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Corrosion behaviour of stainless and carbon steels exposed to sulphate - reducing bacteria from industrial heat exchangers

机译:不锈钢和碳钢暴露于工业换热器硫酸盐的腐蚀行为

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Corrosion responses of some carbon steels and stainless steel in the presence of a mixed industrial culture of bacteria (referred to as SRB - sulphate - reducing bacteria) found in industrial heat exchangers was studied to recommend best alloys under this service condition. Cooling towers in three plants were studied for SRB presence, and two of the plants showed positive indication of SRB presence based on characteristic hydrogen sulphide odour, media blackening and biofilm presence relative to a control media. Mixed cultures obtained from the plant were thereafter grown in prepared media incubated at 35 degrees C for 18 days. Open circuit potential and potentio-dynamic polarisation studies in anaerobic conditions were done on the selected alloys in aqueous media with and without the grown SRB. Scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS) were then used to determine the corrosion morphology and corrosion products formation. The voltamograms show higher i(corr) for alloys under the SRB compared to the control media, indicating the SRB indeed increased the corrosion rates. The corrosion rates of the alloys were mainly affected by the SRB metabolic activity which produced S2- ions in the media. The surface analysis showed pitting on ASTM A106-B, localised corrosion on ASTM A516-70 and intergranular corrosion on ASTM A179. The EDS analysis supported the findings with higher weight percent of iron and sulphur on ASTM A516-70 due to the presence of iron sulphide. Iron sulphide precipitated on the surface of the specimens to form a passive film. The Tafel plot recorded a corrosion rate of 1.23 mm/year for ASTM A179, 1.08 mm/year for ASTM A516-70, 0.53 mm/year for ASTM A106-B and 0.91 mm/year for duplex stainless steel (2205) when exposed to SRB media. ASTM A516-70 carbon steel was chosen as a better suited material in this environment.
机译:在工业热交换器中发现的细菌混合工业培养物(称为SRB - 硫酸盐还原细菌)存在的腐蚀响应是在这种服务条件下推荐最好的合金。研究了三种植物中的冷却塔进行SRB存在,并且两种植物基于相对于对照介质的特征硫化氢气味,培养基黑化和生物膜存在,显示出SRB存在的阳性指示。此后从植物中获得的混合培养物在35℃温育18天内生长在制备的介质中。在具有和不生长的SRB的水性介质中的所选合金中,在所选合金中对厌氧条件进行开放电路电位和电极动力学偏振研究。然后使用扫描电子显微镜(SEM)和能量分散X射线光谱(EDS)来确定腐蚀形态和腐蚀产物的形成。与对照介质相比,电压图显示了SRB下的合金的较高I(COR),表明SRB确实增加了腐蚀速率。合金的腐蚀速率主要受到培养基中产生S2-离子的SRB代谢活性的影响。表面分析显示ASTM A516-70对ASTM A106-B的局部腐蚀和ASTM A179的晶间腐蚀。由于存在硫化铁,EDS分析支持在ASTM A516-70上具有更高的铁和硫的调查结果。在样品表面上沉淀的铁硫化物以形成无源膜。 Tafel Plot记录了ASTM A179,ASTM A179,1.08毫米/年/ ASTM A116-70,ASTM A106-B的0.53毫米/年,0.91毫米/年的腐蚀速率,适用于双相不锈钢(2205) SRB媒体。选择ASTM A516-70碳钢作为这种环境中更适合的材料。

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