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首页> 外文期刊>Journal of the Institution of Engineers (India) >Evaluation of various impressed current and sacrificial anodes for control of biofouling
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Evaluation of various impressed current and sacrificial anodes for control of biofouling

机译:评估各种外加电流和牺牲阳极以控制生物污垢

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摘要

Marine fouling occur when certain marine organisms, ranging from simple plants to animals, attach themselves to underwater structures. In the offshore oil and gas industry, these organisms attach to the jacket structure of a platform and increase drag forces on the structural members. This can lead to fatal consequences. Cathodic protection used for corrosion protection locally enhances alkalinity around the steel structures. This increased alkalinity favours the attachment of organisms. The normal practice of overcoming problems resulting from biofouling is to frequently dean the surfaces. This practice is time consuming as well as costly. A study was carried out on various systems, without and with CP and the intensity of biofouling was examined. The studies were carried out on mild steel and the various systems, including mild steel without CP, with CP provided by aluminum anodes, with sacrificial hybrid system (aluminium + magnesium), sacrificial and impressed current hybrid system (aluminium + TSIA), cupronickel system and TSI ribbon anode. The TSI antifouling ribbon anode exhibited the best performance in terms of corrosion protection as well as antifouling characteristics. The details of the study are presented in this study.
机译:当某些海洋生物(从简单的植物到动物)附着在水下结构上时,就会发生海洋污垢。在海上石油和天然气工业中,这些生物附着在平台的夹套结构上,并增加对结构构件的阻力。这可能导致致命的后果。用于防腐的阴极保护可局部增强钢结构周围的碱度。这种增加的碱度有利于生物体的附着。克服生物污垢引起的问题的正常做法是经常对表面进行剥离。这种做法既费时又费钱。对各种系统进行了研究,包括没有CP和有CP,并检查了生物污垢的强度。这些研究是在低碳钢和各种体系上进行的,包括不含CP的低碳钢,CP由铝阳极提供,牺牲混合体系(铝+镁),牺牲和外加电流混合体系(铝+TSIA),白铜体系和TSI带状阳极。TSI防污带阳极在防腐和防污特性方面表现出最佳性能。本研究详细介绍了该研究的细节。

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