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Microbiological influences in 'blue water' copper corrosion

机译:微生物对“蓝水”铜腐蚀的影响

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Aims: To investigate the influence of micro-organisms associated with copper corrosion on 'blue water' corrosion in drinking water.Methods and Results: Laboratory rigs comprising of polycarbonate containers attached to annealed copper plumbing tubes were filled with Melbourne drinking water and sterilized by autoclaving. The copper tubes were inoculated with sterile or nonsterile extracts obtained from corroding copper and allowed to stand for 7 days. The extracts were drained and the tubes flushed and filled with sterile water from the rig. The water within the tubes was removed weekly for analysis and the tubes were refilled with freshly aerated water. The tube water sampled was analysed for pH, total copper and the presence of micro-organisms. Sterile rigs and rigs containing nonsterile water, both without tube inoculums, were used as controls. The results demonstrated that tubes inoculated with nonsterile corrosion extracts showed statistically higher copper release compared with the other rigs. Copper release as blue water was only observed after a lag period of 9 weeks. The internal surfaces of tubes releasing copper showed significant amounts of corrosion products and the presence of biofilm. Bacteria isolated from the corroding tubes included Acidovorax spp. and Sphingomonas sp.Conclusions: The results demonstrate a microbial role in blue water, as corrosion was induced in new copper tubes by exposure to nonsterile copper corrosion products.Significance and Impact of the Study: The potential for micro-organisms present in corrosion products to initiate blue water corrosion presents significant implications for the management of corrosion in distribution systems.
机译:目的和目的:研究与铜腐蚀有关的微生物对饮用水中“蓝水”腐蚀的影响。方法和结果:将装有聚碳酸酯容器的实验室设备固定在退火的铜水管上,并用墨尔本饮用水装满并通过高压灭菌器消毒。 。用从腐蚀铜获得的无菌或非无菌提取物接种铜管,并静置7天。将提取物排干,冲洗试管,并用来自钻机的无菌水填充。每周取出试管中的水进行分析,并用新鲜的充气水重新填充试管。分析采样的试管水的pH,总铜和微生物的存在。无菌钻机和装有非无菌水的钻机都没有管接种物,用作对照。结果表明,与其他钻机相比,接种有非无菌腐蚀提取物的试管显示出较高的铜释放量。仅在滞后9周后才观察到铜释放为蓝色水。释放铜的管的内表面显示出大量腐蚀产物和生物膜的存在。从腐蚀管中分离出的细菌包括Acidovorax spp。结论:研究结果表明,在新水中,由于暴露于非无菌铜腐蚀产物而在新的铜管中产生腐蚀,因此微生物在蓝色水中起着微生物作用。研究的意义和影响:腐蚀产物中存在的微生物潜力引发蓝色水腐蚀对配电系统腐蚀的管理具有重要意义。

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