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Characterization of some boron minerals against neutron shielding and 12 year performance of neutron permeability

机译:某些硼矿物的抗中子屏蔽特性和12年的中子渗透性

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In this study, the nuclear radiation permeability properties of various boron minerals are evaluated because of their high neutron absorption and lowest transmission properties. Because of these properties boron minerals can be used at the area of neutron shielding. X-ray diffraction (XRD) analyses are done for the identification of the minerals, and then their B _2 O _3 contents are determined experimentally. In addition, X-ray florescence (XRF) analyses are made for quantitative determination of calcium, iron, zinc and arsenic contents. The methods of Differential Thermal Analysis, Thermal Gravimetry (TG/DTA) and Differential Scanning Calorimeter (DSC) are used for obtaining the enthalpy and weight changes with temperature. Additionally, neutron permeability experiments are conducted. From the experimental results, the highest boron oxide content was found in clay containing colemanite. Iron, zinc and arsenic contents were not affecting the neutron shielding. The lowest permeability is provided by the kurnakovite mineral. Also it is observed that all of the minerals show an increase in their permeability in 12 years. It can be stated that boron minerals, specifically kurnakovite, is determined to yield the lowest neutron permeability value and therefore, the use of these materials for neutron shielding would be suitable.
机译:在这项研究中,评估了各种硼矿物的核辐射渗透性,因为它们具有高的中子吸收能力和最低的透射性能。由于这些特性,硼矿物可用于中子屏蔽区域。进行了X射线衍射(XRD)分析以鉴定矿物,然后通过实验确定它们的B _2 O _3含量。此外,X射线荧光(XRF)分析用于定量测定钙,铁,锌和砷的含量。用差示热分析,热重分析(TG / DTA)和差示扫描量热仪(DSC)的方法获得焓和重量随温度的变化。另外,进行中子渗透率实验。根据实验结果,发现在含有硬锰矿的粘土中氧化硼含量最高。铁,锌和砷的含量不影响中子屏蔽。 Kurnakovite矿物提供了最低的渗透率。还可以观察到,所有矿物在12年内都显示出渗透率的增加。可以说,确定了硼矿物(特别是库尔纳科维特)产生最低的中子渗透率值,因此,将这些材料用于中子屏蔽是合适的。

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