TY - JOUR
T1 - Networked power infrastructure, energy transition, and supply chain resilience
T2 - Evidence from China's ultra-high voltage transmission
AU - Tang, Ziru
AU - Zhang, Zenglian
AU - Dong, Zhiyuan
AU - Wang, Hongxia
N1 - Publisher Copyright:
© 2026 Elsevier Ltd
PY - 2026/7/15
Y1 - 2026/7/15
N2 - Large-scale networked energy infrastructure is increasingly recognized as a critical instrument for environmental management, as it shapes the allocation of energy resources, the integration of clean energy, and the stability of production systems under climate and energy transition pressures. Exploiting the staggered commissioning of China's ultra-high voltage (UHV) power transmission projects as a quasi-natural experiment, this study investigates how infrastructure-induced improvements in power supply security affect firm-level supply chain resilience. Using panel data on Chinese A-share listed firms from 2007 to 2023 and a multi-period difference-in-differences approach, we find that UHV deployment significantly enhances supply chain resilience. Mechanism analyses indicate that, at the system level, UHV mitigates supply chain vulnerability by alleviating power shortages, reducing electricity cost pressures, and weakening regionally fragmented energy markets. From an environmental perspective, resilience gains operate through cleaner energy consumption in power-importing regions and higher energy efficiency in power-exporting regions. Further analyses reveal stronger effects in regions with lower electricity dependence, in power-importing areas, and in energy-intensive industries. Overall, the findings underscore the role of networked power infrastructure as an environmental management tool that simultaneously supports low-carbon transition and reduces systemic production risks.
AB - Large-scale networked energy infrastructure is increasingly recognized as a critical instrument for environmental management, as it shapes the allocation of energy resources, the integration of clean energy, and the stability of production systems under climate and energy transition pressures. Exploiting the staggered commissioning of China's ultra-high voltage (UHV) power transmission projects as a quasi-natural experiment, this study investigates how infrastructure-induced improvements in power supply security affect firm-level supply chain resilience. Using panel data on Chinese A-share listed firms from 2007 to 2023 and a multi-period difference-in-differences approach, we find that UHV deployment significantly enhances supply chain resilience. Mechanism analyses indicate that, at the system level, UHV mitigates supply chain vulnerability by alleviating power shortages, reducing electricity cost pressures, and weakening regionally fragmented energy markets. From an environmental perspective, resilience gains operate through cleaner energy consumption in power-importing regions and higher energy efficiency in power-exporting regions. Further analyses reveal stronger effects in regions with lower electricity dependence, in power-importing areas, and in energy-intensive industries. Overall, the findings underscore the role of networked power infrastructure as an environmental management tool that simultaneously supports low-carbon transition and reduces systemic production risks.
KW - Energy security
KW - Environmental management
KW - Low-carbon energy transition
KW - Power infrastructure
KW - Supply chain resilience
KW - Ultra-high voltage transmission
UR - https://www.scopus.com/pages/publications/105041798635
U2 - 10.1016/j.jenvman.2026.130254
DO - 10.1016/j.jenvman.2026.130254
M3 - Article
AN - SCOPUS:105041798635
SN - 0301-4797
VL - 412
JO - Journal of Environmental Management
JF - Journal of Environmental Management
M1 - 130254
ER -