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Salt Damage and Rising Damp Treatment in Building Structures

机译:建筑物结构中的盐损伤和潮湿处理

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摘要

Salt damage can affect the service life of numerous building structures, both historical and contemporary, in a significant way. In this review, various damage mechanisms to porous building materials induced by salt action are analyzed. The importance of pretreatment investigations is discussed as well; in combination with the knowledge of salt and moisture transport mechanisms they can give useful indications regarding treatment options. The methods of salt damage treatment are assessed then, including both passive techniques based on environmental control, reduction of water transport, or conversion to less soluble salts and active procedures resulting in the removal of salts from deterioration zones. It is concluded that cellulose can still be considered as the favorite material presently used in desalination poultices but hydrophilic mineral wool can serve as its prospective alternative in future applications. Another important cause of building pathologies is the rising damp and, in this phenomenon, it is particularly severe considering the presence of salts in water. The treatment of rising damp in historic building walls is a very complex procedure and at Laboratory of Building Physics (LFC-FEUP) a wall base hygroregulated ventilation system was developed and patented.
机译:盐损伤可能会影响历史和当代众多建筑结构的使用寿命,有一种重要的方式。在本文中,分析了通过盐作用诱导的多孔建筑物的各种损伤机制。还讨论了预处理调查的重要性;结合盐和水分运输机制的知识,它们可以给出有关治疗方案的有用指示。然后评估盐损伤处理方法,包括基于环境控制,减少水运输的无源技术,或转化为较少可溶性的盐和活性程序,导致从恶化区中除去盐。结论是,纤维素仍可被认为是目前用于脱盐泥禽的最喜欢的材料,但亲水性矿棉可以作为未来应用中的前瞻性替代品。建筑病理的另一个重要原因是潮湿,并且在这种现象中,考虑到水中的盐存在特别严重。历史建筑墙上上升潮湿的处理是一个非常复杂的程序,在建筑物物理学(LFC-FEUP)的实验室中,开发了墙壁基础储蓄通风系统和专利。

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