Multidimensional contributions to the water-energy-food nexus: Interpretable evidence from cities in China's Yellow river region

River basins are critical to resource security and sustainable development. Using panel data for 54 prefecture-level cities in provinces traversed by the Yellow River from 2006 to 2020, this study evaluates water–energy–food (WEF) coordination and examines its associated factors. An entropy-weighted coupling coordination model is combined with a CNN–BiLSTM–Attention model and SHAP analysis to capture nonlinear and heterogeneous contribution patterns, while a two-way fixed-effects model serves as a linear benchmark. The proposed model achieves a held-out evaluation R 2 of 0.726 and an RMSE of 0.088. Green expansion contributes the largest share to model predictions (29.23%), followed by growth (24.35%), carbon reduction (23.99%), and pollution reduction (22.43%). Ecological conditions, industrial structure upgrading, and digital development emerge as key factors. Digital development and green finance are generally associated with higher WEF coordination, whereas pollution emissions and intensive industrial activities are associated with constraints under specific conditions. The results support differentiated, place-based resource governance for the sampled cities.

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Publication Details

Journal
Journal of Cleaner Production
Published
2026-09-28
DOI
https://doi.org/10.1016/j.jclepro.2026.149554
Primary Topic
Water-Energy-Food Nexus Studies
Type
article
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Multidimensional contributions to the water-energy-food nexus: Interpretable evidence from cities in China's Yellow river region

Jialu Tang, Yue Wang, Lan Fang, Luping Li et al.
Journal of Cleaner Production
Water-Energy-Food Nexus Studies
article

Multidimensional contributions to the water-energy-food nexus: Interpretable evidence from cities in China's Yellow river region

Jialu Tang, Yue Wang, Lan Fang, Luping Li, Wenzhe Liu
article en

Abstract

River basins are critical to resource security and sustainable development. Using panel data for 54 prefecture-level cities in provinces traversed by the Yellow River from 2006 to 2020, this study evaluates water–energy–food (WEF) coordination and examines its associated factors. An entropy-weighted coupling coordination model is combined with a CNN–BiLSTM–Attention model and SHAP analysis to capture nonlinear and heterogeneous contribution patterns, while a two-way fixed-effects model serves as a linear benchmark. The proposed model achieves a held-out evaluation R 2 of 0.726 and an RMSE of 0.088. Green expansion contributes the largest share to model predictions (29.23%), followed by growth (24.35%), carbon reduction (23.99%), and pollution reduction (22.43%). Ecological conditions, industrial structure upgrading, and digital development emerge as key factors. Digital development and green finance are generally associated with higher WEF coordination, whereas pollution emissions and intensive industrial activities are associated with constraints under specific conditions. The results support differentiated, place-based resource governance for the sampled cities.

Journal of Cleaner ProductionVol. 578
Huazhong Agricultural University (CN), Leibniz Institute of Agricultural Development in Transition Economies (DE), Shaanxi Normal University (CN), Tsinghua University (CN)
Responsible consumption and production
Openalex Percentile: Top 21%
Water-Energy-Food Nexus Studies
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Multidimensional contributions to the water-energy-food nexus: Interpretable evidence from cities in China's Yellow river region — Jialu Tang, Yue Wang, et al. · Journal of Cleaner Production (2026) | TGRS Research Map | TGRS