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Using ecosystem services to represent the environment in hydro-economic models

handle: 11541.2/124952
Using ecosystem services to represent the environment in hydro-economic models
[EN] Demand for water is expected to grow in line with global human population growth, but opportunities to augment supply are limited in many places due to resource limits and expected impacts of climate change. Hydro-economic models are often used to evaluate water resources management options, commonly with a goal of understanding how to maximise water use value and reduce conflicts among competing uses. The environment is now an important factor in decision making, which has resulted in its inclusion in hydro-economic models. We reviewed 95 studies applying hydro-economic models, and documented how the environment is represented in them and the methods they use to value environmental costs and benefits. We also sought out key gaps and inconsistencies in the treatment of the environment in hydro-economic models. We found that representation of environmental values of water is patchy in most applications, and there should be systematic consideration of the scope of environmental values to include and how they should be valued. We argue that the ecosystem services framework offers a systematic approach to identify the full range of environmental costs and benefits. The main challenges to more holistic representation of the environment in hydro-economic models are the current limits to understanding of ecological functions which relate physical, ecological and economic values and critical environmental thresholds; and the treatment of uncertainty. (C) 2016 Elsevier B.V. All rights reserved. The authors acknowledge the backing of Universitat Politecnica de Valencia through its Support Programme for Research and Development. Support by the CSIRO for an internship visit by the lead author is also acknowledged. We also wish to thank the European Commission for financing the Seventh Framework Program project ENHANCE (FP7-ENV-2012, 308438) and the H2020 project IMPREX (H2020-WATER-2014-2015, 641811), and the Spanish Ministry of Economy and Competitiveness for granting the project NUTEGES (VI Plan Nacional de I+D+i 2008-2011, CGL2012-34978).
- Universitat Politècnica de València Spain
- University of South Australia Australia
- University of South Australia Australia
- Commonwealth Scientific and Industrial Research Organisation Australia
Engineering, Civil, INGENIERIA HIDRAULICA, Ecosystem services framework, ecosystem services framework, Engineering, Hydro-economic models, hydro-economic models, Geosciences, Multidisciplinary, water resources management, Geology, environmental impacts, Environmental impacts, Water Resources, Water resources management
Engineering, Civil, INGENIERIA HIDRAULICA, Ecosystem services framework, ecosystem services framework, Engineering, Hydro-economic models, hydro-economic models, Geosciences, Multidisciplinary, water resources management, Geology, environmental impacts, Environmental impacts, Water Resources, Water resources management
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