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Journal Article

The effect of future land use changes on hydrologic ecosystem services: a case study from the Zala catchment, Hungary

Bence Decsi; Ágnes Vári; Zsolt Kozma
Biologia Futura · Vol. 71, Issue 4 · pp. 405-418 · 2020

Abstract

Maintaining and, where possible, improving the ecological status of our water resources are of particular importance for the future. So, one of the main drivers of landscape design must be to protect our waters. In this study, we carried out an evaluation of four hydrologic ecosystem services (HES) in the Zala River catchment area, the largest tributary of Lake Balaton (more than half of the lake’s surface inflow comes from the Zala River), Hungary. The lake has great ecological, economic and social importance to the country. We used the cell-based InVEST model to quantify the spatial distribution of flood control, erosion control and nutrient retention ecosystem services for phosphorus and nitrogen; then, we carried out an aggregated evaluation. Thereby, we localized the hot spots of service delivery and tested the effect of focused land use changes in critical areas of low performance on the examined four HES. Forests proved to have the best aggregated result, while croplands near the stream network performed poorly. The modelled change in land use resulted in significant improvement on nutrient filtration and moderate to minimal but improving change for the other HES in most cases. The applied method is suitable as a supporting tool at the watershed level for decision-makers and landscape designers with the aim of protecting water bodies.

Bibliographic Information

JournalBiologia Futura
PublisherSpringer
Publication Date2020-12-01
Publication Year2020
Volume71
Issue4
Pages405-418
Document TypeJournal Article
Print ISSN2676-8615
eISSN2676-8607
DOI10.1007/s42977-020-00032-6

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42977
Publisher PageOpen Publisher Page
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