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Alkali-activated concrete with Serbian fly ash and its radiological impact

机译:含塞尔维亚粉煤灰的碱活化混凝土及其放射学影响

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摘要

The present paper reports the results of a study on different types of fly ash from Serbian coal burning power plants and their potential use as a binder in alkali-activated concrete (AAC) depending on their radiological and mechanical properties. Five AAC mixtures with different types of coal burning fly ash and one type of blast furnace slag were designed. Measurements of the activity concentrations of K-40, Ra-226 and Th-232 were done both on concrete constituents (fly ash, blast furnace slag and aggregate) and on the five solid AAC samples. Experimental results were compared by using the activity concentration assessment tool for building materials - the activity concentration index I, as introduced by the EU Basic Safety Standards (CE, 2014). All five designed alkali-activated concretes comply with EU BSS screening requirements for indoor building materials. Finally, index I values were compared with the results of the application of a more accurate index - I(pd), which accounts for thickness and density of building materials (Nuccetelli et al., 2015a). Considering the actual density and thickness of each concrete sample index - I(pd) values are lower than index I values.
机译:本文报道了来自塞尔维亚燃煤发电厂的不同类型粉煤灰的研究结果,以及根据其放射性和机械性能将其用作碱活化混凝土(AAC)中的粘结剂的潜力。设计了五种具有不同类型燃煤粉煤灰和一种高炉矿渣的AAC混合物。在混凝土成分(粉煤灰,高炉矿渣和骨料)和五个固体AAC样品上都测量了K-40,Ra-226和Th-232的活性浓度。通过使用建筑材料的活动浓度评估工具(欧盟基本安全标准(CE,2014)引入的活动浓度指数I)对实验结果进行了比较。所有五种设计的碱活化混凝土均符合EU BSS对室内建筑材料的筛选要求。最后,将指标I的值与应用更准确的指标I(pd)的结果进行比较,该指标说明了建筑材料的厚度和密度(Nuccetelli等人,2015a)。考虑到每个混凝土样品的实际密度和厚度,指标I(pd)的值低于指标I的值。

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