Matthew G. Watrous
Idaho National Laboratory
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Featured researches published by Matthew G. Watrous.
Applied Radiation and Isotopes | 2017
John E. Olson; Mary L. Adamic; Darin C. Snyder; Jacob Brookhart; Paula Hahn; Matthew G. Watrous
Iodine environmental measurements have consistently been validated in the literature using the standard material IAEA-375, soil collected approximately 160 miles northeast of Chernobyl, which is currently the only soil/sediment material with a certified 129I activity. IAEA-375 has not been available for purchase since approximately 2010. Two other standard materials that are available (NIST SRM 4354, freshwater lake sediment and NIST SRM 4357, ocean sediment) have certified activities for a variety of radionuclides but not for 129I. This paper reports a comparison of TIMS and AMS data for all three standards.
Journal of Environmental Radioactivity | 2015
Mathew S. Snow; Sue B. Clark; Samuel S. Morrison; Matthew G. Watrous; John E. Olson; Darin C. Snyder
Aeolian and pluvial processes represent important mechanisms for the movement of actinides and fission products at the Earths surface. Soil samples taken in the early 1970s near a Department of Energy radioactive waste disposal site (the Subsurface Disposal Area, SDA, located in southeastern Idaho) provide a case study for studying the mechanisms and characteristics of environmental actinide and (137)Cs transport in an arid environment. Multi-component mixing models suggest actinide contamination within 2.5 km of the SDA can be described by mixing between 2 distinct SDA end members and regional nuclear weapons fallout. The absence of chemical fractionation between (241)Am and (239+240)Pu with depth for samples beyond the northeastern corner and lack of (241)Am in-growth over time (due to (241)Pu decay) suggest mechanical transport and mixing of discrete contaminated particles under arid conditions. Occasional samples northeast of the SDA (the direction of the prevailing winds) contain anomalously high concentrations of Pu with (240)Pu/(239)Pu isotopic ratios statistically identical to those in the northeastern corner. Taken together, these data suggest flooding resulted in mechanical transport of contaminated particles into the area between the SDA and a flood containment dike in the northeastern corner, following which subsequent contamination spreading in the northeastern direction resulted from wind transport of discrete particles.
Applied Radiation and Isotopes | 2017
Troy A. Robinson; Nick R. Mann; Tracy P. Houghton; Matthew G. Watrous; John W. Peterson; Paul Fabian; Pat Hipp; Mark Reavis; Francisco M. Fernández
INL has shown that a Marinelli beaker geometry can be used for the measurement of radioactive xenon in air using an aluminum Marinelli. A carbon fiber Marinelli was designed and constructed to improve overall performance. This composite Marinelli can withstand sample pressures of 276bar and achieve approximately a 4x performance improvement in the minimum detectable concentrations (MDCs) and concentration uncertainties. The MDCs obtained during a 24h assay for 133Xe, 131mXe, and 135Xe are: 1.4, 13, and 0.35Bq/m3.
Archive | 2010
Anthony D. Appelhans; John E. Olson; Matthew G. Watrous; Michael B Ward; David A. Dahl
This report describes the operational testing of a new magnetic sector mass spectrometer that utilizes seven full-sized discrete dynode electron multipliers operating simultaneously. The instrument includes a newly developed ion dispersion lens that enables the mass dispersed individual isotope beams to be separated sufficiently to allow a full-sized discrete dynode pulse counting multiplier to be used to measure each isotope beam. The performance of the instrument was measured using SRM 996 (244Pu spike) at loadings of 2.4 and 12 fg on resin beads and with SRM 4350B Columbia River Sediment samples. The measured limit of detection (3s) for 240Pu was 3.4 attograms for SRM 996. The limit of quantitation (LOQ), defined as 10 s, was 11.2 attograms. The measured concentration of 239Pu in the CRS standard was 152 ± 6 fg/g.
International Journal of Mass Spectrometry | 2009
Matthew G. Watrous; James E. Delmore
Journal of Environmental Radioactivity | 2015
Matthew G. Watrous; James E. Delmore; Robert Hague; Tracy P. Houghton; Douglas Jenson; Nick R. Mann
International Journal of Mass Spectrometry | 2010
Matthew G. Watrous; James E. Delmore; Mark L. Stone
International Journal of Mass Spectrometry | 2017
Matthew L. Baruzzini; Howard L. Hall; Matthew G. Watrous; Khalil J. Spencer; Floyd E. Stanley
International Journal of Mass Spectrometry | 2011
Matthew G. Watrous; James E. Delmore
Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2015
Mary L. Adamic; T.E. Lister; E.J. Dufek; D.D. Jenson; John E. Olson; Christof Vockenhuber; Matthew G. Watrous