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A novel agroecosystem: Beef production in abandoned farmland as a multifunctional alternative to rewilding

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  • Hall, Stephen J.G.

Abstract

In much of Europe policy is challenged by the abandonment of crop and pasture land and its replacement by natural forest regrowth. Rewilding is one option. An alternative, multifunctional, strategy is extensive beef farming coupled with carbon storage in herbage and naturally regenerating trees. An economic model is developed in the context of Estonia, where many of the constraints and opportunities relating to natural forest regrowth are in particularly sharp focus, but the approach will be widely applicable. Production of niche market beef, carbon sequestration, and other ecosystem services can proceed in parallel. A novel concept of support payments is proposed. Net present value assessment, with cash credits for carbon storage, demonstrates that the model is viable. A 100 ha tract of abandoned land, stocked with 35 beef cows, would produce beef profitably. Provisioning, regulating and cultural ecosystem services would be delivered, including a net storage of carbon, and rural regeneration would be promoted. The study provides further scientific underpinning for a policy discussion on abandoned land, which represents a growing proportion of Europe's land area. Extensive beef production is compatible with net carbon storage and can provide sustainable ecosystem services together with rural regeneration.

Suggested Citation

  • Hall, Stephen J.G., 2018. "A novel agroecosystem: Beef production in abandoned farmland as a multifunctional alternative to rewilding," Agricultural Systems, Elsevier, vol. 167(C), pages 10-16.
  • Handle: RePEc:eee:agisys:v:167:y:2018:i:c:p:10-16
    DOI: 10.1016/j.agsy.2018.08.009
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    References listed on IDEAS

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    1. Gavrilova, Olga & Vilu, Raivo, 2012. "Production-based and consumption-based national greenhouse gas inventories: An implication for Estonia," Ecological Economics, Elsevier, vol. 75(C), pages 161-173.
    2. Bryngelsson, David & Wirsenius, Stefan & Hedenus, Fredrik & Sonesson, Ulf, 2016. "How can the EU climate targets be met? A combined analysis of technological and demand-side changes in food and agriculture," Food Policy, Elsevier, vol. 59(C), pages 152-164.
    3. Põllumäe, Priit & Korjus, Henn & Paluots, Teele, 2014. "Management motives of Estonian private forest owners," Forest Policy and Economics, Elsevier, vol. 42(C), pages 8-14.
    4. Peringer, Alexander & Gillet, François & Rosenthal, Gert & Stoicescu, Ioana & Pătru-Stupariu, Ileana & Stupariu, Mihai-Sorin & Buttler, Alexandre, 2016. "Landscape-scale simulation experiments test Romanian and Swiss management guidelines for mountain pasture-woodland habitat diversity," Ecological Modelling, Elsevier, vol. 330(C), pages 41-49.
    5. Ilya Gelfand & Ritvik Sahajpal & Xuesong Zhang & R. César Izaurralde & Katherine L. Gross & G. Philip Robertson, 2013. "Sustainable bioenergy production from marginal lands in the US Midwest," Nature, Nature, vol. 493(7433), pages 514-517, January.
    6. Mark Lapping, 1993. "The land reform in independent Estonia: Memory as precedent — Toward the reconstruction of agriculture in Eastern Europe," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 10(1), pages 52-59, December.
    7. Holman, I.P. & Brown, C & Janes, V & Sandars, D, 2017. "Can we be certain about future land use change in Europe? A multi-scenario, integrated-assessment analysis," Agricultural Systems, Elsevier, vol. 151(C), pages 126-135.
    8. Alcantara, Camilo & Kuemmerle, Tobias & Baumann, Matthias & Bragina, Eugenia V & Griffiths, Patrick & Hostert, Patrick & Knorn, Jan & Müller, Daniel & Prishchepov, Alexander V & Schierhorn, Florian & , 2013. "Mapping the extent of abandoned farmland in Central and Eastern Europe using MODIS time series satellite data," EconStor Open Access Articles and Book Chapters, ZBW - Leibniz Information Centre for Economics, vol. 8(3), pages 1-9.
    9. Morel, Kevin & Farrié, Jean-Pierre & Renon, Julien & Manneville, Vincent & Agabriel, Jacques & Devun, Jean, 2016. "Environmental impacts of cow-calf beef systems with contrasted grassland management and animal production strategies in the Massif Central, France," Agricultural Systems, Elsevier, vol. 144(C), pages 133-143.
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