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Regina N. Tempel

Affiliations: 
Hydrogeology University of Nevada, Reno, Reno, NV, United States 
Area:
Geology, Hydrology, Geochemistry
Website:
https://www.unr.edu/geology/people/gina-tempel
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"Regina Tempel"
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Parents

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Wendy J. Harrison grad student 1993 Colorado School of Mines (Geotree)
 (Conceptual model and procedure for quantitative evaluation of diagenesis with application to the Eocene Wilcox Group of the Gulf of Mexico basin.)
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Publications

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Mohammad S, Tempel RN. (2019) Arsenic in the waters and sediments of the Humboldt River, North-Central Nevada, USA: hydrological and mineralogical investigation Environmental Earth Sciences. 78: 1-16
Tempel RN, Sturmer DM, Schilling J. (2011) Geochemical modeling of the near-surface hydrothermal system beneath the southern moat of Long Valley Caldera, California Geothermics. 40: 91-101
Lengke MF, Sanpawanitchakit C, Tempel RN. (2009) The oxidation and dissolution of arsenic-bearing sulfides Canadian Mineralogist. 47: 593-613
Balistrieri LS, Tempel RN, Stillings LL, et al. (2006) Modeling spatial and temporal variations in temperature and salinity during stratification and overturn in Dexter Pit Lake, Tuscarora, Nevada, USA Applied Geochemistry. 21: 1184-1203
Lengke MF, Tempel RN. (2005) Geochemical modeling of arsenic sulfide oxidation kinetics in a mining environment Geochimica Et Cosmochimica Acta. 69: 341-356
Lengke MF, Tempel RN. (2003) Natural realgar and amorphous AsS oxidation kinetics Geochimica Et Cosmochimica Acta. 67: 859-871
Lengke MF, Tempel RN. (2002) Reaction rates of natural orpiment oxidation at 25 to 40°C and pH 6.8 to 8.2 and comparison with amorphous As2S3 oxidation Geochimica Et Cosmochimica Acta. 66: 3281-3291
Lengke MF, Tempel RN. (2001) Kinetic rates of amorphous As2S3 OXIDATION AT 25 to 40°C and initial of 7.3 to 9.4 Geochimica Et Cosmochimica Acta. 65: 2241-2255
Tempel RN, Harrison WJ. (2000) Simulation of burial diagenesis in the Eocene Wilcox group of the Gulf of Mexico basin Applied Geochemistry. 15: 1071-1083
Tempel RN, Shevenell LA, Lechler P, et al. (2000) Geochemical modeling approach to predicting arsenic concentrations in a mine pit lake Applied Geochemistry. 15: 475-492
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