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Biodeterioration of Construction Materials: State of the Art and Future Challenges

机译:建筑材料的生物降解:最新进展和未来挑战

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Deterioration plays an important part in the life cycle of infrastructure systems. Among all causes of deterioration (aging, chloride ingress, etc.) the action of live organisms has shown to be critical in, for example, underground structures, sewage systems, and at-sea structures. This phenomenon is usually overlooked, in part, because in most cases live organisms accelerate other processes that may eventually lead to unacceptable structural performance or cause failure (e.g., corrosion, cracking). By the direct or indirect action, it has been estimated that biodeterioration-related structural problems cost billions of dollars a year in infrastructure maintenance and repair. The paper shows that for all major civil engineering materials, in the long term and under the appropriate environmental conditions, biodeterioration may severely affect infrastructure components and their ability to perform as designed. This is particularly relevant given the large amount of existing infrastructure that has been exposed to aggressive environments for long periods of time. This paper presents an overview of the activity of live organisms on three widely used construction materials: wood, concrete, and metals. A description of the main organisms that affect each material and the associated biodeterioration mechanisms are described. In addition, this paper discusses the uncertainties associated with modeling biodeterioration and outlines the main areas for further research.
机译:恶化在基础设施系统的生命周期中起着重要的作用。在恶化的所有原因中(老化,氯化物侵入等),活生物体的作用在例如地下结构,污水系统和海上结构中已显示出至关重要的作用。通常会部分忽略这种现象,因为在大多数情况下,活生物体会加速其他过程,最终可能导致无法接受的结构性能或导致失效(例如,腐蚀,破裂)。通过直接或间接的行动,据估计,与生物恶化有关的结构性问题每年在基础设施维护和修理上花费数十亿美元。该文件表明,对于所有主要的土木工程材料,从长期来看,在适当的环境条件下,生物恶化可能严重影响基础设施组件及其按设计运行的能力。考虑到大量现有基础架构长期暴露在攻击性环境下,这一点尤其重要。本文概述了活生物体在三种广泛使用的建筑材料上的活动:木材,混凝土和金属。描述了影响每种物质的主要生物及其相关的生物恶化机制。此外,本文讨论了与生物退化建模有关的不确定性,并概述了需要进一步研究的主要领域。

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