Using whole stream δ15n additions to understand the effects of land use change on stream function (2013)
- Authors:
- USP affiliated authors: VICTORIA, REYNALDO LUIZ - CENA ; KRUSCHE, ALEX VLADIMIR - CENA ; BALLESTER, MARIA VICTORIA RAMOS - CENA
- Unidade: CENA
- Subjects: NITROGÊNIO; USO DO SOLO; TRAÇADORES ISOTÓPICOS
- Language: Inglês
- Imprenta:
- Source:
- Título: Application of isotope techniques for assessing nutrient dynamics in river basins
- Volume/Número/Paginação/Ano: 250 p
-
ABNT
DEEGAN, Linda A et al. Using whole stream δ15n additions to understand the effects of land use change on stream function. Application of isotope techniques for assessing nutrient dynamics in river basins. Tradução . Vienna: IAEA, 2013. . . Acesso em: 03 mar. 2026. -
APA
Deegan, L. A., Neill, C., Victoria, R. L., Krusche, A. V., Ballester, M. V. R., Thomas, S., & Haupert, C. L. M. (2013). Using whole stream δ15n additions to understand the effects of land use change on stream function. In Application of isotope techniques for assessing nutrient dynamics in river basins. Vienna: IAEA. -
NLM
Deegan LA, Neill C, Victoria RL, Krusche AV, Ballester MVR, Thomas S, Haupert CLM. Using whole stream δ15n additions to understand the effects of land use change on stream function. In: Application of isotope techniques for assessing nutrient dynamics in river basins. Vienna: IAEA; 2013. [citado 2026 mar. 03 ] -
Vancouver
Deegan LA, Neill C, Victoria RL, Krusche AV, Ballester MVR, Thomas S, Haupert CLM. Using whole stream δ15n additions to understand the effects of land use change on stream function. In: Application of isotope techniques for assessing nutrient dynamics in river basins. Vienna: IAEA; 2013. [citado 2026 mar. 03 ] - Spatial and temporal variability of pCO2 and CO2 efflux in seven Amazonian Rivers
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