Corrosivity of different natural groundwaters from repository sites

M. Somervuori, E. Isotahdon, Maija Nuppunen-Puputti, M. Bomberg, L. Carpén, P. Rajala
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Abstract

In Finland, the repositories for low and intermediate-level waste (LLW and ILW) are situated at three different geographical locations in deep granite bedrock where the waste containers can be subjected to anoxic groundwater containing microbes. The composition of groundwater varies in terms of chemistry and microbial activity in different locations. In this study, groundwater from three repository areas was analyzed in respect of chemistry and microbial community. Corrosion tendency of three steel grades, carbon steel AISI/SAE 1005 and stainless steels AISI 304 and 316L, was studied in these groundwater environments using electrochemical methods. As a reference, measurements were also performed in simulated groundwater without microbes. The measurements show that corrosivity of the water and thus the steels’ performance differs depending on its location of origin. Also, the groundwater differed remarkably in in their chemical composition as well as abundance and diversity of microbial community. Consequently, the local environment has to be considered when evaluating the long-term safety of disposal of nuclear waste.
储存库不同天然地下水的腐蚀性
在芬兰,低水平和中水平废物(LLW和ILW)的储存库位于花岗岩基岩深处的三个不同地理位置,在那里,废物容器可以受到含有微生物的缺氧地下水的影响。地下水的组成在不同地点的化学成分和微生物活动方面有所不同。本研究对3个库区的地下水进行了化学和微生物群落分析。采用电化学方法研究了碳钢AISI/ sae1005和不锈钢AISI 304、316L在地下水环境中的腐蚀倾向。作为参考,在没有微生物的模拟地下水中也进行了测量。测量结果表明,水的腐蚀性和钢的性能因其产地而异。地下水的化学成分、微生物群落的丰度和多样性也存在显著差异。因此,在评价核废料处置的长期安全性时,必须考虑到当地的环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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