首页> 外文会议>Application of Accelerators in Research and Industry >Bremsstrahlung-Based Imaging and Assays of Radioactive, Mixed and Hazardous Waste
【24h】

Bremsstrahlung-Based Imaging and Assays of Radioactive, Mixed and Hazardous Waste

机译:基于致辐射的放射性,混合和危险废物的成像和分析

获取原文

摘要

A new nondestructive accelerator based x-ray fluorescence (AXPJF) approach lias been developed to identify heavy metals in large-volume samples. Such samples are an important part of the process and waste streams of U.S Department of Energy sites, as well as other industries such as mining and milling. Distributions of heavy metal impurities in these process and waste samples can range from homogeneous to highly inhomogeneous, and non-destructive assays and imaging that can address both are urgently needed. Our approach is based on using high-energy, pulsed bremsstrahlung beams (3-6.5 MeV) from small electron accelerators to produce K-shcll atomic fluorescence x-rays. In addition we exploit pair-production, Compton scattering and x-ray transmission measurements from these beams to probe locations of high density and high atomic number. The excellent penetrability of these beams allows assays and images for soil-like samples at least 15 g/cm~2 thick, with elemental impurities of atomic number greater than approximately 50. Fluorescence yield of a variety of targets was measured as a function of impurity atomic number, impurity homogeneity, and sample thickness. We report on actual and potential detection limits of heavy metal impurities in a soil matrix for a variety of samples, and on tihe potential for imaging, using AXRF aad these related probes.
机译:已经开发出了一种新的基于无损促进剂的X射线荧光(AXPJF)方法,用于鉴定大批量样品中的重金属。这些样品是美国能源部工厂以及采矿和制粉等其他行业的过程和废物流的重要组成部分。这些过程和废物样品中重金属杂质的分布范围从均质到高度不均,迫切需要能够同时解决这两种问题的无损检测和成像。我们的方法基于使用来自小型电子加速器的高能脉冲致辐射光束(3-6.5 MeV)产生K-shcll原子荧光X射线。此外,我们利用这些光束的成对产生,康普顿散射和X射线透射测量来探测高密度和高原子序数的位置。这些光束具有出色的穿透性,可对至少15 g / cm〜2厚,原子序数大于约50的元素杂质的类土壤样品进行化验和成像。测量了各种目标物的荧光产率,作为杂质的函数原子序数,杂质均质性和样品厚度。我们报告了各种样品在土壤基质中重金属杂质的实际和潜在检测极限,以及使用AXRF和这些相关探针的成像潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号