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Laboratory studies of biocorrosion control using traditional and environmentally friendly biocides: an overview

机译:使用传统和环保的杀菌剂进行生物腐蚀控制的实验室研究:概述

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Metal surfaces immersed in natural or industrial waters undergo a sequence of biological and inorganic changes that may result in biocorrosion due to the formation of a biofilm. Microbial adherence to metallic surfaces affects different industrial systems, such us cooling water systems, off shore oil industry, thermal power stations, hydroelectric, chemical and process industry, etc. The chemical agents generally used to prevent or protect metallic structures from biocorrosion are highly toxic and, after use, can have a negative impact on the environment. Environmental concerns have led to legislation which encourages the replacement of toxic biocides, widely used in the past (e.g. chlorine) with more readily degradable antimicrobial chemicals that are compatible with system operation and less toxic to the environment. One innovative attempt to accomplish this goal is the use of naturally-produced compounds, such as plant extract that are environmentally acceptable. The aim of this paper is to give an overview of different laboratory studies which used both traditional and environmentally friendly biocides against planktonic bacteria and sessile bacteria on different metal surfaces.
机译:浸入天然或工业水中的金属表面会经历一系列生物和无机变化,这些变化可能会由于生物膜的形成而导致生物腐蚀。微生物对金属表面的粘附会影响不同的工业系统,例如冷却水系统,离岸石油工业,热力发电站,水力发电,化学和加工业等。通常用于防止或保护金属结构免受生物腐蚀的化学试剂是剧毒的使用后会对环境造成负面影响。出于对环境的关注,制定了鼓励使用以前易于降解的,与系统运行兼容且对环境毒性较小的抗微生物化学物质代替过去广泛使用的有毒生物杀灭剂(例如氯)的立法。实现该目标的一种创新尝试是使用天然生产的化合物,例如环境可接受的植物提取物。本文的目的是概述不同的实验室研究,这些研究使用了传统的和环保的杀菌剂对不同金属表面上的浮游细菌和无柄细菌进行了研究。

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