON.2014.6993527
Filename :
6993527
Link To Document :
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