Deducing the Distribution of Terminal Electron‐Accepting Processes in Hydrologically Diverse Groundwater Systems
Open Access
- 1 February 1995
- journal article
- research article
- Published by American Geophysical Union (AGU) in Water Resources Research
- Vol. 31 (2) , 359-371
- https://doi.org/10.1029/94wr02525
Abstract
The distribution of microbially mediated terminal electron‐accepting processes (TEAPs( was investigated in four hydrologically diverse groundwater systems by considering patterns of electron acceptor (nitrate, sulfate) consumption, intermediate product (hydrogen (H2)) concentrations, and final product (ferrous iron, sulfide, and methane) production. In each hydrologic system a determination of predominant TEAPs could be arrived at, but the level of confidence appropriate for each determination differed. In a portion of the lacustrine aquifer of the San Joaquin Valley, for example, all three indicators (sulfate concentrations decreasing, H2 concentrations in the 1–2 nmol range, and sulfide concentrations increasing along flow paths identified sulfate reduction as the predominant TEAP, leading to a high degree of confidence in the determination. In portions of the Floridan aquifer and a petroleum hydrocarbon‐contaminated aquifer, sulfate reduction and methanogenesis are indicated by production of sulfide and methane, and hydrogen oncentrations in the 1–4 nmol and 5–14 nmol range, respectively. However, because electron acceptor consumption could not be documented in these systems, less confidence is warranted in the TEAP determination. In the Black Creek aquifer, no pattern of sulfate consumption and sulfide production were observed, but H2 concentrations indicated sulfate reduction as the predominant TEAP. In this case, where just a single line of evidence is available, the least confidence in the TEAP diagnosis is justified. Because this methodology is based on measurable water chemistry parameters and upon the physiology of microbial electron transfer processes, it provides a better description of predominant redox processes in groundwater systems than more traditional Eh‐based methods.Keywords
This publication has 35 references indexed in Scilit:
- Use of Dissolved H2 Concentrations To Determine Distribution of Microbially Catalyzed Redox Reactions in Anoxic GroundwaterEnvironmental Science & Technology, 1994
- Competitive Exclusion of Sulfate Reduction by Fe(lll)‐Reducing Bacteria: A Mechanism for Producing Discrete Zones of High‐Iron Ground WaterGroundwater, 1992
- Role of Microbial Processes in Linking Sandstone Diagenesis with Organic-rich ClaysJournal of Sedimentary Research, 1992
- Geochemistry of dissolved inorganic carbon in a Coastal Plain aquifer. 1. Sulfate from confining beds as an oxidant in microbial CO2 productionJournal of Hydrology, 1991
- Effect of Nitrate Addition on Biorestoration of Fuel‐Contaminated Aquifer: Field DemonstrationGroundwater, 1991
- Geochemical Variations in a Core of Hydrogeologic Units Near Freehold, New JerseyGroundwater, 1989
- Dissimilatory Nitrate Reduction in a Waste‐Water Contaminated AquiferGroundwater, 1989
- Hydrogen concentrations as an indicator of the predominant terminal electron-accepting reactions in aquatic sedimentsGeochimica et Cosmochimica Acta, 1988
- Ground-Water Flow in the Coastal Plain Aquifers of South CarolinaGroundwater, 1985
- Low-pressure solubility of gases in liquid waterChemical Reviews, 1977