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首页> 外文期刊>Radiation Physics and Chemistry >Evaluation of dose uncertainty in radiation processing using EPR spectroscopy and butylated hydroxytoluene rods as dosimetry system
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Evaluation of dose uncertainty in radiation processing using EPR spectroscopy and butylated hydroxytoluene rods as dosimetry system

机译:用EPR光谱和丁基化羟基甲苯棒作为剂量测量剂评价辐射加工剂量不确定性

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摘要

Butylatedhydroxytoluene (BHT) rods represent a potential dosimeter in radiation processing, with readout via electron paramagnetic resonance (EPR) spectroscopy. Among the possible sources of uncertainty are those associated with the performance of the dosimetric medium and the conditions under which measurements are made, including sampling and environmental conditions. Present study makes estimate of the uncertainties, investigating physical response in different resonance regions. BHT, a white crystalline solid with a melting point of between 70-73 degrees C, was investigated using Co-60 gamma irradiation over the dose range 0.1-100 kGy. The intensity of the EPR signal increases linearly in the range 0.1-35 kGy, the uncertainty budget for high doses being 3.3% at the 2 sigma confidence level. The rod form represents an excellent alternative dosimeter for high level dosimetry, of small uncertainty compared to powder form.
机译:丁基化羟基甲苯(BHT)棒代表辐射处理中的潜在剂量计,通过电子顺磁共振(EPR)光谱读出。 在可能的不确定源中是与剂量测量的性能相关的那些,包括测量的条件,包括采样和环境条件。 目前的研究估计了不确定性,调查不同共振区的物理响应。 使用Co-60γ辐射在0.1-100kgy的熔点中研究了具有70-73℃的熔点的白色结晶固体。 EPR信号的强度在0.1-35 kgy范围内线性增加,高剂量的不确定性预算为3.3%,在2个σ置信水平。 棒形式代表高水平剂量测定剂的优异替代剂量计,与粉末形式相比具有小的不确定性。

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