Detailed knowledge of the groundwater flow regimen and interaction between groundwater and surface waters is a pre-condition for an understanding of geochemical processes in the subsurface. Groundwater flow velocities and directions, for example, are essential parameters for delineating trends in As concentrations and to quantify reaction rates. The hydrogeology core laboratory will provide the tools and expertise for collection and analysis of hydrogeologic data for projects numbers 5,6, and 7. The following types of data will be obtained and interpreted: hydraulic head, grain size and porosity, geophysical data (resistivity, ground penetrating radar and land seismic) and tracer data (SF6 3H/3HE, 14C, 13C, 18O, D). The equipment to be proceed and operated by the facility will include multilevel wells, in situ groundwater monitoring devices, sample preparation systems for isotopic analyses, a multi- channel seismic system, a multi electrode resistivity meter, a frequency em conductivity system, ground penetrating radar, differential GPS systems, gas chromotographs, and noble gas spectrometers. The research core will also provide three-dimensional modeling capabilities for groundwater flow simulations. The geophysical techniques including frequency em conductivity, ground-penetrating radar, resistivity and high resolution reflection seismics will be used to develop the stratigraphy in projects 5 and 6. Analyses of tritium, noble gas isotopes, SF6, carbon isotopes and stable water isotopes performed by gas chromatography and mass spectrometry will be used to derive groundwater residence times for a range of time scales (months to 10,000 of years). The combination of stratigraphic, hydraulic and tracer data will be used to build and constrain groundwater flow and transport models for projects 5, 6, and 7.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Hazardous Substances Basic Research Grants Program (NIEHS) (P42)
Project #
1P42ES010349-01
Application #
6323994
Study Section
Special Emphasis Panel (ZES1-DPB-D (G4))
Project Start
2000-06-01
Project End
2005-03-31
Budget Start
Budget End
Support Year
1
Fiscal Year
2000
Total Cost
$153,283
Indirect Cost
Name
Columbia University (N.Y.)
Department
Type
DUNS #
167204994
City
New York
State
NY
Country
United States
Zip Code
10032
Balakrishnan, Poojitha; Navas-Acien, Ana; Haack, Karin et al. (2018) Arsenic-gene interactions and beta-cell function in the Strong Heart Family Study. Toxicol Appl Pharmacol 348:123-129
Oliver-Williams, Clare; Howard, Annie Green; Navas-Acien, Ana et al. (2018) Cadmium body burden, hypertension, and changes in blood pressure over time: results from a prospective cohort study in American Indians. J Am Soc Hypertens 12:426-437.e9
Jones, Miranda R; Tellez-Plaza, Maria; Vaidya, Dhananjay et al. (2018) Ethnic, geographic and dietary differences in arsenic exposure in the multi-ethnic study of atherosclerosis (MESA). J Expo Sci Environ Epidemiol :
Balakrishnan, Poojitha; Vaidya, Dhananjay; Voruganti, V Saroja et al. (2018) Genetic Variants Related to Cardiometabolic Traits Are Associated to B Cell Function, Insulin Resistance, and Diabetes Among AmeriCan Indians: The Strong Heart Family Study. Front Genet 9:466
Balakrishnan, Poojitha; Jones, Miranda R; Vaidya, Dhananjay et al. (2018) Ethnic, Geographic, and Genetic Differences in Arsenic Metabolism at Low Arsenic Exposure: A Preliminary Analysis in the Multi-Ethnic Study of Atherosclerosis (MESA). Int J Environ Res Public Health 15:
Flanagan, Sara V; Gleason, Jessie A; Spayd, Steven E et al. (2018) Health protective behavior following required arsenic testing under the New Jersey Private Well Testing Act. Int J Hyg Environ Health 221:929-940
Spratlen, Miranda J; Grau-Perez, Maria; Best, Lyle G et al. (2018) The Association of Arsenic Exposure and Arsenic Metabolism with the Metabolic Syndrome and its Individual Components: Prospective Evidence from the Strong Heart Family Study. Am J Epidemiol :
Niedzwiecki, Megan M; Liu, Xinhua; Zhu, Huiping et al. (2018) Serum homocysteine, arsenic methylation, and arsenic-induced skin lesion incidence in Bangladesh: A one-carbon metabolism candidate gene study. Environ Int 113:133-142
Shoenfelt, Elizabeth M; Winckler, Gisela; Lamy, Frank et al. (2018) Highly bioavailable dust-borne iron delivered to the Southern Ocean during glacial periods. Proc Natl Acad Sci U S A 115:11180-11185
Haque, Ezazul; Mailloux, Brian J; de Wolff, Daisy et al. (2018) Quantitative drinking water arsenic concentrations in field environments using mobile phone photometry of field kits. Sci Total Environ 618:579-585

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