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J Chin Soc Corr Pro  2003, Vol. 23 Issue (1): 38-45     DOI:
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THE CONCENTRATION DISTRIBUTION OF H2S IN THE WASTE WATER FROM OIL PLATFORM AND ITS INFLUENCES ON THE CORROSION BEHAVIOR OF THE STEEL STRUCTURE OF PLATFORM
Jia Wang;Jiajian Chen;Xiangbo Li
中科院青岛海洋研究所
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Abstract  In order to understand the effects of hydrogen sulf ide and white deposit in discharged waste water from oil platform on the corrosi on and protection of the steel structure of W11-4 oil platform,a study was made by collecting the water samples,analyzing the concentration and distribution of hydrogen sulfide in the samples and the composition of the white deposit in the sea around the platform,and investigating its impact on the corrosion behavior o f carbon steel.The results indicate that hydrogen sulfide mainly concentrates in the region of the sea near the surface,with a maximum of 19 mg/L,and its concen t ration greatly depends on the sea flow.The white deposit is the secretion from t he attached marine organisms on the platform structure.It is also clarified that hydrogen sulfide and white deposit have no impact on the corrosion and protecti on of the steel structure of the oil platform.
Key words:  hydrogen sulfide      concentration distribution      offshore oil platform      corrosion      
Received:  06 August 2001     
ZTFLH:  TG172.5  
Corresponding Authors:  Jia Wang     E-mail:  jwang@ms.qdio.ac.cn

Cite this article: 

Jia Wang; Jiajian Chen; Xiangbo Li. THE CONCENTRATION DISTRIBUTION OF H2S IN THE WASTE WATER FROM OIL PLATFORM AND ITS INFLUENCES ON THE CORROSION BEHAVIOR OF THE STEEL STRUCTURE OF PLATFORM. J Chin Soc Corr Pro, 2003, 23(1): 38-45 .

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https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y2003/V23/I1/38

[1]VidemK ,KvarekvalJ .Corrosionofcarbonsteelincarbondioxide-saturatedsolutionscontainingsmallamountsofhydrogensulfide[J].Corrosion,1995,51(4):260
[2]LiGuomin,FuZhaoyang,LIULiewei,ZhengJiasen.TheeffectofH2Sonthecorrosionbehaviorof45#carbonsteelinhightempera tureandhighpressureenvironment[A].In“CorrosionPreventionofStructuralMaterials”,Proc.TheSecondMainlandandTaiwanJointConferenceofCorrosionandProtection[C].Tainan,Taiwan.2000,10(25-28):657(李国敏,傅朝阳,刘烈伟,郑家森.H2S对45#碳钢高温高压CO2腐蚀行为的影响[A].第二届海峡两岸材料腐蚀与防护研讨会论文集[C].台湾:台南,2000,10(25-28):657)
[3]OteroTF .Chronoampermetricstudyofmildsteelpittinginsodiumsulfideaqueoussolution[J].Corrosion,1994,50(8):576
[4]JiangTao,ZuoYu,XiongJinping.Theeffectsofsomeanionscon tainingsulfuronpittingofmildsteel[A].In“CorrosionPreventionofStructuralMaterials”,Proc.TheSecondMainlandandTaiwanJointConferenceofCorrosionandProtection[A].Tainan,Taiwan.2000,10(25-28):210(姜涛,左禹,熊金平.含硫阴离子对低碳钢孔蚀的影响[A].第二届海峡两岸材料腐蚀与防护研讨会论文集[C].台湾:台南,2000,10(25-28):210)
[5]SridharN ,SchuttHU ,AnderkoAM ,LenckaM ,DunnDS .Ef fectsofwaterandgascompositionsontheinternalcorrosionofgaspipelines[J].Corrosion,2001,57(3):221
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