Nitrate reduction zone in groundwater at a slope-wetland plot in Tsukuba upland, Ibaraki Prefecture

Author:

IOKA Sei-ichiro1,TASE Norio2

Affiliation:

1. Terrestrial Environmental Research Center, University of Tsukuba

2. Graduate School of Life and Environmental Sciences, University of Tsukuba

Publisher

Japanese Association of Groundwater Hydrology

Subject

General Medicine

Reference18 articles.

1. Blowes, D. W, C. J. Ptacek, S. G. Benner, C. W, T, McRae, T. A. Bennett and R. W. Puls (2000): Treatment of inorganic contaminants using permeabl e reactive barriers. Journal of Contaminant Hydrology, 45(1-2), 123-137.

2. Bourg, A. C. and C. Bertin (1993): Biogeochemical processes during the infiltration of river water into an alluvial aquifer. Environmental Science & Tech nology, 27(4), 661-666.

3. Böhlke, J. K. and J. M. Denver (1995): Combined use of groundwater dating, chemical, and isotopic ana lyses to resolve the history and fate of nitrate contamination in two agricultural watersheds, Atlantic coastal plain, Maryland. Water Resources Research, 31(9), 2319-2339.

4. Böhlke, J. K., R. Wanty, M. Tuttle, G. Delin and M. Landon (2002): Denitrification in the recharge area and discharge area of a transient agricultural nitrate plume in a glacial outwash sand aquifer, Minnesota. Water Resources Research, 38(7), 10-1-10-26.

5. Fustec, E., A. Mariotti, X. Grillo and J. Sajus (1991): Nitrate removal by denitrification in alluvial ground water: role of a former channel. Journal of Hydrology, 123(3-4), 337-354.

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2. Global Approaches to Address the Nitrogen Issue: Expected Effects on Groundwater Nitrate Pollution;Journal of Geography (Chigaku Zasshi);2023-04-25

3. Is groundwater flow a controlling factor of denitrification process?;Journal of Japanese Association of Hydrological Sciences;2011

4. Meter-scale lateral heterogeneity of nitrate concentrations of groundwater in aquitards;Journal of Japanese Association of Hydrological Sciences;2011

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