由于在水泥中添加粉煤灰,希腊混凝土多层住宅的活性浓度指数值

Eng Pub Date : 2023-11-20 DOI:10.3390/eng4040164
Stamatia Gavela, Georgios Papadakos
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引用次数: 0

摘要

根据 2013/59/Euratom 指令,从辐射防护的角度来看,每种建筑材料都必须估算放射性浓度指数(ACI)。该指数适用于建筑材料,而不适用于本身不能用作建筑材料的成分。粉煤灰是燃煤发电厂的副产品,也是水泥的主要成分之一。希腊褐煤发电厂产生的粉煤灰中的放射性微不足道。例如,在 Megalopolis 发电厂,226Ra 链放射性同位素的浓度约为 1 kBq/kg。由于粉煤灰中存在对人体健康有害的天然放射性核素浓度,因此应评估含有粉煤灰的建筑材料的 ACI。本研究评估了在多层住宅楼中使用含粉煤灰水泥的混凝土的 ACI。结果表明,希腊三大水泥生产厂生产的含有褐煤粉煤灰的水泥用作多层混凝土建筑材料时,不应被视为 "辐射防护方面的问题"。每个希望评估建筑中粉煤灰使用情况的国家都应重复本研究中提出的 ACI 不确定性预算方法,以评估其是否显著超出参考值(从辐射防护角度看是否令人担忧)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Activity Concentration Index Values for Concrete Multistory Residences in Greece Due to Fly Ash Addition in Cement
According to 2013/59/Euratom Directive, the activity concentration index (ACI) is required to be estimated for each building material that is of concern from a radiation protection point of view. This index applies to building materials and not to constituents that cannot be used as building materials themselves. Fly ash is a byproduct of coal-fired power plants and is one of the main constituents of cement. The radioactivity in fly ash that is produced by Greek lignite power plants cannot be considered insignificant. For example, in the case of the Megalopolis power plant, the concentration for radioisotopes of the 226Ra chain is found to be about 1 kBq/kg. Since natural radionuclide concentrations, which are harmful to human health in terms of radiation exposure, exist in fly ash, ACI should be assessed for building materials containing fly ash. The present study evaluates the ACI of concrete containing fly ash cement when used in multistory residential buildings. Results showed that cement produced in Greece by the three main Greek cement production plants, containing lignite fly ash, and used as a material for concrete multistory constructions, should not be considered as “of concern from a radiation protection point of view”. Each country that wishes to evaluate the use of fly ash into constructions should repeat the method for the ACI uncertainty budget proposed in this study, to assess whether it significantly exceeds the reference value (whether it is of concern from a radiation protection point of view).
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Eng
Eng
CiteScore
2.10
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