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Microbially influenced corrosion of galvanized steel pipes in aerobic water systems

机译:需氧水系统中镀锌钢管的微生物影响腐蚀

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To investigate the role of heterotrophic bacteria in the corrosion of galvanized steel in the presence of water. Samples were taken from corroding galvanized steel pipes conveying water for specialist applications, and heterotrophic bacteria were isolated and cultured. The majority of bacteria were Gram-negative aerobes and included Pseudomonas sp., Bacillus pumilus, Afipia spp. and Blastobacter denitrificans/Bradyrhizobium japonicum. Zinc tolerance was assessed through growth and zinc disc diffusion experiments. In general, zinc negatively influenced growth rates. An unidentified yeast also isolated from the system demonstrated a high tolerance to zinc at concentrations up to 4 g lp#. Coupon experiments were performed to assess corrosion by the bacteria on galvanized steel and steel coupons. The majority of isolates as pure culture biofilms (69%) accelerated corrosion of galvanized coupons, assessed as zinc release, relative to sterile control coupons (P < 0p"05). Pure culture biofilms did not increase the corrosion of steel, with four isolates demonstrating protective effects. Pure culture biofilms of heterotrophic bacteria isolated from a corroding galvanized pipe system were found to accelerate the corrosion of galvanized steel coupons. Microbially influenced corrosion is a potential contributor to sporadically occurring failures in galvanized steel systems containing water. Management strategies should consider microbial control as a means for corrosion prevention in these systems.
机译:研究在水存在下异养细菌在镀锌钢腐蚀中的作用。从腐蚀的输送水的镀锌钢管中取样以用于专业用途,并分离和培养异养细菌。多数细菌是革兰氏阴性需氧菌,包括假单胞菌属,短小芽孢杆菌,Afipia spp。和反硝化杆菌/日本蕨根瘤菌。通过生长和锌盘扩散实验评估了锌的耐受性。总体而言,锌对增长率产生负面影响。还从系统中分离出的未鉴定的酵母在最高4 g lp#的浓度下表现出对锌的高耐受性。进行了优惠券实验以评估细菌对镀锌钢和钢制优惠券的腐蚀。相对于无菌对照试样(P <0p“ 05),大多数作为纯培养生物膜的分离物(69%)加速了镀锌试样的腐蚀,以锌释放评估(P <0p” 05)。纯菌膜没有增加钢的腐蚀,其中有四个从腐蚀的镀锌管系统中分离出的异养细菌纯培养生物膜被发现会加速镀锌钢板试样的腐蚀,微生物影响的腐蚀是导致含水镀锌钢板系统偶尔发生故障的潜在原因,应考虑管理策略微生物控制作为这些系统中防止腐蚀的手段。

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