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Biofouling and biocorrosion in industrial water systems

机译:工业用水系统中的生物污损和生物腐蚀

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摘要

Corrosion associated with microorganisms has been recognized for over 50 years and yet the study of microbiologically influenced corrosion (MIC) is relatively new. MIC can occur in diverse environments and is not limited to aqueous corrosion under submerged conditions, but also takes place in humid atmospheres.Biofouling of industrial water systems is the phenomenon whereby surfaces in contact with water are colonized by microorganisms, which are ubiquitous in our environment. However, the economic implications of biofouling in industrial water systems are much greater than many people realize. In a survey conducted by the National Association of Corrosion Engineers of the United States ten years ago, it was found that many corrosion engineers did not accept the role of bacteria in corrosion, and many of them that did, could not recognize and mitigate the problem.Biofouling can be described in terms of its effects on processes and products such as material degradation (bio-corossion), product contamination, mechanical blockages, and impedance of heat transfer. Microorganisms distinguish themselves from other industrial water contaminants by their ability to utilize available nutrient sources, reproduce, and generate intra- and extracellular organic and inorganic substances in water. A sound understanding of the molecular and physiological activities of the microorganisms involved is necessary before strategies for the long term control of biofouling can be format. Traditional water treatment strategies however, have largely failed to address those factors that promote biofouling activities and lead to biocorrosion.Some of the major developments in recent years have been a redefinition of biofilm architecture and the realization that MIC of metals can be best understood as biomineralization.
机译:与微生物相关的腐蚀已被认可了50多年,但是微生物影响腐蚀(MIC)的研究相对较新。 MIC可以发生在各种环境中,不仅限于浸水条件下的水腐蚀,而且还可以在潮湿的环境中发生。工业用水系统的生物污染是指与水接触的表面被微生物占据的现象,微生物在我们的环境中普遍存在。但是,工业用水系统中生物污垢的经济影响要比许多人意识到的要大得多。在十年前美国国家腐蚀工程师协会进行的一项调查中,发现许多腐蚀工程师不接受细菌在腐蚀中的作用,而许多腐蚀工程师却不能识别和缓解该问题。生物污损可以用其对过程和产品的影响来描述,例如材料降解(生物腐蚀),产品污染,机械阻塞和传热阻抗。微生物通过利用可利用的营养源,繁殖并在水中产生细胞内和细胞外有机和无机物质的能力,将自己与其他工业用水污染物区分开来。必须先对所涉及的微生物的分子和生理活性有一个全面的了解,然后才能制定长期控制生物污染的策略。然而,传统的水处理策略在很大程度上未能解决那些促进生物污染活动并导致生物腐蚀的因素。近年来的一些重大进展是对生物膜结构的重新定义,以及人们认识到金属的MIC可以最好地理解为生物矿化。 。

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