Integrating “nature” in the water-energy-food Nexus: Current perspectives and future directions

IF 8 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Science of the Total Environment Pub Date : 2025-02-25 Epub Date: 2025-02-10 DOI:10.1016/j.scitotenv.2025.178600
Enrico Lucca , Dimitris Kofinas , Tamara Avellán , Janina Kleemann , Caro E. Mooren , Malgorzata Blicharska , Claudia Teutschbein , Anna Sperotto , Janez Sušnik , Sarah Milliken , Marianela Fader , Dejana Đorđević , Tina Dašić , Violeta Vasilić , Bamgboye Taiwo , Aziza Baubekova , Rocío Pineda-Martos , Alexandra Spyropoulou , Gösta F.M. Baganz , Jerome el Jeitany , Chrysi Laspidou
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Abstract

Integrated approaches for managing natural resources are said to meet increasing demand for water, energy, and food, while maintaining the integrity of ecosystems, and ensuring equitable access to resources. The Water-Energy-Food (WEF) Nexus has been proposed as a cross-sectoral approach to manage trade-offs and exploit synergies that arise among these sectors. Although not initially included as a component of the Nexus, the role of nature in sustaining the water, energy, and food sectors and in regulating their interrelationships is increasingly recognised by Nexus researchers and practitioners. To converge existing approaches that integrate nature into the WEF Nexus and suggest a common framework, we – an interdisciplinary group of natural resources management researchers and systems thinkers from the European research network NEXUSNET COST Action – followed a collaborative process of knowledge creation combining literature review, elicitation of expert opinion and collaborative writing. Our results reveal a multiplicity of concepts utilised in the literature to represent, partially or fully, “nature” in the Nexus, such as “environment”, “ecosystems”, “ecosystem services”, “social-ecological systems”, and “biodiversity”. Disparity was also found in the role attributed to nature, represented by three key paradigms: (1) ecosystems as the fourth component of an expanded Nexus, i.e., the WEF-Ecosystems (WEFE) Nexus; (2) ecosystems as a foundational layer to the Nexus; and (3) the WEF Nexus as a central component of social-ecological systems (SES). By creating a hybrid approach that brings together the benefits of the respective paradigms, we present a forward-looking WEFE Nexus conceptualisation. This paradigm expands the mutual interlinkages among water, energy and food to the entirety of SES, thus acknowledging the social-ecological processes that are affected by and affect the WEF Nexus. The results of this collaborative research effort intend to provide researchers and stakeholders with means to better understand and ultimately manage Nexus issues towards a transformative change.

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在水-能量-食物关系中整合“自然”:当前观点和未来方向
据称,管理自然资源的综合方法可以满足对水、能源和粮食日益增长的需求,同时保持生态系统的完整性,并确保公平获取资源。水-能源-粮食联系已被提议作为一种跨部门的办法来管理权衡和利用这些部门之间产生的协同作用。虽然最初没有被纳入Nexus的组成部分,但自然在维持水、能源和食品部门以及调节其相互关系方面的作用越来越被Nexus的研究人员和实践者所认识。为了将现有的方法整合到世界经济论坛Nexus中,并提出一个共同的框架,我们——一个由来自欧洲研究网络NEXUSNET成本行动的自然资源管理研究人员和系统思想家组成的跨学科小组——遵循了一个结合文献综述、专家意见和协作写作的知识创造协作过程。我们的研究结果揭示了文献中用于部分或全部表示“自然”的概念的多样性,例如“环境”、“生态系统”、“生态系统服务”、“社会生态系统”和“生物多样性”。自然所扮演的角色也存在差异,主要表现为三个关键范式:(1)生态系统作为扩展Nexus的第四个组成部分,即世界经济论坛-生态系统(WEFE) Nexus;(2)生态系统是Nexus的基础层;(3)作为社会生态系统(SES)核心组成部分的WEF Nexus。通过创建一种混合方法,将各自范例的优点结合在一起,我们提出了一个前瞻性的WEFE Nexus概念。这种模式将水、能源和食物之间的相互联系扩展到整个社会经济体系,从而承认受世界经济论坛联系影响和影响的社会生态过程。这项合作研究的成果旨在为研究人员和利益相关者提供更好地理解和最终管理Nexus问题的方法,以实现变革。
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来源期刊
Science of the Total Environment
Science of the Total Environment 环境科学-环境科学
CiteScore
17.60
自引率
10.20%
发文量
8726
审稿时长
2.4 months
期刊介绍: The Science of the Total Environment is an international journal dedicated to scientific research on the environment and its interaction with humanity. It covers a wide range of disciplines and seeks to publish innovative, hypothesis-driven, and impactful research that explores the entire environment, including the atmosphere, lithosphere, hydrosphere, biosphere, and anthroposphere. The journal's updated Aims & Scope emphasizes the importance of interdisciplinary environmental research with broad impact. Priority is given to studies that advance fundamental understanding and explore the interconnectedness of multiple environmental spheres. Field studies are preferred, while laboratory experiments must demonstrate significant methodological advancements or mechanistic insights with direct relevance to the environment.
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