Denitrification Potential in Stream Sediments Impacted by Acid Mine Drainage: Effects of pH, Various Electron Donors, and Iron
- 10 February 2006
- journal article
- research article
- Published by Springer Nature in Microbial Ecology
- Vol. 51 (2) , 232-241
- https://doi.org/10.1007/s00248-005-5155-z
Abstract
Acid mine drainage (AMD) contaminates thousands of kilometers of stream in the western United States. At the same time, nitrogen loading to many mountain watersheds is increasing because of atmospheric deposition of nitrate and increased human use. Relatively little is known about nitrogen cycling in acidic, heavy-metal-laden streams; however, it has been reported that one key process, denitrification, is inhibited under low pH conditions. The objective of this research was to investigate the capacity for denitrification in acidified streams. Denitrification potential was assessed in sediments from several Colorado AMD-impacted streams, ranging from pH 2.60 to 4.54, using microcosm incubations with fresh sediment. Added nitrate was immediately reduced to nitrogen gas without a lag period, indicating that denitrification enzymes were expressed and functional in these systems. First-order denitrification potential rate constants varied from 0.046 to 2.964 day−1. The pH of the microcosm water increased between 0.23 and 1.49 pH units during denitrification. Additional microcosm studies were conducted to examine the effects of initial pH, various electron donors, and iron (added as ferrous and ferric iron). Decreasing initial pH decreased denitrification; however, increasing pH had little effect on denitrification rates. The addition of ferric and ferrous iron decreased observed denitrification potential rate constants. The addition of glucose and natural organic matter stimulated denitrification potential. The addition of hydrogen had little effect, however, and denitrification activity in the microcosms decreased after acetate addition. These results suggest that denitrification can occur in AMD streams, and if stimulated within the environment, denitrification might reduce acidity.Keywords
This publication has 43 references indexed in Scilit:
- CRITICAL LOADS FOR INORGANIC NITROGEN DEPOSITION IN THE COLORADO FRONT RANGE, USAEcological Applications, 2000
- Influences of water and substrate quality for periphyton in a montane stream affected by acid mine drainageLimnology and Oceanography, 1999
- Geomicrobiology of Pyrite (FeS2) Dissolution: Case Study at Iron Mountain, CaliforniaGeomicrobiology Journal, 1999
- Denitrification kinetics of high nitrate concentration water: pH effect on inhibition and nitrite accumulationPublished by Elsevier ,1998
- Denitrification and gaseous nitrogen losses from an acid spruce forest soilSoil Biology and Biochemistry, 1997
- Nitrate Reduction in an Unconfined Sandy Aquifer: Water Chemistry, Reduction Processes, and Geochemical ModelingWater Resources Research, 1991
- Influence of soil pH on the nitrate-reducing microbial populations and their potential to reduce nitrate to NO and N2OFEMS Microbiology Letters, 1990
- Effects of metals on nitrogen fixation and denitrification in slurries of anoxic salt-marsh sedimentMarine Ecology Progress Series, 1984
- Analysis of N2 and N2O produced during growth of denitrifying bacteria in copper-depleted and -supplemented media.The Journal of General and Applied Microbiology, 1982
- BIOLOGICAL VERSUS CHEMICAL NITRITE DECOMPOSITION IN SOILSoil Science, 1973