Samothraki in Transition: A Report on a Real-World Lab to Promote the Sustainability of a Greek Island
Abstract
:1. Introduction
2. Heuristics and Methods
3. Results
3.1. The Terrestrial Ecosystem and the Agricultural Sector (Livestock Herding)
3.2. Tourism Dynamics and its Impacts on Infrastructure and Income
4. Discussion: On the Chances for a Sustainable Future of the Island, and the Role of Science to Support It
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
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Agricultural Sector | Tourism Sector | |||
---|---|---|---|---|
Indicator | Methods Used | Indicator | Methods Used | |
Drivers | system of EU-CAP subsidies, Greek variant | statistical analysis of the “transparency database” for EU-CAP subsidies for the years 2014–2016 [28], supplemented by expert interviews [29,30] | tourists: numbers, their expectations and spending tourism entrepreneur expectations | analysis of port statistics 2002–2017 survey of tourists (random sample of ferry passengers, N=1425) interviews with tourism entrepreneurs [31] |
Pressures | excessive number of grazing animals | analysis of data from agricultural statistics and utilization of a bottom-up metabolic model for estimating the feed demand of sheep and goats [32,33] | expansion of tourist infra-structures; use of non-reusable nor degradable materials | construction history from municipal sources; dynamic bottom-up modelling of materials use, maintenance requirements and wastes [34] |
States | vegetation cover | estimation of local NPP for different land cover classes [32]; time series analysis of remote sensing data (satellite images) of the land cover of the island (NDVI) 1984–1916 [3] analysis of spatial and age structure of mountain oak forests [2] | freshwater resources, quantity, and quality | drinking water quality of spring water; ecological quality of streams, wetlands, and lagoons; hydrometeorological analysis of the Fonias river basin; estimation of freshwater resources availability and water abstraction [6,35,36] |
Impacts | loss of vegetation cover, erosion | remote sensing [3] erosion [37] lack of forest regeneration [2] | increase of water demand and wastewater production | documenting inadequate water supply and wastewater management [36] |
Responses | introduction of sown bio-diverse pas-tures (SBP) improving farmers‘ business practices support for farmers cooperatives | SBP field experiments with farmers (20 fields, for 3–4 years) [27] development of a “Happy Goats App” decision support tool for farmers [38] follow-up interviews with farmers to explore their income & costs [33] olive oil and livestock cooperatives actually formed in 2018/19 | better synergies with local agriculture sector support for legal eco-camping | interviews with restaurant owners to explore / support use of local produce [27] survey of campers 2017; development of an eco-camp concept for the municipality [27] |
Persons | Length of Stay | Daily Consumption Estimates | Summer Spending Estimate | |||
---|---|---|---|---|---|---|
Av. Days | Low:€/Day | High:€/Day | Low:€/Season | High:€/Season | ||
second homeowners | 3000 | 20 | 33.7 | 41.2 | 2,022,000 | 2,472,000 |
seasonal workers | 2000 | 23 | 16.5 | 22.2 | 759,000 | 1,021,200 |
family visitors | 1800 | 19 | 29.8 | 37.8 | 1,019,160 | 1,292,760 |
tourists (hotel/rented room) | 13,000 | 5 | 72.4 | 86.9 | 4,706,000 | 5,648,500 |
tourists (camping) | 9000 | 9 | 38.1 | 45.5 | 3,086,100 | 3,685,500 |
all tourists | 22,000 | 7 | 7,792,100 | 9,334,000 | ||
all visitors | 28,800 | 11,592,260 | 14,119,960 |
In Thousand€ | % of Overall Income | % of Active Population 2001(1) | |
---|---|---|---|
inflow from tourism | 13,000 (2) | 49 | 21 |
inflow from CAP subsidies | 3000 (3) | 11 | 42 |
inflow from agricultural sales | 2300 (4) | 9 | |
income from fishing | 4000 (5) | 15 | 9 |
salaries from public sources | 4480 (6) | 17 | 28 |
total | 26,780 | 100 | 100 |
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Fischer-Kowalski, M.; Löw, M.; Noll, D.; Petridis, P.; Skoulikidis, N. Samothraki in Transition: A Report on a Real-World Lab to Promote the Sustainability of a Greek Island. Sustainability 2020, 12, 1932. https://doi.org/10.3390/su12051932
Fischer-Kowalski M, Löw M, Noll D, Petridis P, Skoulikidis N. Samothraki in Transition: A Report on a Real-World Lab to Promote the Sustainability of a Greek Island. Sustainability. 2020; 12(5):1932. https://doi.org/10.3390/su12051932
Chicago/Turabian StyleFischer-Kowalski, Marina, Markus Löw, Dominik Noll, Panos Petridis, and Nikolaos Skoulikidis. 2020. "Samothraki in Transition: A Report on a Real-World Lab to Promote the Sustainability of a Greek Island" Sustainability 12, no. 5: 1932. https://doi.org/10.3390/su12051932
APA StyleFischer-Kowalski, M., Löw, M., Noll, D., Petridis, P., & Skoulikidis, N. (2020). Samothraki in Transition: A Report on a Real-World Lab to Promote the Sustainability of a Greek Island. Sustainability, 12(5), 1932. https://doi.org/10.3390/su12051932