Aaron Zimmerman
Colorado State University
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Analytical Chemistry | 2015
Gang Yang; Aaron Zimmerman; Holly J. Stein; Judith L. Hannah
Determining and correcting for background contributions of Re and Os from chemical reagents is critical for accurate and precise Re-Os dating of materials with parts per billion to parts per trillion Re and Os concentrations. Here we investigate reducing Os content in nitric acid, as it is the main contributor to the Os blank. Pretreating high-purity nitric acid with hydrogen peroxide (H2O2) significantly reduces nitric acids Os contribution to femtogram levels, greatly reducing Os blank corrections. The improvement in background Os allows analysis of samples with extremely low Os concentrations (into the low ppt level). We present experimental data identifying key factors in reducing Os blank, including nitric acid to hydrogen peroxide volume ratios, wet versus dry glassware, and dark versus lighted reaction environments. These variables affect the reaction time between the two reagents, which in turn correlates inversely with the final Os content. The volume ratio of H2O2/HNO3 is shown to be the fundamental control on reaction time and final Os content, yielding a well-defined exponential relationship; minor variations in reaction time result from wet/dry glassware and light/dark reaction environment. At a H2O2/HNO3 volume ratio of ∼0.24, the total procedural Os blank is reduced from 6.5 pg (no H2O2) to 0.043 pg. The (187)Os/(188)Os of the Os blank ranges from 0.18 to 0.36, consistent with the Os blank compositions obtained by the AIRIE Program and other Re-Os laboratories worldwide, and is uncorrelated with any experimental variables. In contrast to Os, pretreatment with hydrogen peroxide did not improve the Re blank of nitric acid; Re background reduction requires conventional methods such as sub-boiling distillation.
Precambrian Research | 2004
Holly J. Stein; Judith L. Hannah; Aaron Zimmerman; Richard Markey; Sanjib Chandra Sarkar; A.B. Pal
Chemical Geology | 2007
Richard Markey; Holly J. Stein; Judith L. Hannah; Aaron Zimmerman; David Selby; Robert A. Creaser
Mineralium Deposita | 2008
Aaron Zimmerman; Holly J. Stein; Judith L. Hannah; Dejan Koželj; Kamen Bogdanov; Tudor Berza
Earth and Planetary Science Letters | 2009
Guangping Xu; Judith L. Hannah; Holly J. Stein; Bernard Bingen; Gang Yang; Aaron Zimmerman; Wolfgang Weitschat; Atle Mørk; Hermann M. Weiss
Earth and Planetary Science Letters | 2009
Guan-Fu Yang; Judith L. Hannah; Aaron Zimmerman; Holly J. Stein; Andrey Bekker
Earth and Planetary Science Letters | 2013
Joshua J. Golden; Melissa McMillan; Robert T. Downs; Grethe Hystad; Ian Goldstein; Holly J. Stein; Aaron Zimmerman; Dimitri A. Sverjensky; John T. Armstrong; Robert M. Hazen
Mineralium Deposita | 2006
Holly J. Stein; Judith L. Hannah; Aaron Zimmerman; Richard Markey
Economic Geology | 2009
Thomas Oberthür; Frank Melcher; Friedhelm Henjes-Kunst; Axel Gerdes; Holly J. Stein; Aaron Zimmerman; Mustapha El Ghorfi
Geochimica et Cosmochimica Acta | 2006
Judith L. Hannah; Holly J. Stein; Aaron Zimmerman; Guan-Fu Yang; Richard Markey; V.A. Melezhik
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National Institute of Advanced Industrial Science and Technology
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