Nicholas Santella, Ph.D.
Affiliations: | 2005 | Columbia University, New York, NY |
Area:
Environmental Sciences, HydrologyGoogle:
"Nicholas Santella"Mean distance: 7238.73
Parents
Sign in to add mentorPeter Schlosser | grad student | 2005 | Columbia | |
(Measurement of sulfur hexafluoride and CFCs in the environment: Application to groundwater dating, soil air dynamics and atmospheric mixing.) |
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Publications
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Santella N, Ho DT, Schlosser P, et al. (2012) Atmospheric variability and emissions of halogenated trace gases near New York City Atmospheric Environment. 47: 533-540 |
Santella N, Steinberg LJ, Aguirra GA. (2011) Empirical estimation of the conditional probability of natech events within the United States. Risk Analysis : An Official Publication of the Society For Risk Analysis. 31: 951-68 |
Horneman A, Stute M, Schlosser P, et al. (2008) Degradation rates of CFC-11, CFC-12 and CFC-113 in anoxic shallow aquifers of Araihazar, Bangladesh. Journal of Contaminant Hydrology. 97: 27-41 |
Santella N, Ho DT, Schlosser P, et al. (2008) Widespread elevated atmospheric SF6 mixing ratios in the Northeastern United States: Implications for groundwater dating Journal of Hydrology. 349: 139-146 |
Santella N, Schlosser P, Smethie WM, et al. (2006) Seasonal variability and long term trends of chlorofluorocarbon mixing ratios in the unsaturated zone. Environmental Science & Technology. 40: 4414-20 |
Caplow T, Schlosser P, Ho DT, et al. (2003) Transport dynamics in a sheltered estuary and connecting tidal straits: SF6 tracer study in New York Harbor. Environmental Science & Technology. 37: 5116-26 |
Santella N, Ho DT, Schlosser P, et al. (2003) Distribution of atmospheric SF6 near a large urban area as recorded in the vadose zone. Environmental Science & Technology. 37: 1069-74 |
Liu X, Assaf-Anid NM, Schlosser P, et al. (2003) Degradation of atmospheric carbon tetrachloride in soils Acs Division of Environmental Chemistry, Preprints. 43 |
Schulze SM, Santella N, Grabowski JJ, et al. (2001) The anionic oxy-Cope rearrangement: using chemical reactivity to reveal the facile isomerization of the parent substrates in the gas phase. The Journal of Organic Chemistry. 66: 7247-53 |