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受冲上岸的马尾藻筏影响的浸入水中钢材的多因素加速海洋腐蚀。

Multifactored accelerated marine corrosion of immersed steels influenced by washed ashore Sargassum rafts.

作者信息

Bénuffé Diana, Radouani Fatima, Quemener Maxence, Ozier Olivia, Fauchon Marilyne, Toueix Yannick, Faӱ Fabienne, Magueresse Anthony, Lescop Benoit, Rioual Stéphane, Zongo Pascal, Roos Christophe, Hellio Claire, Salvin Paule

机构信息

L3MA UR4_1 UFR STE Universite des Antilles, Campus de Schoelcher, Schoelcher, 97275, France.

Univ Brest, CNRS, IRD, Ifremer, LEMAR, IUEM, F-29280 Plouzane, France.

出版信息

Mar Environ Res. 2025 Feb;204:106924. doi: 10.1016/j.marenvres.2024.106924. Epub 2024 Dec 22.

DOI:10.1016/j.marenvres.2024.106924
PMID:39756246
Abstract

Since 2011, massive strandings of Sargassum (brown alga) have significantly affected Caribbean islands causing major health, environmental and economic problems. Amongst them, the degradation of algae releases corrosive gases, hydrogen sulphide (HS) and ammonia (NH) which causes an accelerated corrosion of the metallic structures of these coastal areas. The aim of this study was to quantify the impact of Sargassum strandings on the corrosion of three types of steels (DC01 carbon steel, 304L and 316L stainless steels) immersed for up to 120 days at various sites in Martinique which were gradually impacted by Sargassum. A multidisciplinary approach was developed, incorporating: (i) surface analysis through macrophotography and corrosion product examination, (ii) weight loss measurements, and (iii) analysis of physicochemical parameters alongside microbial composition. As a result, in the presence of degraded Sargassum, an anaerobic, reducing and more acidic environment was correlated with high corrosion rates for all studied steels. When high density of Sargassum sp. was present, elemental sulphur was identified in the corrosion product layers of DC01 and 316L. Moreover, in this condition, sulphate-reducing bacteria (SRB) were observed in the surface biofilms of 304L coupons such as Desulfobulbus rhabdoformis. All these factors have highlighted the aggressiveness of the medium resulting from the presence of decomposing Sargassum, leading to increased corrosion rates. Our work provides new information on the importance of managing Sargassum strandings in order to avoid accelerated degradation of metallic structures in harbours and coastal zones.

摘要

自2011年以来,马尾藻(褐藻)的大规模搁浅对加勒比岛屿产生了重大影响,引发了严重的健康、环境和经济问题。其中,藻类的降解会释放出腐蚀性气体,即硫化氢(HS)和氨(NH),这会加速这些沿海地区金属结构的腐蚀。本研究的目的是量化马尾藻搁浅对三种类型钢材(DC01碳钢、304L和316L不锈钢)腐蚀的影响,这些钢材在马提尼克岛的不同地点浸泡长达120天,这些地点逐渐受到马尾藻的影响。我们开发了一种多学科方法,包括:(i)通过宏观摄影和腐蚀产物检查进行表面分析,(ii)失重测量,以及(iii)分析物理化学参数和微生物组成。结果表明,在存在降解的马尾藻的情况下,厌氧、还原且酸性更强的环境与所有研究钢材的高腐蚀速率相关。当存在高密度的马尾藻属物种时,在DC01和316L的腐蚀产物层中鉴定出了元素硫。此外,在这种情况下,在304L试样的表面生物膜中观察到了硫酸盐还原菌(SRB),如横纹脱硫球菌。所有这些因素都凸显了由于分解的马尾藻的存在而导致的介质的侵蚀性,从而导致腐蚀速率增加。我们的工作提供了关于管理马尾藻搁浅重要性的新信息,以避免港口和沿海地区金属结构的加速降解。

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