Division Surface and Corrosion Science, Department of Chemistry, School of Chemical Science and Engineering, KTH, Dr. Kristinas v. 51, 100 44, Stockholm, Sweden.
Environ Monit Assess. 2011 Feb;173(1-4):139-53. doi: 10.1007/s10661-010-1377-8. Epub 2010 Mar 7.
Galvanized steel structures are used in a large variety of external constructions in the modern urban society, and their beneficial properties from a corrosion and oxidation perspective are well known. Less investigated is the extent of their contribution to the diffuse dispersion of zinc in the society and also to the environmental fate of corrosion-induced released zinc. This paper presents long-term runoff rates of zinc from galvanized steel surfaces with main focus on hot-dipped galvanized steel exposed for up to 10 years at nonsheltered urban atmospheric conditions. The long-term capacities of a naturally formed patina and the presence of surface treatments and coatings to hinder and reduce corrosion-induced zinc runoff from galvanized steel are elucidated. The environmental interaction of zinc runoff and concrete surfaces in pavement and urban storm drain systems is highlighted and the high capacity of concrete to retain released zinc presented.
镀锌钢结构在现代城市社会的各种外部结构中得到广泛应用,其在腐蚀和氧化方面的有益特性是众所周知的。但人们对其在社会中锌的弥散分布以及腐蚀释放锌的环境归宿方面的贡献程度研究较少。本文介绍了镀锌钢表面锌的长期径流量,主要关注在无遮蔽的城市大气条件下暴露长达 10 年的热浸镀锌钢。文中阐明了自然形成的锈层的长期能力,以及表面处理和涂层对抑制和减少镀锌钢腐蚀诱导锌径流量的作用。文中还强调了锌径流与路面和城市雨水渠系统中混凝土表面的环境相互作用,并提出了混凝土对释放锌的高容量保持能力。