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Quantitative basis for component factors of gas flow proportional counting efficiencies.

机译:气体组成比例定量计算效率的定量依据。

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摘要

This dissertation investigates the counting efficiency calibration of a gas flow proportional counter with beta-particle emitters in order to (1) determine by measurements and simulation the values of the component factors of beta-particle counting efficiency for a proportional counter, (2) compare the simulation results and measured counting efficiencies, and (3) determine the uncertainty of the simulation and measurements.;Monte Carlo simulation results by the MCNP5 code were compared with measured counting efficiencies as a function of sample thickness for 14C, 89Sr, 90Sr, and 90Y. The Monte Carlo model simulated strontium carbonate with areal thicknesses from 0.1 to 35 mg cm-2. The samples were precipitated as strontium carbonate with areal thicknesses from 3 to 33 mg cm-2 , mounted on membrane filters, and counted on a low background gas flow proportional counter. The estimated fractional standard deviation was 2--4% (except 6% for 14C) for efficiency measurements of the radionuclides. The Monte Carlo simulations have uncertainties estimated to be 5 to 6 percent for carbon-14 and 2.4 percent for strontium-89, strontium-90, and yttrium-90. The curves of simulated counting efficiency vs. sample areal thickness agreed within 3% of the curves of best fit drawn through the 25--49 measured points for each of the four radionuclides.;Contributions from this research include development of uncertainty budgets for the analytical processes; evaluation of alternative methods for determining chemical yield critical to the measurement process; correcting a bias found in the MCNP normalization of beta spectra histogram; clarifying the interpretation of the commonly used ICRU beta-particle spectra for use by MCNP; and evaluation of instrument parameters as applied to the simulation model to obtain estimates of the counting efficiency from simulated pulse height tallies.
机译:本文研究了带有β粒子发射器的气流比例计数器的计数效率校准,以便(1)通过测量和模拟确定比例计数器的β粒子计数效率的组成因子值,(2)比较(3)确定模拟和测量的不确定性。将MCNP5代码的蒙特卡罗模拟结果与14C,89Sr,90Sr和90岁蒙特卡洛模型模拟了碳酸锶的表面厚度为0.1至35 mg cm-2。样品以碳酸锶的形式沉淀,其厚度为3至33 mg cm-2,安装在膜滤器上,并在低背景气流比例计数器上计数。对于放射性核素的效率测量,估计的分数标准偏差为2--4%(14C除外为6%)。蒙特卡洛模拟的不确定性对于碳14估计为5%到6%,对于锶89,锶90和钇90则为2.4%。对于四种放射性核素中的每一种,通过25--49个测量点得出的最佳拟合曲线的模拟计数效率与样品表面厚度的曲线一致,在3%范围内;该研究的贡献包括制定了分析方法的不确定性预算过程;评估确定对测量过程至关重要的化学收率的替代方法;校正在β频谱直方图的MCNP归一化中发现的偏差;澄清MCNP使用的常用ICRUβ粒子光谱的解释;评估用于模拟模型的仪器参数,以从模拟的脉冲高度计数中获得计数效率的估计值。

著录项

  • 作者

    Nichols, Michael C.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Chemistry Analytical.;Chemistry Nuclear.;Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 245 p.
  • 总页数 245
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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