首页> 外文会议>CNS/CNA Student Conference >TOWARDS IMPROVING THE DETECTION LIMIT OF ELECTRON PARAMAGNETIC RESONANCE (EPR) DOSIMETRY OF DRYWALL (WALLBOARD)
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TOWARDS IMPROVING THE DETECTION LIMIT OF ELECTRON PARAMAGNETIC RESONANCE (EPR) DOSIMETRY OF DRYWALL (WALLBOARD)

机译:改善干墙(墙板)的电子顺磁共振(EPR)剂量的检测极限

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The intensity of the electron paramagnetic resonance (EPR) line corresponding to the carbonate free radical (CO_3~-) in gypsum (CaSO_4.2H_2O) drywall was previously shown to be proportional to absorbed dose. Heating irradiated drywall reduces the radiosensitive signal of the CO_3~- radical. The response of the CO_3~- EPR line to heat treatments is being studied in order to determine a background for an arbitrary drywall sample. Ultimately this is expected to improve the precision of dose measurements with drywall and to reduce the detection limit. Controlled heating of irradiated drywall was performed at temperatures between 50° C and 100° C. Although higher temperatures reduce the radiosensitive signal rapidly, the non-radiosensitive EPR signals are affected dramatically as well, presumably due to a phrase change from gypsum to plaster of Paris to anhydrite.
机译:对应于石膏(Caso_4.2H_2O)干壁中的碳酸酯自由基(CO_3〜)对应的电子顺磁共振(EPR)线的强度先前显示成比例与吸收剂量成比例。加热辐照干壁减少了CO_3〜 - 自由基的放射敏感信号。研究了CO_3〜 - EPR线与热处理的响应,以确定任意干壁样品的背景。最终,这预计将提高用干壁的剂量测量的精度,并降低检测极限。在50℃和100℃之间的温度下进行辐射干壁的受控加热。虽然较高的温度迅速降低放射敏感信号,但也可能急剧影响辐射敏感性信号,但可能由于由于短语从石膏转化为石膏而变化巴黎到Anhydrite。

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