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Toxic Substances Hydrology Program

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Bibliography
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Investigations of Contamination from Sources with Mixed Wastes

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M | N | O | P | R | S | T | U | V | W | Y | Z

A

Abraham, J.D., and Lucius, J.E., 2004,
Direct current resistivity profiling to study distribution of water in the unsaturated zone near the Amargosa Desert Research Site, Nevada: U.S. Geological Survey Open-File Report 2004-1319, 16 p.
Abrams, R.H., 1999,
A compartmentalized approach to simulating redox zones in contaminated aquifers: Stanford, Calif., Stanford University, Department of Geological and Environmental Sciences, unpublished Ph.D. thesis, 182 p.
Abrams, R.H., and Loague, K., 2000,
A compartmentalized solute transport model for redox zones in contaminated aquifers--1, Theory and development: Water Resources Research, v. 36, no. 8, p. 2001-2013, 2000WR900110, doi:10.1029/2000WR900110.
Abrams, R.H., and Loague, K., 2000,
A compartmentalized solute transport model for redox zones in contaminated aquifers--2, Field-scale simulations: Water Resources Research, v. 36, no. 8, p. 2015--2029, 10.1029/2000WR900111, doi:10.1029/2000WR900111.
Abrams, R.H., Loague, K., and Kent, D.B., 1998,
Development and testing of a compartmentalized reaction network model for redox zones in contaminated aquifers: Water Resources Research, v. 34, no. 6, p. 1531-1541, 98WR00485, doi:10.1029/98WR00485.
Abudalo, R.A., Bogatsu, Y.G., Ryan, J.N., Harvey, R.W., Metge, D.W., and Elimelech, M., 2005,
The effect of ferric oxyhydroxide grain coatings on the transport of bacteriophage PRD1 and Cryptosporidium parvum oocysts in saturated porous media: Environmental Science and Technology, v. 39, no. 17, p. 6412-6419, doi:10.1021/es050159h.
Adrian, N.R., Robinson, J.A., and Suflita, J.M., 1994,
Spatial variability in biodegradation rates as evidenced by methane production from an aquifer: Applied and Environmental Microbiology, v. 60, no. 10, p. 3632-3639.
Adrian, N.R., and Suflita, J.M., 1994,
Anaerobic biodegradation of halogenated and nonhalogenated N-, S- and O-heterocylic compounds in aquifer slurries: Environmental Toxicology and Chemistry, v. 13, p. 1551-1557.
Amirbahman, A., Kent, D.B., Curtis, G.P., and Davis, J.A., 2006,
Kinetics of sorption and abiotic oxidation of arsenic(III) by aquifer materials: Geochimica et Cosmochimica Acta, v. 70, no. 3, p. 533-547, doi:10.1016/j.gca.2005.10.036.
Anderman, E.R., 1996,
The use of advective-transport observations to improve ground-water flow parameter estimation: Golden, Colorado School of Mines, Department of Geology and Geological Engineering, unpublished Ph.D. thesis, 277 p.
Anderman, E.R., and Hill, M.C., 1997,
Advective-transport observation (ADV) package, a computer program for adding advective-transport observations of steady-state flow fields to the three-dimensional ground-water-flow parameter-estimation model MODFLOWP: U.S. Geological Survey Open-File Report 97-14, 67 p.
Anderman, E.R., Hill, M.C., and Poeter, E.P., 1996,
Two-dimensional advective transport in ground-water flow parameter estimation: Ground Water, v. 34, no. 6, p. 1001-1009.
Anderman, E.R., Hill, M.C., and Poeter, E.P., 1994,
Two-dimensional advective transport in nonlinear regression--Sensitivities and uncertainty of plume-front observations, in Warner, J.W., and van der Heijde, P., eds., Proceedings, 1994 Groundwater Modeling Conference, Fort Collins, Colorado, August 10-12, 1994: Fort Collins, Colo., Colorado State University, p. 55-62.
Anderson, L.C.D., Kent, D.A., and Davis, J.A., 1992,
Reduction of Cr(VI) under mildly reducing conditions in a sand and gravel aquifer, in Kharaka, Y.K., and Maest, A.S., eds., Proceedings of the 7th International Symposium on Water-Rock Interaction -- WRI-7, Park City, Utah, July 13-18, 1992: A.A. Balkema, p. 495-498.
Anderson, L.D., Kent, D.B., and Davis, J.A., 1994,
Batch experiments characterizing the reduction of chromium(VI) using suboxic material from a mildly reducing sand and gravel aquifer: Environmental Science and Technology, v. 28, no. 1, p. 178-185, doi:10.1021/es00050a025.
Anderson, L.D., Kent, D.B., and Davis, J.A., 1991,
Adsorption and reduction of chromium (VI) under toxic conditions in a shallow sand aquifer at Cape Cod, Massachusetts, in Mallard, G.E., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Monterey, California, March 11-15, 1991: U.S. Geological Survey Water-Resources Investigations Report 91-4034, p. 63-71.
Andraski, B.J., 1997,
Soil-water movement under natural-site and waste-site conditions--A multiple-year field study in the Mojave Desert, Nevada: Water Resources Research, v. 33, no. 9, p. 1901-1916, 97WR01502, doi:10.1029/97WR01502.
Andraski, B.J., 1997,
Test-trench studies in the Amargosa Desert, southern Nevada--Results and application of information to landfill covers in arid environments, in Reynolds, T.D., and Morris, R.C., eds., Landfill capping in the semi-arid west--Problems, perspectives, and solutions, May 21-22, 1997, Jackson Lake Lodge, Wyo., Conference Proceedings: Idaho Falls, Idaho: Environmental Science and Research Foundation, ESRF-019, p. 165-179.
Andraski, B.J., 1996,
Properties and variability of soil and trench fill at an arid waste-burial site: Soil Science Society of America Journal, v. 60, no. 1, p. 54-66.
Andraski, B.J., 1996,
Simulated trench studies near Beatty, Nevada-Initial results and implications, in Stevens, P.R., and Nicholson, T.J., eds., Joint U.S. Geological Survey, U.S. Nuclear Regulatory Commission Workshop on research related to low-level radioactive waste disposal, May 4-6, 1993, National Center, Reston, Virginia, Proceedings: U.S. Geological Survey Water-Resources Investigations Report 95-4015, p. 111-118.
Andraski, B.J., 1992,
Water movement through soil at a low-level radioactive-waste site in the Amargosa Desert: U.S. Geological Survey Yearbook, Fiscal Year 1991, 73-75 p.
Andraski, B.J., 1991,
Balloon and core sampling for determining bulk density of an alluvial desert soil: Soil Science Society of America Journal, v. 55, no. 4, p. 1188-1190.
Andraski, B.J., 1990,
Water movement and trench stability at a simulated arid burial site for low-level radioactive waste near Beatty, Nevada, in Nuclear Waste Isolation in the Unsaturated Zone, Proceedings, Las Vegas, Nevada, September, 1989: La Grange Park, Ill., American Nuclear Society, p. 166-173.
Andraski, B.J., Fischer, J.M., and Prudic, D.E., 1991,
Beatty, Nevada, in Trask, N.J., and Stevens, P.R., eds., U.S. Geological Survey Research in radioactive waste disposal--Fiscal years 1986-90: U.S. Geological Survey Water-Resources Investigations Report 91-4084, p. 34-40.
Andraski, B.J., Halford, K.J., and Michel, R.L., 2004,
Plume-scale testing of a simplified method for detecting tritium contamination in plants and soil, in Workshop on Long-term Performance Monitoring of Metals and Radionuclides in the Subsurface, Reston, Virginia, April 21-22, 2004: Florida State University, Tallahassee.
Andraski, B.J., and Jacobson, E.A., 2000,
Testing a full-range soil-water retention function in modeling water potential and temperature: Water Resources Research, v. 36, no. 10, p. 3081-3089, 2000WR900193, doi:10.1029/2000WR900193.
Andraski, B.J., and Prudic, D.E., 1997,
Soil, plant, and structural considerations for surface barriers in arid environments--Application of results from studies in the Mojave Desert near Beatty, Nevada, in Barrier Technologies for Environmental Management, Summary of a workshop: Washington, D.C., National Academy Press, p. 68-78.
Andraski, B.J., Prudic, D.E., and Nichols, W.D., 1995,
Waste burial in arid environments--Application of information from a field laboratory in the Mojave Desert, southern Nevada: U.S. Geological Survey Fact Sheet FS-179-95, 4 p.
Andraski, B.J., Sandstrom, M.W., Michel, R.L., Radyk, J.C., Stonestrom, D.A., Johnson, M.J., and Mayers, C.J., 2003,
Simplified method for detecting tritium contamination in plants and soil: Journal of Environmental Quality, v. 32, no. 3, p. 988-995.
Andraski, B.J., and Scanlon, B.R., 2002,
Thermocouple psychrometry, in Dane, J.H., and Topp, G.C., eds., Methods of Soil Analysis, Part 4, Physical Methods: Madison, Wisconsin, Soil Science Society of America, p. 609-642.
Andraski, B.J., and Stonestrom, D.A., 1999,
Overview of research on water, gas, and radionuclide transport at the Amargosa Desert Research Site, Nevada, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 459-465.
Andraski, B.J., and Stonestrom, D.A., 1998,
Hydrogeologic studies at the USGS Amargosa Desert Research Site, in Taylor, E.M., ed., Quaternary geology of the Yucca Mountain area, southern Nevada, Annual Meeting, Friends of the Pleistocene, Pacific Cell, October 1998, Field Trip Guide: Friends of the Pleistocene, p. 210-216.
Andraski, B.J., Stonestrom, D.A., Michel, R.L., Halford, K.J., and Radyk, J.C., 2005,
Plant-based plume-scale mapping of tritium contamination in desert soils: Vadose Zone Journal, v. 4, p. 819-827, doi:10.2136/vzj2005.0052.
Archfield, S.A., and LeBlanc, D.R., 2005,
Comparison of diffusion- and pumped-sampling methods to monitor volatile organic compounds in ground water, Massachusetts Military Reservation, Cape Cod, Massachusetts, July 1999-December 2002: U.S. Geological Survey Scientific Investigations Report 2005-5010, 53 p.
Ard, R.A., 1997,
Natural and artificial colloid mobilization in a sewage-contaminated aquifer: Field and laboratory studies: Boulder, University of Colorado, Department of Civil, Environmental, and Architectural Engineering, unpublished M.S. thesis, 202 p.

B

Backhus, D.A., 1990,
Colloids in groundwater--Laboratory and field studies of their influence on hydrophobic organic contaminants: Cambridge, Massachusetts Institute of Technology, Department of Civil Engineering, unpublished Ph.D. thesis, 198 p.
Backhus, D.A., and Gschwend, P.M., 1990,
Fluorescent polycyclic aromatic hydrocarbons as probes for studying the impact of colloids on pollutant transport in groundwater: Environmental Science and Technology, v. 24, no. 8, p. 1214-1223, doi:10.1021/es00078a009.
Backhus, D.A., Ryan, J.N., Groher, D.M., MacFarlane, J.K., and Gschwend, P.M., 1993,
Sampling colloids and colloid-associated contaminants in ground water: Ground Water, v. 31, no. 3, p. 466-479.
Báez-Cazull, S., McGuire, J.T., Cozzarelli, I.M., Raymond, A., and Welsh, L., 2007,
Centimeter-scale characterization of biogeochemical gradients at a wetland-aquifer interface using capillary electrophoresis: Applied Geochemistry, v. 22, no. 12, p. 2664-2683, doi:10.1016/j.apgeochem.2007.06.003 (Special Issue--Biogeochemical Gradients--Microbes, Measurements, and Modeling, Biogeochemical Gradients: Microbes, Measurements, and Modeling).
Báez-Cazull, S.E., McGuire, J.T., Cozzarelli, I.M., and Voytek, M.A., 2008,
Determination of dominant biogeochemical processes in a contaminated aquifer-wetland system using multivariate statistical analysis: Journal of Environmental Quality, v. 37, no. 1, p. 30-46, doi:10.2134/jeq2007.0169.
Bales, R.C., Gerba, C.P., Hinkle, S., Kroeger, T., Li, S., McGuire, K., Stocking, K., and Yahya, M., 1990,
Surface-chemical factors affecting transport of biocolloids in subsurface porous media: Tucson, Arizona, University of Arizona, Department of Hydrology and Water Resources, 137 p.
Bales, R.C., Li, S., Maguire, K.M., Yahya, M.T., Gerba, C.P., and Harvey, R.W., 1995,
Virus and bacteria transport in a sandy aquifer, Cape Cod, MA: Ground Water, v. 33, no. 4, p. 653-661.
Barber, L.B., 2002,
Long term fate of organic micro-pollutants in the subsurface environment, Cape Cod, Massachusetts--From field studies to experimentation, in Aiken, G.R., and Kuniansky, E.L., eds., U.S. Geological Survey artificial Recharge Workshop Proceedings, Sacramento, California, April 2-4, 2002: U.S. Geological Survey Open-File Report 02-89, p. 34-37.
Barber, L.B., 1992,
Hierarchical analytical approach to evaluating the transport and biogeochemical fate of organic compounds in sewage-contaminated groundwater, Cape Cod, Massachusetts, in Lesage, S., and Jackson, R.E., eds., Groundwater contamination and analysis at hazardous waste sites: New York, Marcel Dekker, p. 73-120.
Barber, L.B., II, 1998,
Organic carbon fractionation and specific organic compounds, in Savoie, J., and LeBlanc, D.R., eds., Water-quality data and methods of analysis for samples collected near a plume of sewage-contaminated ground water, Ashumet Valley, Cape Cod, Massachusetts, 1993-94: U.S. Geological Survey Water-Resources Investigations Report 97-4269, p. 16-19.
Barber, L.B., II, 1994,
Sorption of chlorobenzenes to Cape Cod aquifer sediments: Environmental Science and Technology, v. 28, no. 5, p. 890-897, doi:10.1021/es00054a021.
Barber, L.B., II, 1991,
Effects of particle size and mineralogy on sorption of nonionic organic solutes to glacial outwash sediments, Cape Cod, Massachusetts, in Mallard, G.E., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Monterey, California, March 11-15, 1991: U.S. Geological Survey Water-Resources Investigations Report 91-4034, p. 111-115.
Barber, L.B., II, 1990,
Geochemical heterogeneity in a glacial outwash aquifer--Effect of particle size and mineralogy on sorption of nonionic organic solutes: Boulder, University of Colorado, Department of Geological Sciences, unpublished Ph.D. thesis, 238 p.
Barber, L.B., II, 1989,
Influence of geochemical heterogeneity in a sand and gravel aquifer on the sorption of chlorobenzenes, in Mallard, G.E., and Ragone, S.E., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Phoenix, Arizona, September 26-30, 1988: U.S. Geological Survey Water-Resources Investigations Report 88-4220, p. 177-182.
Barber, L.B., II, 1988,
Dichlorobenzene in ground water--Evidence for long-term persistence: Ground Water, v. 26, no. 6, p. 696-702.
Barber, L.B., II, 1987,
Influence of geochemical heterogeneity in a sand and gravel aquifer on the transport of nonionic organic solutes--Methods of sediment characterization, in Franks, B.J., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the third technical meeting, Pensacola, Florida, March 23-27, 1987: U.S. Geological Survey Open-File Report 87-109, p. B-45-B-51.
Barber, L.B., II, 1985,
Geochemistry of organic and inorganic compounds in a sewage-contaminated aquifer, Cape Cod, Massachusetts: Boulder, University of Colorado, Department of Geological Sciences, unpublished M.S. thesis, 169 p.
Barber, L.B., II, Krueger, C., Metge, D.W., Harvey, R.W., and Field, J.A., 1995,
Fate of linear alkylbenzene sulfonate in groundwater--Implications for in situ surfactant-enhanced remediation, in Sabatini, D.A., Knox, R.C., and Harwell, J.H., eds., Surfactant-enhanced subsurface remediation--emerging technologies: Washington, D.C., American Chemical Society ACS Symposium Series 594, p. 95-111.
Barber, L.B., II, Thurman, E.M., Field, J.A., Leenheer, J.A., and LeBlanc, D.R., 1991,
Biogeochemical fate of organic compounds in sewage-contaminated ground water, Cape Cod, Massachusetts, in Mallard, G.E., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Monterey, California, March 11-15, 1991: U.S. Geological Survey Water-Resources Investigations Report 91-4034, p. 102-105.
Barber, L.B., II, Thurman, E.M., and Runnells, D.D., 1992,
Geochemical heterogeneity in a sand and gravel aquifer--Effect of sediment mineralogy and particle size on the sorption of chlorobenzenes: Journal of Contaminant Hydrology, v. 9, no. 1, p. 35-54, doi:10.1016/0169-7722(92)90049-K.
Barber, L.B., II, Thurman, E.M., and Schroeder, M.P., 1988,
Trace organic substances in sewage-contaminated ground water, in Ragone, S.E., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the second technical meeting, Cape Cod, Massachusetts, October 21-25, 1985: U.S. Geological Survey Open-File Report 86-481, p. B-19-B-20.
Barber, L.B., II, Thurman, E.M., and Schroeder, M.P., 1984,
Closed-loop stripping combined with capillary gas chromatography/mass spectrometry analysis to define a semi-volatile organic contaminant plume, in LeBlanc, D.R., ed., Movement and fate of solutes in a plume of sewage-contaminated ground water, Cape Cod, Massachusetts--U.S. Geological Survey Toxic Waste Ground-Water Contamination Program--Papers presented at the toxic waste technical meeting, Tucson, Arizona, March 20-22, 1984: U.S. Geological Survey Open-File Report 84-475, p. 89-114.
Barber, L.B., II, Thurman, E.M., Schroeder, M.P., and LeBlanc, D.R., 1988,
Long-term fate of organic micropollutants in sewage-contaminated groundwater: Environmental Science and Technology, v. 22, no. 2, p. 205-211, doi:10.1021/es00167a012.
Barber, L.B., II, Thurman, E.M., Takahashi, Y., and Noriega, M., 1991,
Purgeable organic chloride--A surrogate measurement for screening and monitoring volatile-chlorinated hydrocarbons in ground water, in Mallard, G.E., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Monterey, California, March 11-15, 1991: U.S. Geological Survey Water-Resources Investigations Report 91-4034, p. 106-110.
Barber, L.B., II, Thurman, E.M., Takahashi, Y., and Noriega, M.C., 1992,
Comparison of purge and trap GC/MS and purgeable organic chloride analysis for monitoring volatile chlorinated hydrocarbons: Ground Water, v. 30, no. 6, p. 836-848, doi:10.1111/j.1745-6584.1992.tb01565.x.
Barber, L.B., and Keefe, S.H., 1999,
Evolution of a ground-water sewage plume after removal of the 60-year-long source, Cape Cod, Massachusetts--Changes in the distribution of dissolved oxygen, boron, and organic carbon, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 261-270.
Barlow, P.M., 1987,
The use of temperature as a ground-water tracer in glacial outwash: Tucson, University of Arizona, Department of Hydrology and Water Resources, unpublished M.S. thesis, 141 p.
Barlow, P.M., and LeBlanc, D.R., 1992,
A study of ground-water flow beneath the Massachusetts Military Reservation, Cape Cod, Massachusetts, Project Description, August 1992: U.S. Geological Survey Open-File Report 92-143, 2 p.
Barnes, K.K., Christenson, S.C., Kolpin, D.W., Focazio, M.J., Furlong, E.T., Zaugg, S.D., Meyer, M.T., and Barber, L.B., 2004,
Pharmaceuticals and other organic waste water contaminants within a leachate plume downgradient of a municipal landfill: Ground Water Monitoring and Remediation, v. 24, no. 2, p. 119-126, doi:10.1111/j.1745-6592.2004.tb00720.x.
Bau, M., Alexander, B., Chesley, J.T., Dulski, P., and Brantley, S.L., 2004,
Mineral dissolution in the Cape Cod aquifer, Massachusetts, USA--I. Reaction stoichiometry and impact of accessory feldspar and glauconite on strontium isotopes, solute concentrations, and REY distribution: Geochimica et Cosmochimica Acta, v. 68, no. 6, p. 1199-1216, doi:10.1016/j.gca.2003.08.015.
Baumgartner, L.K., 2000,
Short-term, single-well injection experiments in a sand and gravel aquifer--Applicability for the measurement of nitrate production and consumption rates in situ: Boulder, University of Colorado, Department of Environmental, Population, and Organismic Biology, Unpublished M.A. thesis, 96 p.
Becker, C.J., 2002,
Hydrogeology and leachate plume delineation at a closed municipal landfill, Norman, Oklahoma: U.S. Geological Survey Water-Resources Investigations Report 01-4168, 36 p.
Bedient, P.B., Rifai, H.S., and Newell, C.J., 1999,
Natural gradient tracer test, Cape Cod, Massachusetts, in Bedient, P.B., Rifai, H.S., and Newell, C.J., eds., Ground water contamination transport and remediation--Upper Saddle River, New Jersey: Prentice-Hall, p. 193-198 (section 6.10.2).
Bedinger, M.S., 1989,
Geohydrologic aspects for siting and design of low-level radioactive-waste disposal: U.S. Geological Survey Circular 1034, 36 p.
Bisdorf, R.J., 2002,
Schlumberger soundings at the Amargosa Desert Research Site, Nevada: U.S. Geological Survey Open-File Report 02-0140.
Bisdorf, R.J., 1996,
Schlumberger soundings at the Norman Landfill, Norman, Oklahoma: U.S. Geological Survey Open-File Report 96-668, 45 p.
Bisdorf, R.J., and Lucius, J.E., 1999,
Mapping the Norman, Oklahoma, landfill contaminant plume using electrical geophysics, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 579-584.
Bitton, G., and Harvey, R.W., 1992,
Transport of pathogens through soils and aquifers, in Mitchell, R., ed., Environmental Microbiology: New York, Wiley-Liss, p. 103-124.
Bjerg, P.L., Albrechtsen, H.J., Kjeldsen, P., Christensen, T.H., and Cozzarelli, I.M., 2003,
The groundwater geochemistry of waste disposal facilities (chapter 16), in Lollar, B.S., ed., Treatise on Geochemistry: Elsevier, v. 9 of 10 volumes, p. 579-612, ISBN:9780080437514.
Blanford, W.J., Brusseau, M.L., Yeh, T.C.J., Gerba, C.P., and Harvey, R.W., 2005,
Influence of water chemistry and travel distance on bacteriophage PRD-1 transport in a sandy aquifer: Water Research, v. 39, no. 11, p. 2345-2357, doi:10.1016/j.watres.2005.04.009.
Böhlke, J.K., Smith, R.L., Coplen, T.B., Busenberg, E., and LeBlanc, D.R., 1999,
Recharge conditions and flow velocities of contaminated and uncontaminated ground waters at Cape Cod, Massachusetts--Evaluation of 2H/1H, 18O/16O and dissolved gases, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 337-348.
Böhlke, J.K., Smith, R.L., and Miller, D.N., 2006,
Ammonium transport and reaction in contaminated groundwater--Application of isotope tracers and isotope fractionation studies: Water Resources Research, v. 42, W05411, doi:10.1029/2005WR004349.
Boyd, S., 2007,
Transverse vertical dispersion of chemotactic bacteria in response to a chemical gradient: Charlottesville, University of Virginia, Deptartmet of Chemical Engineering, M.S. Thesis.
Breit, G.N., Tuttle, M.L.W., Cozzarelli, I.M., Christenson, S.C., Jaeschke, J.B., Fey, D.L., and Berry, C.J., 2005,
Results of chemical and isotopic analyses of sediment and water from alluvium of the Canadian River near a closed municipal landfill, Norman, Oklahoma: U.S. Geological Survey Open-File Report 2005-1091, 43 p.
Brooks, M.H., 1991,
Development and evaluation of a technique for measuring denitrification enzyme activity in nitrate-contaminated ground water: Golden, Colorado School of Mines, Department of Chemistry and Geochemistry, unpublished M.S. thesis, 94 p.
Brooks, M.H., and Smith, R.L., 1989,
Total adenylate and adenylate energy charge measurements from bacterial communities in ground water, in Mallard, G.E., and Ragone, S.E., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Phoenix, Arizona, September 26-30, 1988: U.S. Geological Survey Water-Resources Investigations Report 88-4220, p. 541-545.
Brooks, M.H., Smith, R.L., and Garabedian, S.P., 1996,
Small-scale tracer tests applied to the measurement of in situ denitrification rates in a sewage-contaminated aquifer, Cape Cod, Massachusetts, in Morganwalp, D.W., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Colorado Springs, Colorado, September 20-24, 1993: U.S. Geological Survey Water-Resources Investigations Report 94-4015, v. 1, p. 243-248.
Brooks, M.H., Smith, R.L., and Macalady, D.L., 1992,
Inhibition of existing denitrification enzyme activity by chloramphenicol: Applied and Environmental Microbiology, v. 58, no. 5, p. 1746-1753.
Brown, R.G., and Nichols, W.D., 1990,
Selected meteorological data for an arid climate over bare soil near Beatty, Nye County, Nevada, November 1977 through May 1980: U.S. Geological Survey Open-File Report 90-195, 48 p.
Bruner, M., Rao, M., Hull, M.A., Dumont, J.N., Jones, T., and Bantle, J.A., 1998,
Ground and surface water developmental toxicity at a municipal landfill: Description and weather-related variation: Ecotoxicology and Environmental Safety, v. 39, p. 215-226.
Brusseau, M.L., and Srivastava, R., 1999,
Nonideal transport of reactive solutes in heterogeneous porous media--4, Analysis of the Cape Cod natural-gradient field experiment: Water Resources Research, v. 35, no. 4, p. 1113-1125, 1998WR900019, doi:10.1029/1998WR900019.
Bunn, A.L., 1992,
Techniques for enumerating protozoa in saturated subsurface sediments: Durham, University of New Hampshire, Department of Civil Engineering, unpublished Ph.D. thesis, 317 p.
Bunn, R.A., Magelky, R.D., Ryan, J.N., and Elimelech, M., 2002,
Mobilization of natural colloids from an iron oxide-coated sand aquifer--Effect of pH and ionic strength: Environmental Science and Technology, v. 36, no. 3, p. 314-322, doi:10.1021/es0109141.
Bussey, K.W., 1998,
Ferrous iron and phosphate for screened-auger samples, in Savoie, J., and LeBlanc, D.R., eds., Water-quality data and methods of analysis for samples collected near a plume of sewage-contaminated ground water, Ashumet Valley, Cape Cod, Massachusetts, 1993-94: U.S. Geological Survey Water-Resources Investigations Report 97-4269, p. 23.
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Modeling the effects of variable groundwater chemistry on adsorption of molybdate: Water Resources Research, v. 31, no. 2, p. 347-357, 94WR02675, doi:10.1029/94WR02675.
Stollenwerk, K.G., 1991,
Simulation of molybdate sorption with the diffuse layer surface-complexation model, in Mallard, G.E., and Aronson, D.A., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Monterey, California, March 11-15, 1991: U.S. Geological Survey Water-Resources Investigations Report 91-4034, p. 47-52.
Stollenwerk, K.G., and Colman, J.A., 2003,
Natural remediation potential of arsenic-contaminated ground water, in Welch, A.H., and Stollenwerk, K.G., eds., Arsenic in Groundwater--Geochemistry and Occurrence: Boston, Kluwer Academic Press, p. 351-379.
Stollenwerk, K.G., and Grove, D.B., 1987,
Natural-gradient tracer test in sand and gravel--Non-conservative transport of molybdenum, in Franks, B.J., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the third technical meeting, Pensacola, Florida, March 23-27, 1987: U.S. Geological Survey Open-File Report 87-109, p. B-17-B-22.
Stollenwerk, K.G., and Kipp, K.L., 1990,
Simulation of molybdate transport with different rate-controlled mechanisms, in Melchior, D.C., and Bassett, R.L., eds., Chemical modeling of aqueous systems II: Washington, D.C., American Chemical Society ACS Symposium Series 416, p. 243-257.
Stollenwerk, K.G., and Kipp, K.L., 1989,
Simulation of the rate-controlled transport of molybdate in column experiments, in Mallard, G.E., and Ragone, S.E., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Phoenix, Arizona, September 26-30, 1988: U.S. Geological Survey Water-Resources Investigations Report 88-4220, p. 151-161.
Stollenwerk, K.G., and Parkhurst, D.L., 1999,
Modeling the evolution and natural remediation of a ground-water sewage plume, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 371-381.
Stonestrom, D.A., Abraham, J.D., Andraski, B.J., Baker, R.J., Mayers, C.J., Michel, R.L., Prudic, D.E., Striegl, R.G., and Walvoord, M.A., 2004,
Monitoring radionuclide contamination in the unsaturated zone--Lessons learned at the Amargosa Desert Research Site, Nye County, Nevada, in Workshop on Long-term Performance Monitoring of Metals and Radionuclides in the Subsurface, Reston, Virginia, April 21-22, 2004: Florida State University, Tallahassee.
Stonestrom, D.A., and Blasch, K.W., 2003,
Determining temperature and thermal properties for heat-based studies of surface-water ground-water interactions, in Stonestrom, D.A., and Constantz, Jim, eds., Heat as a Tool for Studying the Movement of Ground Water Near Streams: U.S. Geological Survey Circular 1260, 73-80 p.
Stonestrom, D.A., Prudic, D.E., Laczniak, R.J., and Akstin, K.C., 2004,
Tectonic, climatic, and land-use controls on ground-water recharge in an arid alluvial basin--Amargosa Desert, U.S.A., in Hogan, J.F., Phillips, F.M., and Scanlon, B.R., eds., Groundwater recharge in a desert environment--The southwestern United States: Washington, D.C., American Geophysical Union, p. 29-47.
Stonestrom, D.A., Prudic, D.E., Laczniak, R.J., Akstin, K.C., Boyd, R.A., and Henkelman, K.K., 2003,
Estimates of deep percolation beneath native vegetation, irrigated fields, and the Amargosa-River Channel, Amargosa Desert, Nye County, Nevada: U.S. Geological Survey Open-File Report 03-104, 83 p.
Stonestrom, D.A., Prudic, D.E., and Striegl, R.G., 1999,
Isotopic composition of water in a deep unsaturated zone beside a radioactive-waste disposal area near Beatty, Nevada, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 467-473.
Stonestrom, D.A., Prudic, D.E., Walvoord, M.A., Abraham, J.D., Stewart-Deaker, A.E., Glancy, P.A., Constantz, J., Laczniak, R.J., and Andraski., B.J., 2007,
Focused ground-water recharge in the Amargosa Desert Basin, in Stonestrom, D.A., Constantz, J., Ferre, T.P.A., and Leake, S.A., eds., Ground-water recharge in the arid and semiarid southwestern United States: U.S. Geological Survey Professional Paper 1703-E, p. 107-136.
Striegl, R.G., Healy, R.W., Michel, R.L., and Prudic, D.E., 1998,
Tritium in unsaturated zone gases and air at the Amargosa Desert Research Site, and in spring and river water, near Beatty, Nevada, May 1997: U.S. Geological Survey Open-File Report 97-778, 13 p.
Striegl, R.G., Prudic, D.E., Duval, J.S., Healy, R.W., Landa, E.R., Pollock, D.W., Thorstenson, D.C., and Weeks, E.P., 1996,
Factors affecting tritium and 14carbon distributions in the unsaturated zone near the low-level radioactive-waste burial site south of Beatty, Nevada: U.S. Geological Survey Open-File Report 96-110, 16 p.
Striker, L.K., 1998,
Variable organic carbon loading to a contaminated aquifer and the effect on the in situ microbial community: Durham, University of New Hampshire, Department of Civil Engineering, unpublished M.S. project paper, 239 p.
Suflita, J.M., and Concannon, F., 1995,
Screening tests for assessing the anaerobic biodegradation of pollutant chemicals in subsurface environments: Journal of Microbiological Methods, v. 21, p. 267-281.
Suflita, J.M., Londry, K.L., and Ulrich, G.A., 1996,
The determination of anaerobic biodegradation activity, in Hurst, C.J., and others, eds., Manual of Environmental Microbiology: Washington, D.C., American Society for Microbiology, p. 790-801.
Suflita, J.M., and Townsend, G.T., 1995,
The microbiol ecology and physiology of aryl dehalogenation reactions and implications for bioremediation, in Young, L.Y., and Cerniglia, C., eds., Microbial transformation and degradation of toxic organic chemicals: New York, John Wiley and Sons, Inc., p. 237-262.

T

Thiem, S.M., Krumme, M.L., Smith, R.L., and Tiedje, J.M., 1994,
Use of molecular techniques to evaluate the survival of a microorganism injected into an aquifer: Applied and Environmental Microbiology, v. 60, no. 4, p. 1059-1067.
Thierrin, J., and Kitanidis, P.K., 1994,
Solute dilution at the Borden and Cape Cod groundwater tracer tests: Water Resources Research, v. 30, no. 11, p. 2883-2890, 94WR01983, doi:10.1029/94WR01983.
Thompson, K.D., 1993,
The stochastic characterization of glacial aquifers using geologic information: Cambridge, Massachusetts Institute of Technology, Department of Civil and Environmental Engineering, unpublished Ph.D. thesis, 309 p.
Thorstenson, D.C., and Parkhurst, D.L., 2002,
Calculation of individual isotope equilibrium constants for implementation in geochemical models: U.S. Geological Survey Water-Resources Investigations Report 02-4172, 129 p.
Thurman, E.M., 1987,
A conceptual chemical process model for sewage contamination of a sand and gravel aquifer, in Franks, B.J., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the third technical meeting, Pensacola, Florida, March 23-27, 1987: U.S. Geological Survey Open-File Report 87-109, p. B-37-B-42.
Thurman, E.M., and Barber, L.B., II, 1988,
Movement and fate of detergent in sewage contaminated ground water, in Ragone, S.E., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the second technical meeting, Cape Cod, Massachusetts, October 21-25, 1985: U.S. Geological Survey Open-File Report 86-481, p. B-23-B-24.
Thurman, E.M., Barber, L.B., II, Ceazan, M.L., Smith, R.L., Brooks, M.G., Schroeder, M.P., Keck, A.J., Driscoll, A.J., LeBlanc, D.R., and Nichols, W.J., Jr., 1984,
Sewage contaminants in ground water, in LeBlanc, D.R., ed., Movement and fate of solutes in a plume of sewage-contaminated ground water, Cape Cod, Massachusetts--U.S. Geological Survey Toxic Waste Ground-Water Contamination Program--Papers presented at the toxic waste technical meeting, Tucson, Arizona, March 20-22, 1984: U.S. Geological Survey Open-File Report 84-475, p. 47-88.
Thurman, E.M., Barber, L.B., II, and LeBlanc, D.R., 1986,
Movement and fate of detergents in ground water-A field study: Journal of Contaminant Hydrology, v. 1, no. 1, p. 143-161, doi:10.1016/0169-7722(86)90013-6.
Thurman, E.M., Brooks, M.G., and Barber, L.B., II, 1988,
Sampling and analysis of volatile organic compounds in a plume of sewage-contaminated ground water, in Ragone, S.E., ed., U.S. Geological Survey Program on Toxic Waste--Ground-Water Contamination--Proceedings of the second technical meeting, Cape Cod, Massachusetts, October 21-25, 1985: U.S. Geological Survey Open-File Report 86-481, p. B-21-B-22.
Thurman, E.M., and Field, J., 1989,
Separation of humic substances and anionic surfactants from ground water by selective adsorption, in Suffet, I.H., and MacCarthy, P., eds., Aquatic humic substances--Influence on fate and treatment of pollutants: Washington, D.C., American Chemical Society Advances in Chemistry Series 219, p. 108-114.
Thurman, E.M., Willoughby, T., Barber, L.B., II, and Thorn, K.A., 1987,
Determination of alkylbenzenesulfonate surfactants in groundwater using macroreticular resins and carbon-13 nuclear magnetic resonance spectrometry: Analytical Chemistry, v. 59, no. 14, p. 1798-1802, doi:10.1021/ac00141a013.
Townsend, G.T., Ranamand, K., and Suflita, J.M., 1997,
Reductive dehalogenation and mineralization of 3-chlorobenzoate in the presence of sulfate by microorganisms from a methanogenic aquifer: Applied and Environmental Microbiology, v. 63, no. 7, p. 2785-2791.
Tumbusch, M.L., and Prudic, D.E., 2000,
Temperatures and water potentials in shallow unsaturated alluvium next to a burial site for low-level radioactive waste, Amargosa Desert, Nye County, Nevada, 1987-96: U.S. Geological Survey Water-Resources Investigations Report 99-4261, 37 p.

U

U.S. Geological Survey, 1998,
Land and people--Finding a balance--Cape Cod (An online everyone study guide for high school students and teachers): U.S. Geological Survey, access date November 21, 2006.
Ulrich, G.A., Breit, G.N., Cozzarelli, I.M., and Suflita, J.M., 2003,
Sources of sulfate supporting anaerobic metabolism in a contaminated aquifer: Environmental Science and Technology, v. 37, no. 6, p. 1093-1099, doi:10.1021/es011288a.
Ulrich, G.A., Krumholz, L.R., and Suflita, J.M., 1997,
A rapid and simple method for estimating sulfate reduction activity and quantifying inorganic sulfides: Applied and Environmental Microbiology, v. 63, no. 4, p. 1627-1630.

V

Verstraeten, I.M., Fetterman, G.S., Sebree, S.K., Meyer, M.T., and Bullen, T.D., 2004,
Is septic waste affecting drinking water from shallow domestic wells along the Platte River in eastern Nebraska?: U.S. Geological Survey Fact Sheet 072-03, 4 p.
Voss, C.I., and Knopman, D.S., 1990,
Strong classical one-dimensional descriptions of field solute transport exist! Modeling the Cape Cod tracer test, in Solving Ground Water Problems with Models, Indianapolis, Indiana, February 7-9, 1989: Dublin, Ohio, National Water Well Association, p. 209-232.

W

Wahlquist, A.M., 2000,
The abundance and diversity of autohydrogenotropic denitrifying bacteria in four aquifers: Boulder, University of Colorado, Department of Environmental, Population, and Organic Biology, Unpublished M.A. thesis, 72 p.
Walter, D.A., and LeBlanc, D.R., 1997,
Geochemical and hydrologic considerations in remediating phosphorus-contaminated ground water in a sewage plume near Ashumet Pond, Cape Cod Massachusetts: U.S. Geological Survey Open-File Report 97-202, 20 p.
Walter, D.A., LeBlanc, D.R., Stollenwerk, K.G., and Campo, K.W., 1999,
Phosphorus transport in sewage-contaminated ground water, Massachusetts Military Reservation, Cape Cod, Massachusetts, in Morganwalp, D.W., and Buxton, H.T., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the Technical Meeting, Charleston, South Carolina, March 8-12, 1999--Volume 3 of 3--Subsurface Contamination from Point Sources: U.S. Geological Survey Water-Resources Investigations Report 99-4018C, p. 305-315.
Walter, D.A., and Masterson, J.P., 2003,
Simulation of advective flow under steady-state and transient recharge conditions, Camp Edwards, Massachusetts Military Reservation, Cape Cod, Massachusetts: U.S. Geological Survey Water-Resources Investigations Report 03-4053, 51 p.
Walter, D.A., Masterson, J.P., and LeBlanc, D.R., 2002,
Simulated pond-aquifer interactions under natural and stressed conditions near Snake Pond, Cape Cod, Massachusetts: U.S. Geological Survey Water-Resources Investigations Report 99-4174, 35 p.
Walter, D.A., Rea, B.A., Stollenwerk, K.G., and Savoie, J., 1996,
Geochemical and hydrologic controls on phosphorus transport in a sewage-contaminated sand and gravel aquifer near Ashumet Pond, Cape Cod, Massachusetts: U.S. Geological Survey Water-Supply Paper 2463, 89 p.
Walton-Day, K., Macalady, D.L., Brooks, M.H., and Tate, V.T., 1990,
Field methods for the determination of ground-water redox parameters: Ground Water Monitoring Review, v. 10, no. 4, p. 81-89.
Walvoord, M.A., 2005,
Review of FEHM: Southwest Hydrology, v. 4, no. 6, p. 41.
Walvoord, M.A., Andraski, B.J., Krabbenhoft, D.P., and Striegl, R.G., 2008,
Transport of elemental mercury in the unsaturated zone from a waste disposal site in an arid region: Applied Geochemistry, v. 23, no. 3, p. 572-583, doi:10.1016/j.apgeochem.2007.12.014.
Walvoord, M.A., and Phillips, F.M., 2004,
Identifying areas of basin-floor recharge in the Trans-Pecos region and the link to vegetation: Journal of Hydrology, v. 292, no. 1-4, p. 59-74, doi:10.1016/j.jhydrol.2003.12.029.
Walvoord, M.A., Phillips, F.M., Stonestrom, D.A., Evans, R.D., Hartsough, P.C., Newman, B.D., and Striegl, R.G., 2004,
Response to comment on "A reservoir of nitrate beneath desert soils": Science, v. 304, p. 51, doi:10.1126/science.1095033.
Walvoord, M.A., Phillips, F.M., Stonestrom, D.A., Evans, R.D., Hartsough, P.C., Newman, B.D., and Striegl, R.G., 2003,
A reservoir of nitrate beneath desert soils: Science, v. 302, no. 5647, p. 1021-1024, doi:10.1126/science.1086435.
Walvoord, M.A., Phillips, F.M., Tyler, S.W., and Hartsough, P.C., 2002,
Deep arid system hydrodynamics--2, Application to paleohydrologic reconstruction using vadose zone profiles from the northern Mojave Desert: Water Resources Research, v. 38, no. 12, p. 27-1 to 27-12, 2001WR000825, doi:10.1029/2001WR000825.
Walvoord, M.A., Plummer, M.A., Phillips, F.M., and Wolfsberg, A.V., 2002,
Deep arid system hydrodynamics--1, Equilibrium states and response times in thick desert vadose zones: Water Resources Research, v. 38, no. 12, p. 44-1 to 44-15, 2001WR000824, doi:10.1029/2001WR000824.
Walvoord, M.A., and Scanlon, B.R., 2004,
Hydrologic processes in deep vadose zones in interdrainage arid environments, in Hogan, J.F., Phillips, F.M., and Scanlon, B.R., eds., Groundwater recharge in a desert environment--The southwestern United States: Washington, D.C., American Geophysical Union, p. 15-28.
Walvoord, M.A., and Stonestrom, D.A., 2004,
Enhanced gas-phase transport in a deep unsaturated zone, Amargosa Desert (U.S.A.), in Kovar, K., Hrkal, Z., and Bruthans, J., eds., Proceedings of International Conference on Finite-element Models, MODFLOW, and More, Karlovy Vary, Czech Republic, September 12-16, 2004: IAHS, p. 227-230.
Walvoord, M.A., Stonestrom, D.A., Andraski, B.J., and Striegl, R.G., 2004,
Constraining the inferred paleohydrologic evolution of a deep unsaturated zone in the Amargosa Desert: Vadose Zone Journal, v. 3, p. 502-512.
Walvoord, M.A., Striegl, R.G., Prudic, D.E., and Stonestrom, D.A., 2005,
CO2 dynamics in the Amargosa Desert--Fluxes and isotopic speciation in a deep unsaturated zone: Water Resources Research, v. 41, no. 2, W02006, doi:10.1029/2004WR003599.
Wang, M., 2007,
Bacterial chemotaxis through a sand plug in response to a consumable chemoattractant: Charlottesville, University of Virginia, Department of Chemical Engineering, M.S. Dissertation.
Wang, M., Ford, R.M., and Harvey, R.W., 2008,
Coupled effect of chemotaxis and growth on microbial distributions in organic-amended aquifer sediments--Observations from laboratory and field studies, doi:10.1021/es702392h (Advanced Web release).
Watada, M., 1997,
Natural denitrification in a sewage contaminant plume, Cape Cod, Massachusetts: University of Colorado at Boulder, Dept. of Civil and Environmental Engineering unpublished project report, variously p.
Weiss, J.V., and Cozzarelli, I.M., 2008,
Biodegradation in contaminated aquifers--Incorporating microbial/molecular methods: Ground Water, v. 46, no. 2, p. 305-322, doi:10.1111/j.1745-6584.2007.00409.x.
White, A.F., Schulz, M.S., Vivit, D.V., Blum, A.E., and Stonestrom, D.A., 2006,
Controls on pore water solutes--An approach for distinguishing between biogenic and lithogenic processes: Journal of Geochemical Exploration, v. 88, no. 1-3, p. 363-366, doi:10.1016/j.gexplo.2005.08.076.
Winfield, K.A., and Nimmo, J.R., 2002,
Controlled liquid-volume [water retention and storage], in Dane, J.H., and Topp, G.C., eds., Methods of Soil Analysis, Part 4, Physical Methods: Madison, Wisconsin, Soil Science Society of America, p. 698-703, 717-720.
Wolf, S.H., 1988,
Spatial variability of hydraulic conductivity in a sand and gravel aquifer: Cambridge, Massachusetts Institute of Technology, Department of Civil Engineering, unpublished M.E. thesis, 118 p.
Wolf, S.H., Celia, M.A., and Hess, K.M., 1991,
Evaluation of hydraulic conductivities calculated from multi-port permeameter measurements: Ground Water, v. 29, no. 4, p. 516-525.
Wong, D., Sulfita, J.M., McKinley, J.P., and Krumholz, L.R., 2004,
Impact of clay minerals on sulfate-reducing activity in aquifers: Microbial Ecology, v. 47, no. 1, p. 80-86, doi:10.1007/s00248-003-1021-z.
Wood, J.L., 1996,
Selected meteorological and micrometeorological data for an arid site near Beatty, Nye County, Nevada, calendar year 1992: U.S. Geological Survey Open-File Report 96-434, 33 p.
Wood, J.L., and Andraski, B.J., 1995,
Selected meteorological data for an arid site near Beatty, Nye County, Nevada, calendar years 1990-91: U.S. Geological Survey Open-File Report 94-489, 49 p.
Wood, J.L., and Andraski, B.J., 1992,
Selected meteorological data for an arid site near Beatty, Nye County, Nevada, calendar year 1989: U.S. Geological Survey Open-File Report 92-484, 27 p.
Wood, J.L., and Fischer, J.M., 1992,
Selected meteorological data for an arid site near Beatty, Nye County, Nevada, calendar year 1987: U.S. Geological Survey Open-File Report 92-59, 27 p.
Wood, J.L., and Fischer, J.M., 1991,
Selected meteorological data for an arid site near Beatty, Nye County, Nevada, calendar year 1986: U.S. Geological Survey Open-File Report 91-189, 27 p.
Wood, J.L., Hill, K.J., and Andraski, B.J., 1992,
Selected meteorological data for an arid site near Beatty, Nye County, Nevada, calendar year 1988: U.S. Geological Survey Open-File Report 92-61, 27 p.
Wood, W.W., Hearn, P.P., Jr., and Kraemer, T.F., 1989,
Solute diffusion within sand of the Cape Cod, Massachusetts, aquifer, in Mallard, G.E., and Ragone, S.E., eds., U.S. Geological Survey Toxic Substances Hydrology Program--Proceedings of the technical meeting, Phoenix, Arizona, September 26-30, 1988: U.S. Geological Survey Water-Resources Investigations Report 88-4220, p. 163-166.
Wood, W.W., Kraemer, T.F., and Hearn, P.P., Jr., 1990,
Intragranular diffusion--An important mechanism influencing solute transport in clastic aquifers?: Science, v. 247, no. 4950, p. 1569-1572, doi:10.1126/science.247.4950.1569.
Woodbury, A.D., and Rubin, Y., 2000,
A full-Bayesian approach to parameter inference from tracer travel time moments and investigation of scale effects at the Cape Cod experimental site: Water Resources Research, v. 36, no. 1, p. 159-171, 1999WR900273, doi:10.1029/1999WR900273.
Wright, D.L., Olhoeft, G.R., and Watts, R.D., 1984,
Ground-penetrating radar studies on Cape Cod, in Conference on Surface and Borehole Methods in Ground Water Studies, San Antonio, Tex., February 7-9, 1984: Dublin, Ohio, National Water Well Association, p. 666-680.

Y

Yau, S., 1999,
Dissolution kinetics of feldspar in the Cape Cod aquifer, Massachusetts--Calculation of ground water residence times: State College, The Pennsylvania State University, Department of Geosciences, unpublished Ph.D. thesis, 99 p.
Young, R., and Hoyos, J., 2001,
Near-surface, SH-wave surveys in unconsolidated, alluvial sediments: The Leading Edge, v. 20, no. 9, p. 936-949, doi:10.1190/1.1487314.

Z

Zapico, M.M., 1987,
Easier evaluation procedures--Core acquisition and an assessment of slug tests: Waterloo, Ontario, University of Waterloo, Department of Earth Sciences, unpublished M.S. thesis, 195 p.
Zapico, M.M., Vales, S., and Cherry, J.A., 1987,
A wireline piston core barrel for sampling cohesionless sand and gravel below the water table: Ground Water Monitoring Review, v. 7, no. 3, p. 74-82.
Zhang, H., Schwartz, F.W., Wood, W.W., Garabedian, S.P., and LeBlanc, D.R., 1998,
Simulation of variable-density flow and transport of reactive and nonreactive solutes during a tracer test at Cape Cod, Massachusetts: Water Resources Research, v. 34, no. 1, p. 67-82, 97WR02918, doi:10.1029/97WR02918.
Zume, J.T., Tarhule, A., and Christenson, S., 2006,
Subsurface imaging of an abandoned solid waste landfill site in Norman-Oklahoma: Ground Water Monitoring and Remediation, v. 26, no. 2, p. 62-69, doi:10.1111/j.1745-6592.2006.00066.x.

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