Publications
Dive into our publications and explore the science from the Environmental Health Program (Toxic Substances Hydrology and Contaminant Biology).
Filter Total Items: 4098
A method for the use of landscape metrics in freshwater research and management A method for the use of landscape metrics in freshwater research and management
Freshwater research and management efforts could be greatly enhanced by a better understanding of the relationship between landscape-scale factors and water quality indicators. This is particularly true in urban areas, where land transformation impacts stream systems at a variety of scales. Despite advances in landscape quantification methods, several studies attempting to elucidate the
Authors
F.R. Kearns, N.M. Kelly, J.L. Carter, V.H. Resh
Why is metal bioaccumulation so variable? Biodynamics as a unifying concept Why is metal bioaccumulation so variable? Biodynamics as a unifying concept
Ecological risks from metal contaminants are difficult to document because responses differ among species, threats differ among metals, and environmental influences are complex. Unifying concepts are needed to better tie together such complexities. Here we suggest that a biologically based conceptualization, the biodynamic model, provides the necessary unification for a key aspect in...
Authors
Samuel N. Luoma, Philip S. Rainbow
A method adapting microarray technology for signature tagged mutagenesis of Dusulfovibrio dusulfuricans G20 and Shewanella oneidensis MR-1 in anaerobic sediment survival experiments A method adapting microarray technology for signature tagged mutagenesis of Dusulfovibrio dusulfuricans G20 and Shewanella oneidensis MR-1 in anaerobic sediment survival experiments
Signature-tagged mutagenesis (STM) is a powerful technique that can be used to identify genes expressed by bacteria during exposure to conditions in their natural environments. To date, there have been no reports of studies in which this approach was used to study organisms of environmental, rather than pathogenic, significance. We used a mini-Tn10 transposon-bearing plasmid, pBSL180...
Authors
Jennifer L. Groh, Qingwei Luo, Jimmy D. Ballard, Lee R. Krumholz
Major and trace element composition of copiapite-group minerals and coexisting water from the Richmond mine, Iron Mountain, California Major and trace element composition of copiapite-group minerals and coexisting water from the Richmond mine, Iron Mountain, California
Copiapite-group minerals of the general formula AR4(SO4)6(OH)2·nH2O, where A is predominantly Mg, Fe2+, or 0.67Al3+, R is predominantly Fe3+, and n is typically 20, are among several secondary hydrous Fe sulfates occurring in the inactive mine workings of the massive sulfide deposit at Iron Mountain, CA, a USEPA Superfund site that produces extremely acidic drainage. Samples of copiapite...
Authors
H.E. Jamieson, C. Robinson, Charles N. Alpers, R. Blaine McCleskey, D. Kirk Nordstrom, Ronald C. Peterson
Role for Fe(III) minerals in nitrate-dependent microbial U(IV) oxidation Role for Fe(III) minerals in nitrate-dependent microbial U(IV) oxidation
Microbiological reduction of soluble U(VI) to insoluble U(IV) is a means of preventing the migration of that element in groundwater, but the presence of nitrate in U(IV)-containing sediments leads to U(IV) oxidation and remobilizaton. Nitrite or iron(III) oxyhydroxides may oxidize U(IV) under nitrate-reducing conditions, and we determined the rate and extent of U(IV) oxidation by these...
Authors
John M. Senko, Yasser Mohamed, Thomas A. Dewers, Lee R. Krumholz
Transmission of atmospherically derived trace elements through an undeveloped, forested Maryland watershed Transmission of atmospherically derived trace elements through an undeveloped, forested Maryland watershed
The transmission of atmospherically derived trace elements (Al, As, Cd, Cr, Cu, Fe, Mn, Ni, Pb, Se, and Zn) was evaluated in a small, undeveloped, forested watershed located in north-central Maryland. Atmospheric input was determined for wet-only and vegetative throughfall components. Annual throughfall fluxes were significantly enriched over incident precipitation for most elements...
Authors
J.R. Scudlark, Karen C. Rice, Kathryn M. Conko, Owen P. Bricker, T.M. Church
Applying petrophysical models to radar travel time and electrical resistivity tomograms: Resolution-dependent limitations Applying petrophysical models to radar travel time and electrical resistivity tomograms: Resolution-dependent limitations
[1] Geophysical imaging has traditionally provided qualitative information about geologic structure; however, there is increasing interest in using petrophysical models to convert tomograms to quantitative estimates of hydrogeologic, mechanical, or geochemical parameters of interest (e.g., permeability, porosity, water content, and salinity). Unfortunately, petrophysical estimation based...
Authors
F. D. Day-Lewis, K. Singha, A.M. Binley
Progression of methanogenic degradation of crude oil in the subsurface Progression of methanogenic degradation of crude oil in the subsurface
Our results show that subsurface crude-oil degradation rates at a long-term research site were strongly influenced by small-scale variations in hydrologic conditions. The site is a shallow glacial outwash aquifer located near Bemidji in northern Minnesota that became contaminated when oil spilled from a broken pipeline in August 1979. In the study area, separate-phase oil forms a...
Authors
B.A. Bekins, F. D. Hostettler, W.N. Herkelrath, G. N. Delin, E. Warren, H.I. Essaid
Investigating surface water-well interaction using stable isotope ratios of water Investigating surface water-well interaction using stable isotope ratios of water
Because surface water can be a source of undesirable water quality in a drinking water well, an understanding of the amount of surface water and its travel time to the well is needed to assess a well's vulnerability. Stable isotope ratios of oxygen in river water at the City of La Crosse, Wisconsin, show peak-to-peak seasonal variation greater than 4‰ in 2001 and 2002. This seasonal...
Authors
R. J. Hunt, T.B. Coplen, N.L. Haas, D. A. Saad, M. A. Borchardt
Chloroethene biodegradation in sediments at 4°C Chloroethene biodegradation in sediments at 4°C
Microbial reductive dechlorination of [1,2-14C]trichloroethene to [14C]cis-dichloroethene and [14C]vinyl chloride was observed at 4°C in anoxic microcosms prepared with cold temperature-adapted aquifer and river sediments from Alaska. Microbial anaerobic oxidation of [1,2-14C]cis-dichloroethene and [1,2-14C]vinyl chloride to 14CO2 also was observed under these conditions.
Authors
P. M. Bradley, S. Richmond, F. H. Chapelle
Part 2: A field study of enhanced remediation of Toluene in the vadose zone using a nutrient solution Part 2: A field study of enhanced remediation of Toluene in the vadose zone using a nutrient solution
The objective of this study was to test the effectiveness of a nitrate-rich nutrient solution and hydrogen peroxide (H2O2) to enhance in-situ microbial remediation of toluene in the unsaturated zone. Three sand-filled plots were tested in three phases (each phase lasting approximately 2 weeks). During the control phase, toluene was applied uniformly via sprinkler irrigation. Passive...
Authors
J.A. Tindall, E.P. Weeks, M. Friedel
Sources of variability of evapotranspiration in California Sources of variability of evapotranspiration in California
The variability (1990–2002) of potential evapotranspiration estimates (ETo) and related meteorological variables from a set of stations from the California Irrigation Management System (CIMIS) is studied. Data from the National Climatic Data Center (NCDC) and from the Department of Energy from 1950 to 2001 were used to validate the results. The objective is to determine the...
Authors
H.G. Hidalgo, D.R. Cayan, M. D. Dettinger