1,080
Views
3
CrossRef citations to date
0
Altmetric
Article

Characterization of aerosols from RDD surrogate compounds produced by fast thermal transients

, , &
Pages 391-401 | Received 27 Nov 2014, Accepted 08 May 2015, Published online: 29 Jul 2015

References

  • Medalia J. Dirty bombs: technical background, attack prevention and response, issues for congress (Report n. R41890). Congressional Research Service (US); 2011.
  • Shin H, Kim J. Development of realistic RDD scenarios and their radiological consequence analyses. Appl Radiat Isot. 2009;67(7–8):1516–1520.
  • Magill J, Hamilton D, Lützenkirchen K, et al. Consequences of a radiological dispersal event with nuclear and radioactive sources. Sci Global Security. 2007;15(2):107–132.
  • Andersson KG, Mikkelsen T, Astrup P, et al. Requirements for estimation of doses from contaminants dispersed by a dirty bomb explosion in an urban area. J Environ Radioact. 2009;100(2):1005–1011.
  • Di Lemma FG, Colle JY, Ernstberger M, et al. RADES an experimental set-up for the characterization of aerosol release from nuclear and radioactive materials. J Aerosol Sci. 2014;70(5):36–49.
  • Harper FT, Musolino SV, Wente, WB. Realistic radiological dispersal device hazard boundaries and ramifications for early consequence management decisions. Health Phys. 2007;93(1):1–16.
  • Prouza Z, Beckova V, Cespirova I, et al. Field test using radioactive matter. Radiat Prot Dosim. 2010;139(4):519–531.
  • Lee SD, Snyder EG, Willis R, et al. Radiological dispersal device outdoor simulation test: cesium chloride particle characteristics. J Hazard Mater. 2010;176(1–3):56–63.
  • Simpson R, Fried L, Ree F, et al. Unraveling the mystery of detonation. Sci Tech Rev. 1999 June:12–18.
  • Reinhart WD, Thornhill TF, Chhabildas LC, et al. Temperature measurements of expansion products from shock compressed materials using high-speed spectroscopy. Int J Impact Eng. 2008;35:1745–1755.
  • Andersson KG, Mikkelsen T, Astrup P, et al. Estimation of health hazards resulting from a radiological terrorist attack in a city. Radiat Prot Dosim. 2008;131(3):297–307.
  • Yaws CL, Prasad NR, Chaitanya G. The Yaws handbook of vapor pressure: antoine coefficients. Houston (TX): Gulf Publishing Company; 2007.
  • Kobertz D, Mueller M, Molak A. Vaporization and caloric studies on lead titanate. Calphad. 2014;46:62–79.
  • Standring WJF, Dowdall M, Sneve M, et al. Assessment of environmental, health and safety consequences of decommissioning radioisotope thermal generators (RTGs) in Northwest Russia (Stralevern Rapport 2005:4). Osteras: Statens stralevern, Norwegian Radiation Authority; 2005. Available from: http://www.nrpa.no/dav/c600d1d288.pdf
  • Heard R. IAEA action to improve the management of disused sealed radioactive sources (DSRS) including RTGs. Paper presented at: CEG; 2008 April 23–24; Vienna.
  • Friedlander SK. Smoke, dust, and haze: fundamentals of aerosol dynamics. 2nd ed. Oxford: Oxford University Press; 2000.
  • Thongtem S, Wannapop S, Thongtem T. Characterization of CoWO4 nano-particles produced using the spray pyrolysis. Ceram Int. 2009;35(5):2087–2091.
  • Sujana-Kumari U, Suresh P, Prasada-Rao AV. Grinding-assisted solid-state metathetic synthesis of divalent transition metal tungstates. Pure Appl Chem. 2013;3(1):1–9.
  • Ruiz-Fuertes J, Errandonea D, López-Moreno S, et al. High-pressure Raman spectroscopy and lattice-dynamics calculations on scintillating MgWO: comparison with isomorphic compounds. Phys Rev B: Condens Matter. 2011;83(21):214112–214123.
  • Wu W, Yu Q, Lian J, et al. Tetragonal tungsten oxide nanobelts synthesized by chemical vapor deposition. J Cryst Growth. 2010;312:3147–3150.
  • Hanesch M. Raman spectroscopy of iron oxides and (oxy)hydroxides at low laser power and possible applications in environmental magnetic studies. Geophys J Int. 2009;177:941–948.
  • Haro-Poniatowski E, Jouanne M, Morhange JF, et al. Micro-Raman characterization of WO3 and MoO3 thin films obtained by pulsed laser irradiation. Appl Surf Sci. 1998;127–129:674–678.
  • Downs RTM. The RRUFF Project: an integrated study of the chemistry, crystallography, Raman and infrared spectroscopy of minerals. Paper presented at: 19th General Meeting of the International Mineralogical Association 2006; 2006 July 23–28; Kobe.
  • Korotcov AV, Huang YS, Tiong KK, et al. Raman scattering characterization of well-aligned RuO2 and IrO2 crystals. J Raman Spectrosc. 2007;38:737–749.
  • Sanjinds R, Aruchamy A, Lévy F. Thermal stability of sputtered iridium oxide films. J Electrochem Soc. 1989;136(6):1740–1743.
  • Merkulov VI, Fox JR, Li HC, et al. Metaloxide bilayer Raman scattering in SrTiO3 thin films. Appl Phys Lett. 1998;72(25):3291–3293.
  • Du YL, Chen G, Zhang MS. Investigation of structural phase transition in polycrystalline SrTiO3 thin films by Raman spectroscopy. Solid State Commun. 2004;130:577–580.
  • Rabuffetti FA, Kim HS, Enterkin JA, et al. Synthesis-dependent first-order Raman scattering in SrTiO3 nanocubes at room temperature. Chem Mater. 2008;20:5628–5635.
  • Zhao X, Cheung TLY, Zhang X, et al. Facile preparation of strontium tungstate and tungsten trioxide hollow spheres. J Am Ceram Soc. 2006;89(9):2960–2963.