Published December 17, 2013 | Version v1
Journal article

Porous Chromatographic Materials as Substrates for Preparing Synthetic Nuclear Explosion Debris Particles

Description

In this study, we investigated several porous chromatographic materials as synthetic substrates for preparing surrogate nuclear explosion debris particles. The resulting synthetic debris materials are of interest for use in developing analytical methods. Eighteen metals, including some of forensic interest, were loaded onto materials by immersing them in metal solutions (556 mg/L of each metal) to fill the pores, applying gentle heat (110°C) to drive off water, and then treating them at high temperatures (up to 800°C) in air to form less soluble metal species. High-boiling-point metals were uniformly loaded on spherical controlled-pore glass to emulate early fallout, whereas low-boiling-point metals were loaded on core-shell silica to represent coated particles formed later in the nuclear fallout-formation process. Analytical studies were applied to characterize solubility, material balance, and formation of recalcitrant species. Dissolution experiments indicated loading was 1.5 to 3 times higher than expected from the pore volume alone, a result attributed to surface coating. Analysis of load solutions before and after filling the material pores revealed that most metals were passively loaded; that is, solutions filled the pores without active metal discrimination. However, niobium and tin concentrations were lower in solutions after pore filling, and were found in elevated concentrations in the final products, indicating some metals were selectively loaded. High-temperature treatments caused reduced solubility of several metal species, and loss of some metals (rhenium and tellurium) because volatile species were formed. Sample preparation reproducibility was high (the inter-batch relative standard deviation was 7.8%, and the intra-batch relative standard deviation was 0.84%) indicating that this material is suitable for use as a working standard for analytical methods development. We anticipate future standardized radionuclide-loaded materials will find use in radioanalytical methods development and/or serve as a starting material for the synthesis of more complex forms of nuclear explosion debris (e.g., Trinitite)

Availability note (English)

Available from: DOI:10.1007/s10967-013-2563-2

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Radioanalytical and Nuclear Chemistry
Journal Volume
298
Journal Issue
3
Journal Page Range
p. 1885-1898
ISSN
0236-5731

INIS

Country of Publication
Hungary
Country of Input or Organization
United States
INIS RN
45111810
Subject category
S37: INORGANIC, ORGANIC, PHYSICAL AND ANALYTICAL CHEMISTRY;
Descriptors DEI
CHROMATOGRAPHY; FISSION PRODUCTS; POROUS MATERIALS; SAMPLE PREPARATION
Descriptors DEC
ISOTOPES; MATERIALS; RADIOACTIVE MATERIALS; SEPARATION PROCESSES

Optional Information

Contract/Grant/Project number
AC05-76RL01830
Funding organization
USDOE (United States)
Secondary number(s)
PNNL-SA--93964; OSTIID--1130683