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New Approach for the Determination of Radiological Parameters on Hardened Cement Pastes with Coal Fly Ash

机译:煤粉煤灰确定硬化水泥糊剂的放射性参数的新方法

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摘要

Supplementary cementitious materials (SCMs) in industrial waste and by-products are routinely used to mitigate the adverse environmental effects of, and lower the energy consumption associated with, ordinary Portland cement (OPC) manufacture. Many such SCMs, such as type F coal fly ash (FA), are naturally occurring radioactive materials (NORMs). 226Ra, 232Th and 40K radionuclide activity concentration, information needed to determine what is known as the gamma-ray activity concentration index (ACI), is normally collected from ground cement samples. The present study aims to validate a new method for calculating the ACI from measurements made on unground 5 cm cubic specimens. Mechanical, mineralogical and radiological characterisation of 28-day OPC + FA pastes (bearing up to 30 wt % FA) were characterised to determine their mechanical, mineralogical and radiological properties. The activity concentrations found for 226Ra, 212Pb, 232Th and 40K in hardened, intact 5 cm cubic specimens were also statistically equal to the theoretically calculated values and to the same materials when ground to a powder. These findings consequently validated the new method. The possibility of determining the activity concentrations needed to establish the ACI for cement-based materials on unground samples introduces a new field of radiological research on actual cement, mortar and concrete materials.
机译:工业废物和副产品的补充水泥材料(SCM)通常用于减轻与普通波特兰水泥(OPC)制造相关的不利环境影响和降低能源消耗。许多这样的SCM,例如F型煤粉煤灰(FA),是天然存在的放射性物质(规范)。 226ra,232th和40k放射性核素活性浓度,确定所谓的γ射线活性浓度指数(ACI)所需的信息通常从地水泥样品收集。本研究旨在验证从未导出5厘米立方标本的测量计算ACI的新方法。 28天OPC + FA浆料的机械,矿物学和放射性表征(高达30wt%FA)的特征是确定其机械,矿物学和放射性特性。在硬化,完整的5cm立方标本中为226ra,212pb,232th和40k发现的活性浓度也在统计上等于理论上计算的值并在接地到粉末时与相同的材料。因此,这些发现验证了新方法。确定在未场样品上建立基于水泥基材料的ACI所需的活性浓度的可能性介绍了实际水泥,砂浆和混凝土材料的新辐射研究领域。

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