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A Methodological Integrated Approach to Analyse Climate Change Effects in Agri-Food Sector: The TIMES Water-Energy-Food Module

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Publisher MDPI
Date 2020 Oct 27
PMID 33105565
Citations 1
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Abstract

The European Union's 2030 climate and energy policy and the 2030 Agenda for Sustainable Development underline the commitment to mitigate climate change and reduce its impacts by supporting sustainable use of resources. This commitment has become stricter in light of the ambitious climate neutrality target set by the European Green Deal for 2050. Water, Energy and Food are the key variables of the "Nexus Thinking" which face the sustainability challenge with a multi-sectoral approach. The aim of the paper is to show the methodological path toward the implementation of an integrated modeling platform based on the Nexus approach and consolidated energy system analysis methods to represent the agri-food system in a circular economy perspective (from the use of water, energy, biomass, and land to food production). The final aim is to support decision-making connected to climate change mitigation. The IEA-The Integrated MARKAL-EFOM System (TIMES) model generator was used to build up the Basilicata Water, Energy and Food model (TIMES-WEF model), which allows users a comprehensive evaluation of the impacts of climate change on the Basilicata agri-food system in terms of land use, yields and water availability and a critical comparison of these indicators in different scenarios. The paper focuses on the construction of the model's Reference Energy and Material System of the TIMES model, which integrates water and agricultural commodities into the energy framework, and on the results obtained through the calibration of the model β version to statistical data on agricultural activities.

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References
1.
Miraglia M, Marvin H, Kleter G, Battilani P, Brera C, Coni E . Climate change and food safety: an emerging issue with special focus on Europe. Food Chem Toxicol. 2009; 47(5):1009-21. DOI: 10.1016/j.fct.2009.02.005. View

2.
Miola A, Schiltz F . Measuring sustainable development goals performance: How to monitor policy action in the 2030 Agenda implementation?. Ecol Econ. 2019; 164:106373. PMC: 6686206. DOI: 10.1016/j.ecolecon.2019.106373. View

3.
Mabhaudhi T, Nhamo L, Mpandeli S, Nhemachena C, Senzanje A, Sobratee N . The Water-Energy-Food Nexus as a Tool to Transform Rural Livelihoods and Well-Being in Southern Africa. Int J Environ Res Public Health. 2019; 16(16). PMC: 6720849. DOI: 10.3390/ijerph16162970. View

4.
Cremades R, Mitter H, Tudose N, Sanchez-Plaza A, Graves A, Broekman A . Ten principles to integrate the water-energy-land nexus with climate services for co-producing local and regional integrated assessments. Sci Total Environ. 2019; 693:133662. DOI: 10.1016/j.scitotenv.2019.133662. View

5.
Rulli M, Bellomi D, Cazzoli A, De Carolis G, DOdorico P . The water-land-food nexus of first-generation biofuels. Sci Rep. 2016; 6:22521. PMC: 4776133. DOI: 10.1038/srep22521. View