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The Potential of Photon Activation and Neutron Activation Techniques for Fast Soil Characterization

机译:用于快速土壤表征的光子活化和中子活化技术的潜力

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In the frame of a partnership between CEA and VINCI, various measurement techniques are applied to soil analysis and tested in different laboratories located at CEA Saclay (France). This paper deals with two nuclear measurement techniques assessed in this project. More specifically, this paper presents the feasibility study carried out for two non-destructive active methods: photon activation and neutron activation. First, some atomic nuclides are activated either by photons or neutrons. Secondly, gamma-rays of specific energies are emitted by activated nuclides and gamma-ray spectrometry enables to identify these activated nuclides. Calibration of the full measurement system with reference samples would enable to quantify the mass of activated nuclides. Irradiations performed for photon activation measurements were conducted using a linear electron accelerator (linac) as the latter enables to generate high-energy photons by Bremsstrahlung thanks to its conversion target. Furthermore, irradiations performed for neutron activation measurements were also conducted with a linac. Indeed, photons may be converted to neutrons by photonuclear reactions using a secondary target. In the frame of this project, experiments were carried out at the SAPHIR platform (CEA Saclay) with a Linatron-M9 VARIAN linac. The electron energy was either 6 or 9 MeV. For neutron activation measurements, a secondary target made of heavy water has been used as neutron source and a polyethylene cell enabled to thermalize neutrons and increase the number of reactions of interest. In this paper, we present the different experimental setups and the measurement protocols established for this feasibility study. We show experimental results obtained with raw material samples coming from three construction sites.
机译:在CEA和Vinci之间的伙伴关系框架中,各种测量技术应用于土壤分析并在位于CEA SACLAY(法国)的不同实验室中进行测试。本文涉及该项目评估的两种核测量技术。更具体地,本文介绍了两种非破坏性活性方法进行的可行性研究:光子活化和中子激活。首先,通过光子或中子活化一些原子核素。其次,通过活化的核素和γ射线光谱法发出特异性能量的γ射线,使得能够鉴定这些活化的核素。具有参考样品的完整测量系统的校准将能够量化活性核素的质量。使用线性电子加速器(LINAC)进行对光子激活测量进行的照射,因为后者通过Bremsstrahlung能够通过其转换目标产生高能量的光子。此外,还用LINAC进行对中子激活测量进行的照射。实际上,光子可以通过使用次要靶通过光子反应转化为中子。在该项目的框架中,用Linatron-M9 Varian LinaC在Saphir平台(CEA Saclay)进行实验。电子能量为6或9mev。对于中子激活测量,由重水制成的二级靶被用作中子源和聚乙烯电池,使得热化中子热化并增加感兴趣的反应的数量。在本文中,我们介绍了针对这种可行性研究建立的不同实验设置和测量方案。我们展示了从三个建筑工地的原料样品获得的实验结果。

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