Industrial overcapacity can enable seasonal flexibility in electricity use

Fuente: arXiv
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Auteurs principaux: Lyu, Ruike, Li, Anna, Wang, Jianxiao, Luo, Hongxi, Shen, Yan, Guo, Hongye, Du, Ershun, Kang, Chongqing, Jenkins, Jesse
Format: Preprint
Publié: 2025
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author Lyu, Ruike
Li, Anna
Wang, Jianxiao
Luo, Hongxi
Shen, Yan
Guo, Hongye
Du, Ershun
Kang, Chongqing
Jenkins, Jesse
author_facet Lyu, Ruike
Li, Anna
Wang, Jianxiao
Luo, Hongxi
Shen, Yan
Guo, Hongye
Du, Ershun
Kang, Chongqing
Jenkins, Jesse
contents In many countries, declining demand in energy-intensive industries (EIIs) such as cement, steel, and aluminum is leading to industrial overcapacity. Although industrial overcapacity is traditionally envisioned as problematic and resource-wasteful, it could unlock EIIs' flexibility in electricity use. Here, using China's aluminum smelting industry as a case study, we evaluate the system-level cost-benefit of retaining EII overcapacity for flexible electricity use in decarbonized energy systems. We find that overcapacity can enable aluminum smelters to adopt a seasonal operation paradigm, ceasing production during winter load peaks that are exacerbated by heating electrification and renewable seasonality. This seasonal operation paradigm could reduce the investment and operational costs of China's decarbonized electricity system by 23-32 billion CNY/year (11-15% of the aluminum smelting industry's product value), sufficient to offset the increased smelter maintenance and product storage costs associated with overcapacity. It may also create labor complementarities between the aluminum and thermal power sectors.
format Preprint
id arxiv_https___arxiv_org_abs_2511_22839
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Industrial overcapacity can enable seasonal flexibility in electricity use
Lyu, Ruike
Li, Anna
Wang, Jianxiao
Luo, Hongxi
Shen, Yan
Guo, Hongye
Du, Ershun
Kang, Chongqing
Jenkins, Jesse
Physics and Society
Systems and Control
General Economics
Economics
In many countries, declining demand in energy-intensive industries (EIIs) such as cement, steel, and aluminum is leading to industrial overcapacity. Although industrial overcapacity is traditionally envisioned as problematic and resource-wasteful, it could unlock EIIs' flexibility in electricity use. Here, using China's aluminum smelting industry as a case study, we evaluate the system-level cost-benefit of retaining EII overcapacity for flexible electricity use in decarbonized energy systems. We find that overcapacity can enable aluminum smelters to adopt a seasonal operation paradigm, ceasing production during winter load peaks that are exacerbated by heating electrification and renewable seasonality. This seasonal operation paradigm could reduce the investment and operational costs of China's decarbonized electricity system by 23-32 billion CNY/year (11-15% of the aluminum smelting industry's product value), sufficient to offset the increased smelter maintenance and product storage costs associated with overcapacity. It may also create labor complementarities between the aluminum and thermal power sectors.
title Industrial overcapacity can enable seasonal flexibility in electricity use
topic Physics and Society
Systems and Control
General Economics
Economics
url https://arxiv.org/abs/2511.22839