Mapping Freshwater Aquaculture’s Diverse Ecosystem Services with Participatory Techniques: A Case Study from White Lake, Hungary

Author:

Palásti Péter,Gulyás Ágnes,Kiss MártonORCID

Abstract

Freshwater aquaculture has a significant role in fish production and biodiversity conservation. Due to climate change, however, the sustenance of fish farms became more challenging, endangering both people and natural values. The establishment of multi-purpose fishpond systems, utilizing ecosystem services besides fish production, could serve as a long-term solution for this problem. However, the lack of knowledge about fishponds’ ecosystem services creates an obstacle in the process. We would like to lower this barrier by mapping 13 different ecosystem services of White Lake, one of the most prominent fishpond systems in Hungary. The results of two different participatory mapping techniques indicated that standing waters, reedy areas, and canals, possessed the highest potential values in the provision of the listed ecosystem services, marking them as the most important areas for future developments. In the case of current sources, local experts linked the highest values to reedy areas and lookout towers. Participatory mapping also indicated that microclimate regulation and bird watching were the most widely used ecosystem services after fish production. By collecting and visualizing experts’ spatial data about White Lakes’ ecosystem services, our unique paper has the potential to serve future decision-making and provide a basis for further studies on this topic.

Funder

Aquaspace Horizon 2020

Hungarian National Research, Development and Innovation Office

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference56 articles.

1. FAO (2020). The State of World Fisheries and Aquaculture 2020. Sustainability in Action, Food and Agriculture Organization (FAO).

2. Barange, M., Bahri, T., Beveridge, M.C.M., Cochrane, K.L., Funge-Smith, S., and Poulain, F. (2018). Impacts of Climate Change on Fisheries and Aquaculture: Synthesis of Current Knowledge, Adaptation and Mitigation Options. Fisheries and Aquaculture Technical Paper No. 627, Food and Agriculture Organization (FAO).

3. Shrinking of fishes exacerbates impacts of global ocean changes on marine ecosystems;Cheung;Nat. Clim. Chang.,2013

4. Potential consequences of climate change on primary production and fish production in large marine ecosystems;Blanchard;Philos. Trans. R. Soc. B,2012

5. Can marine fisheries and aquaculture meet fish demand from a growing human population in a changing climate?;Merino;Glob. Environ. Chang.,2012

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