Nitrogen can enter the water cycle through atmospheric depositions on ground and water surfaces, leakages from point and diffuse sources (i.e., sewage treatment plants or sewage systems, fertilizer and manure applications), and erosion processes affecting nitrogen rich soils (EEA, 2005). However, integrating all nitrogen forms, processes and scales is still a major challenge for the understanding and the management of the nitrogen cycle.

Atmospheric nitrogen deposition in a highly human impacted area in northern Italy / S. Stevenazzi, M. Masetti, C. Camera, M. Tiepolo, E.S. Ferrari, R.S. Azzoni - In: Flowpath 2019 : National meeting on hydrogeology / [a cura di] L. Alberti, T. Bonomi, M. Masetti. - [s.l] : LED, 2019. - ISBN 9788855260121. - pp. 246-248 (( Intervento presentato al 4. convegno National meeting on hydrogeology tenutosi a Milano nel 2019.

Atmospheric nitrogen deposition in a highly human impacted area in northern Italy

S. Stevenazzi
;
M. Masetti;C. Camera;M. Tiepolo;E.S. Ferrari;R.S. Azzoni
2019

Abstract

Nitrogen can enter the water cycle through atmospheric depositions on ground and water surfaces, leakages from point and diffuse sources (i.e., sewage treatment plants or sewage systems, fertilizer and manure applications), and erosion processes affecting nitrogen rich soils (EEA, 2005). However, integrating all nitrogen forms, processes and scales is still a major challenge for the understanding and the management of the nitrogen cycle.
air pollution; ammonium; nitrate; precipitation
Settore GEO/05 - Geologia Applicata
2019
Università degli Studi di Milano
Università degli Studi di Milano-Bicocca
Politecnico di Milano
International Association of Hydrogeologists - Italian Chapter
Book Part (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/716601
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