4.7 Article

Measuring urban food-energy-water nexus sustainability: Finding solutions for cities

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 752, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2020.141954

关键词

Nexus approach; Urban sustainability; Transdisciplinary; Food-energy-water; AHP

资金

  1. National Taiwan University from Excellence Research Program - Core Consortiums [NTUCCP-109L901003, NTU-109L8836, NTU-109L891201]
  2. NTU Research Center for Future Earth from The Featured Areas Research Center Program by the Ministry of Education (MOE) in Taiwan
  3. Ministry of Science and Technology of the Republic of China [MOST108-2621-M-002-MY2]

向作者/读者索取更多资源

Cities are where food, energy, and water consumption takes place, which poses challenges and impact on natural resources. Renewable energy is found to play a significant role in the food-energy-water nexus at the city level, suggesting a focus on technological innovation for addressing complex challenges due to resource limitations in the future.
A city is the place where food, energy, and water consumption happen. This consumption leads to challenges and has a strong impact on natural sources. Although researchers broadly agree on the importance of incorporating the concept of the food, energy, and water nexus into policy strategies and decision-making, the assessment system for how governance methods can improve the provision of these three essential services is relatively blank. To clarify the policy mechanisms and heterogeneity of sustainability issues related to the food, energy and water nexus at the city level, this study develops an indicator system to guide the implementations and optimize urban sustainability. A qualitative approach is employed to form the priority strategies in in four selected cities: Amsterdam, Eindhoven, Taipei, and Tainan. The results show that renewable energy plays an essential role in the food-energy-water nexus. In addition, we also observed that future work should focus on technological innovation. These observations imply that the unique combination of influence factors in food-energy-water sustainability offers a comprehensive outlook of the broad and complex challenges that a city faces due to resource limitations, which can help inform future governance practices. Finally, some policy recommendations are made for highlighting and the activities needed to work. The results of the present evaluation could be used as a tool to strengthen food-energy-water management in the future. They can guide managers to develop possible solutions that ensure resources are applied successfully according to the visions of multiple perspectives and help the relevant ministries to improve future consultation plans. (C) 2020 Elsevier B.V. All rights reserved.

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