Global overlooked multidimensional water scarcity

W Wenfeng Liu Z Zhonghao Fu (State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University) M Michelle T. H. van Vliet (Department of Physical Geography, Utrecht University) K Kyle Frankel Davis (Department of Geography and Spatial Sciences, University of Delaware) P Philippe Ciais Y Yuzhuang Bao (State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University) Y Yawei Bai (Center for Agricultural Water Research in China, College of Water Resources and Civil Engineering, China Agricultural University) T Taisheng Du (State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University) S Shaozhong Kang (State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University) Z Zun Yin (Program in Atmospheric and Oceanic Sciences, Princeton University) Y Yu Fang Y Yoshihide Wada

Abstract

Freshwater resources are fundamental to supporting humanity, and measures of water scarcity have been critical for identifying where water requirements and water availability are imbalanced. Existing water scarcity metrics typically account for blue water withdrawals (i.e., from surface-/groundwater), while the contribution of green water (i.e., soil moisture) and water quality—dimensions with important implications for multiple societal sectors—to water scarcity remains unclear. Here, we introduce the concept of multidimensional water scarcity that explicitly assesses all three of these dimensions of water scarcity and evaluates their individual and combined effects. We find that 22 to 26% of the global land area and 58 to 64% of the global population are exposed to some form of water scarcity annually, with multidimensional (i.e., blue, green, and quality) water scarcity particularly high in India, China, and Pakistan. Examining seasonal water scarcity, we estimate that 5.9 billion people (or 80% of the world’s population in 2015) were exposed to at least one dimension of water scarcity for at least 1 mo per year and that 1-in-10 people (10%) were exposed to multidimensional water scarcity at least 1 mo per year. Our findings demonstrate that the challenges of water scarcity are far more widespread than previously understood. As such, our assessment provides a more holistic view of global water scarcity issues and points to overlooked scarcity where action needs to bring human pressure on freshwater resources into balance with water quantity and quality.

Article Details

Volume / Issue Vol. 122, Issue 26
Published July 01, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (12)

W

Wenfeng Liu

Z

Zhonghao Fu

State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University

M

Michelle T. H. van Vliet

Department of Physical Geography, Utrecht University

K

Kyle Frankel Davis

Department of Geography and Spatial Sciences, University of Delaware

P

Philippe Ciais

Y

Yuzhuang Bao

State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University

Y

Yawei Bai

Center for Agricultural Water Research in China, College of Water Resources and Civil Engineering, China Agricultural University

T

Taisheng Du

State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University

S

Shaozhong Kang

State Key Laboratory of Efficient Utilization of Agricultural Water Resources, China Agricultural University

Z

Zun Yin

Program in Atmospheric and Oceanic Sciences, Princeton University

Y

Yu Fang

Y

Yoshihide Wada