TY - JOUR
T1 - Water scarcity and its cascading economic effects in China's trade network
T2 - A transmission analysis
AU - Wang, Chenglong
AU - Wang, Ying
AU - Shuai, Chenyang
AU - Chen, Xi
AU - Zhao, Bu
AU - Qu, Shen
AU - Xu, Ming
N1 - Publisher Copyright:
© 2026 Elsevier Ltd
PY - 2026/6/1
Y1 - 2026/6/1
N2 - Water scarcity poses serious challenges to sustainable water use across sectors, particularly in China, where water resources are unevenly distributed and often under severe stress. Multiple studies have revealed that water scarcity can cause significant economic losses, defined as water scarcity risk (WSR). These impacts occur both locally, referred to as Local Water Scarcity Risk (LWSR), and can also be propagated to other regions and sectors through trade networks, referred to as Virtual Water Scarcity Risk (VWSR). A considerable number of water scarcity risk-related studies focus their attention on the ultimate outcome of water scarcity risk transmission from the starting point to the endpoint in the trade system, while neglecting the analysis of the intermediate transmission process of water scarcity risk. This study explores the cascading economic impacts of WSR within China's trade network, analyzing both LWSR and VWSR across provinces and sectors. Using a multi-regional input-output model combined with structural path analysis, we quantify the propagation of WSR through China's economic network, identifying key transmission pathways and nodes impacted by water scarcity. Results show that WSR declined from USD 3.5 trillion in 2017 to USD 2.8 trillion in 2020. WSR is significantly concentrated in the eastern region and water-intensive sectors such as the service sector, manufacturing, and agriculture. The study concludes with policy recommendations for reducing dependency on water-intensive local products, promoting water conservation within high-risk sectors and Inter-regional water transfer, highlighting pathways for sustainable water management.
AB - Water scarcity poses serious challenges to sustainable water use across sectors, particularly in China, where water resources are unevenly distributed and often under severe stress. Multiple studies have revealed that water scarcity can cause significant economic losses, defined as water scarcity risk (WSR). These impacts occur both locally, referred to as Local Water Scarcity Risk (LWSR), and can also be propagated to other regions and sectors through trade networks, referred to as Virtual Water Scarcity Risk (VWSR). A considerable number of water scarcity risk-related studies focus their attention on the ultimate outcome of water scarcity risk transmission from the starting point to the endpoint in the trade system, while neglecting the analysis of the intermediate transmission process of water scarcity risk. This study explores the cascading economic impacts of WSR within China's trade network, analyzing both LWSR and VWSR across provinces and sectors. Using a multi-regional input-output model combined with structural path analysis, we quantify the propagation of WSR through China's economic network, identifying key transmission pathways and nodes impacted by water scarcity. Results show that WSR declined from USD 3.5 trillion in 2017 to USD 2.8 trillion in 2020. WSR is significantly concentrated in the eastern region and water-intensive sectors such as the service sector, manufacturing, and agriculture. The study concludes with policy recommendations for reducing dependency on water-intensive local products, promoting water conservation within high-risk sectors and Inter-regional water transfer, highlighting pathways for sustainable water management.
KW - Cascading effect
KW - Economic loss
KW - Transmission analysis
KW - Water scarcity
UR - https://www.scopus.com/pages/publications/105032036163
U2 - 10.1016/j.watres.2026.125407
DO - 10.1016/j.watres.2026.125407
M3 - Article
AN - SCOPUS:105032036163
SN - 0043-1354
VL - 297
JO - Water Research
JF - Water Research
M1 - 125407
ER -