解决缺水问题,实现气候适应能力和人类健康。

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Karl Zimmermann, Azar M Abadi, Kate A Brauman, Josefina Maestu, Gualbert Oude Essink, Corinne Schuster-Wallace, Ryan Smith, Kaveh Madani, Zafar Adeel, Matthew O Gribble
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引用次数: 0

摘要

据预测,水资源短缺将影响到世界上一半的人口,并因气候变化而逐渐加剧。本文阐述了从小组讨论在2023年的联合国会议上解决水短缺实现气候顺应和人类健康。理解和解决缺水超越水文水平衡还包括社会和经济措施。我们考虑了水质和水量恶化造成的五类健康影响:(一)与水有关的疾病和卫生用水,(二)营养不良和粮食用水,(三)生计、收入、发展和能源用水,(四)干旱引起的灰尘和野火烟雾造成的不利空气质量,以及(五)与缺水有关的因素造成的心理健康影响。关于弹性水系统的障碍和机遇的讨论首先将水资源短缺重新定义为“通往水资源破产的道路”,并引入水资源伙伴关系,以增强当地水资源领导人的意识、教育和资源,以设计和实施适合当地的水资源管理战略。其他障碍包括:(1)缺乏考虑水资源短缺的社会经济影响的工具;(2)缺乏可供决策者采取行动的水信息;(3)在应用水资源短缺模型以获得与政策相关的发现方面缺乏明确性;(4)不充分的干旱适应规划。本文为地方政府、国家政府、国际行动者、研究人员、非政府组织和地方选民提供了解决这些障碍的建议。这些建议的主要主题是协作性、多学科的水伙伴关系、无障碍形式的知识共享以及增强所有人的参与能力。本文的中心论点是,解决缺水必须专注于人民和他们的领导能力健康和富有成效的生活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Addressing water scarcity to support climate resilience and human health.

Water scarcity is projected to affect half of the world's population, gradually exacerbated by climate change. This article elaborates from a panel discussion at the 2023 United Nations Water Conference on "Addressing Water Scarcity to Achieve Climate Resilience and Human Health." Understanding and addressing water scarcity goes beyond hydrological water balances to also include societal and economic measures. We consider five categories of health impacts resulting from deteriorating water qualities and quantities: (1) water-related diseases and water for hygiene, (2) malnutrition and water for food, (3) livelihoods, income, development, and water for energy, (4) adverse air quality from drought-induced dust and wildfire smoke, and (5) mental health effects from water scarcity-related factors. A discussion on the barriers and opportunities for resilient water systems begins by reframing water scarcity as a "pathway to water bankruptcy" and introducing Water Partnerships to empower local water leaders with the awareness, education, and resources to devise and implement locally appropriate water management strategies. Other barriers include the (1) lack of tools to consider the socioeconomic implications of water scarcity, (2) lack of water information being in actionable formats for decision-makers, (3) lack of clarity in the application of water scarcity modeling to gain policy-relevant findings, and (4) inadequate drought adaptation planning. The article includes recommendations for local governments, national governments, international actors, researchers, nongovernmental organizations, and local constituents in addressing these barriers. The predominant theme in these recommendations is collaborative, multidisciplinary Water Partnerships, knowledge-sharing in accessible formats, and empowering participation by all. This article's central thesis is that addressing water scarcity must focus on people and their ability to lead healthy and productive lives.

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来源期刊
Integrated Environmental Assessment and Management
Integrated Environmental Assessment and Management ENVIRONMENTAL SCIENCESTOXICOLOGY&nbs-TOXICOLOGY
CiteScore
5.90
自引率
6.50%
发文量
156
期刊介绍: Integrated Environmental Assessment and Management (IEAM) publishes the science underpinning environmental decision making and problem solving. Papers submitted to IEAM must link science and technical innovations to vexing regional or global environmental issues in one or more of the following core areas: Science-informed regulation, policy, and decision making Health and ecological risk and impact assessment Restoration and management of damaged ecosystems Sustaining ecosystems Managing large-scale environmental change Papers published in these broad fields of study are connected by an array of interdisciplinary engineering, management, and scientific themes, which collectively reflect the interconnectedness of the scientific, social, and environmental challenges facing our modern global society: Methods for environmental quality assessment; forecasting across a number of ecosystem uses and challenges (systems-based, cost-benefit, ecosystem services, etc.); measuring or predicting ecosystem change and adaptation Approaches that connect policy and management tools; harmonize national and international environmental regulation; merge human well-being with ecological management; develop and sustain the function of ecosystems; conceptualize, model and apply concepts of spatial and regional sustainability Assessment and management frameworks that incorporate conservation, life cycle, restoration, and sustainability; considerations for climate-induced adaptation, change and consequences, and vulnerability Environmental management applications using risk-based approaches; considerations for protecting and fostering biodiversity, as well as enhancement or protection of ecosystem services and resiliency.
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