From no whinge scenarios to viability tree
Avoiding whinges from various and potentially conflicting stakeholders is a major challenge for sustainable development and for the identification of sustainability scenarios or policies for biodiversity and ecosystem services. It turns out that independently complying with whinge thresholds and con...
| Main Authors: | , , , , , , , , , , , , , , , , , , , |
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| Format: | Journal Article |
| Language: | Inglés |
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Elsevier
2019
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| Subjects: | |
| Online Access: | https://hdl.handle.net/10568/101652 |
| _version_ | 1855538064726687744 |
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| author | Doyen, Luc Armstrong, C. Baumgaertner, S. Béné, Christophe Blanchard, Fabian Cissé, A.A. Cooper, R. Dutra, L.X.C. Eide, A. Freitas, D. Gourguet, S. Gusmao, F. Hardy, Pierre-Yves Jarre, A. Little, Lorne Richard Macher, C. Quaas, M. Regnier, E. Sanz, Nicolas Thébaud, Olivier |
| author_browse | Armstrong, C. Baumgaertner, S. Blanchard, Fabian Béné, Christophe Cissé, A.A. Cooper, R. Doyen, Luc Dutra, L.X.C. Eide, A. Freitas, D. Gourguet, S. Gusmao, F. Hardy, Pierre-Yves Jarre, A. Little, Lorne Richard Macher, C. Quaas, M. Regnier, E. Sanz, Nicolas Thébaud, Olivier |
| author_facet | Doyen, Luc Armstrong, C. Baumgaertner, S. Béné, Christophe Blanchard, Fabian Cissé, A.A. Cooper, R. Dutra, L.X.C. Eide, A. Freitas, D. Gourguet, S. Gusmao, F. Hardy, Pierre-Yves Jarre, A. Little, Lorne Richard Macher, C. Quaas, M. Regnier, E. Sanz, Nicolas Thébaud, Olivier |
| author_sort | Doyen, Luc |
| collection | Repository of Agricultural Research Outputs (CGSpace) |
| description | Avoiding whinges from various and potentially conflicting stakeholders is a major challenge for sustainable development and for the identification of sustainability scenarios or policies for biodiversity and ecosystem services. It turns out that independently complying with whinge thresholds and constraints of these stakeholders is not sufficient because dynamic ecological-economic interactions and uncertainties occur. Thus more demanding no whinge standards are needed. In this paper, we first argue that these new boundaries can be endogenously exhibited with the mathematical concepts of viability kernel and viable controls. Second, it is shown how these no whinge kernels have components, such as harvesting of resources, that should remain within safe corridor while some other components, in particular biodiversity, have only lower conservation limits. Thus, using radar charts, we show how this no whinge kernels can take the shape of a tree that we name viability tree. These trees of viability capture the idea that the unbounded renewal potential of biodiversity combined with a bounded use of the different ecosystem services are crucial ingredients for the sustainability of socio-ecosystems and the design of no whinge policies reconciling the different stakeholders involved. |
| format | Journal Article |
| id | CGSpace101652 |
| institution | CGIAR Consortium |
| language | Inglés |
| publishDate | 2019 |
| publishDateRange | 2019 |
| publishDateSort | 2019 |
| publisher | Elsevier |
| publisherStr | Elsevier |
| record_format | dspace |
| spelling | CGSpace1016522025-11-12T05:59:02Z From no whinge scenarios to viability tree Doyen, Luc Armstrong, C. Baumgaertner, S. Béné, Christophe Blanchard, Fabian Cissé, A.A. Cooper, R. Dutra, L.X.C. Eide, A. Freitas, D. Gourguet, S. Gusmao, F. Hardy, Pierre-Yves Jarre, A. Little, Lorne Richard Macher, C. Quaas, M. Regnier, E. Sanz, Nicolas Thébaud, Olivier sustainability crop modelling viability viabilidad ecosystem services Avoiding whinges from various and potentially conflicting stakeholders is a major challenge for sustainable development and for the identification of sustainability scenarios or policies for biodiversity and ecosystem services. It turns out that independently complying with whinge thresholds and constraints of these stakeholders is not sufficient because dynamic ecological-economic interactions and uncertainties occur. Thus more demanding no whinge standards are needed. In this paper, we first argue that these new boundaries can be endogenously exhibited with the mathematical concepts of viability kernel and viable controls. Second, it is shown how these no whinge kernels have components, such as harvesting of resources, that should remain within safe corridor while some other components, in particular biodiversity, have only lower conservation limits. Thus, using radar charts, we show how this no whinge kernels can take the shape of a tree that we name viability tree. These trees of viability capture the idea that the unbounded renewal potential of biodiversity combined with a bounded use of the different ecosystem services are crucial ingredients for the sustainability of socio-ecosystems and the design of no whinge policies reconciling the different stakeholders involved. 2019-09 2019-06-21T18:46:53Z 2019-06-21T18:46:53Z Journal Article https://hdl.handle.net/10568/101652 en Open Access application/pdf Elsevier Doyen, L. ; Armstrong, C. ; Baumgärtner, S. ; Béné, C. ; Blanchard, F. ; Cissé, A.A. ; Cooper, R. ; Dutra, L.X.C.; Eide, A.; Freitas, D. ; Gourguet, S. ; Gusmao, F. ; Hardy, P.-Y. ; Jarre, A.; Little, L.R. ; Macher, C. ; Quaas, M. ; Regnier, E. ; Sanz, N. & Thébaud, O. (2019). From no whinge scenarios to viability tree. Ecological Economics. 163: 186-188 |
| spellingShingle | sustainability crop modelling viability viabilidad ecosystem services Doyen, Luc Armstrong, C. Baumgaertner, S. Béné, Christophe Blanchard, Fabian Cissé, A.A. Cooper, R. Dutra, L.X.C. Eide, A. Freitas, D. Gourguet, S. Gusmao, F. Hardy, Pierre-Yves Jarre, A. Little, Lorne Richard Macher, C. Quaas, M. Regnier, E. Sanz, Nicolas Thébaud, Olivier From no whinge scenarios to viability tree |
| title | From no whinge scenarios to viability tree |
| title_full | From no whinge scenarios to viability tree |
| title_fullStr | From no whinge scenarios to viability tree |
| title_full_unstemmed | From no whinge scenarios to viability tree |
| title_short | From no whinge scenarios to viability tree |
| title_sort | from no whinge scenarios to viability tree |
| topic | sustainability crop modelling viability viabilidad ecosystem services |
| url | https://hdl.handle.net/10568/101652 |
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