Spatial distribution characteristics of dissolved N2O in unconfined groundwater of an agricultural catchment affected by significant fertilizer application
Author:
Affiliation:
1. Graduate School of Integrated Arts and Sciences, Hiroshima University
2. JSPS PD, Center for marine environmental studies, Ehime University
Publisher
The Japanese Society of Limnology
Subject
Water Science and Technology,Ecology,Aquatic Science
Reference25 articles.
1. Appelo, C. A. J. and D. Postma (2005): Redox processes. In Geochemistry, groundwater and pollution, C. A. J. Appelo and D. Postma (ed.): 415-487. A. A. Balkema Publishers, Leiden.
2. Deurer, M., C. von der Heide, J. Bottcher, W. H. M. Duijnisveld, D. Weymann and R. Well (2008): The dynamics of N2O near the groundwater table and the transfer of N2O into the unsaturated zone: A case study from a sandy aquifer in Germany. Catena, 72: 362-373.
3. Production and Degradation of Nitrous Oxide in the Paddy Field and a Small River Contaminated with High Nitrate-nitrogen.
4. Heide, C., J. Böttcher, M. Deurer, W. H. M. Duijnisveld, D. Weymann and R. Well (2009): Estimation of indirect nitrous oxide emissions from a shallow aquifer in northern Germany. Journal of Environmental Quality, 38: 2161-2171.
5. Heide, C., J. Böttcher, M. Deurer, W. H. M. Duijnisveld, W. D. Weymann and R. Well (2010): Spatial and temporal variability of N2O in the surface groundwater: a detailed analysis from a sandy aquifer in northern Germany. Nutrient Cycling in Agroecosystems, 87: 33-47.
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