Next Article in Journal
Assessment of Regional Hydrogen Refueling Station Layout Planning and Carbon Reduction Benefits Based on Multi-Dimensional Factors of Population, Land, and Demand
Previous Article in Journal
From Gameplay to Green Choices: Paper Goes Green, a Board Game for Fostering Life Cycle Thinking and Sustainable Consumption
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Life Cycle Assessment of Adjustable Permanent Magnet Drives for a Low-Carbon Transition in China’s Coal-Fired Power Systems

1
State Key Laboratory of Regional and Urban Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China
2
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing 101408, China
3
China Electronics Standardization Institute, Beijing 100007, China
4
CSG Electric Power Research Institute Co., Ltd., Guangzhou 510700, China
5
International Copper Association Asia, Beijing 100020, China
*
Author to whom correspondence should be addressed.
Sustainability 2025, 17(21), 9574; https://doi.org/10.3390/su17219574
Submission received: 16 September 2025 / Revised: 16 October 2025 / Accepted: 20 October 2025 / Published: 28 October 2025
(This article belongs to the Section Environmental Sustainability and Applications)

Abstract

The industrial motor systems account for 45% of global electricity consumption. A life cycle model is established to quantify the potential environmental benefits of typical adjustable permanent magnet drives (APMDs, 1250 kW) versus variable frequency drives (VFDs) in China. The model covers mining of metals, manufacturing, operation, and recycling phases of APMDs, incorporating empirical data from China’s 3232 coal-fired units. Four scenarios are set up: business-as-usual, moderate, aggressive, and full-retrofit. Key findings demonstrate that APMDs reduce operational energy consumption by 94.5% compared to VFDs through significantly declining frequency conversion losses and cooling requirements. The life cycle carbon emissions of APMDs (29.7 tonnes CO2_eq) represent merely 5% of VFDs emissions (570 tonnes CO2_eq), achieving a 95% reduction. Within APMDs’ footprint, recycling contributes a 45% emission offset (−13.3 tonnes CO2-eq), while operational efficiency drives the majority of the reduction. Sensitivity analysis identifies electricity emission factors, NdFeB production emissions, and metal recycling rates as primary sensitivity drivers (sensitivity index ST = 0.80). Scenario simulations confirm that the aggressive retrofit strategy (covering high- and moderate-potential units) could reduce annual GHG emissions of 3.12 million tonnes CO2_eq., with corresponding 89% decreases in particulate matter (PM). This research demonstrates that APMDs are an effective pathway for the low-carbon transition in coal power systems. Their large-scale implementation can potentially necessitate breakthroughs in tiered retrofit policies, thereby providing crucial technological support for industrial carbon neutrality.
Keywords: adjustable permanent magnet drive system; life cycle assessment; coal-fired power; GHG emission adjustable permanent magnet drive system; life cycle assessment; coal-fired power; GHG emission

Share and Cite

MDPI and ACS Style

Zeng, Y.; Pan, J.; Gao, M.; Liang, D.; Zhuo, R.; Zhou, C.; Lu, B. Life Cycle Assessment of Adjustable Permanent Magnet Drives for a Low-Carbon Transition in China’s Coal-Fired Power Systems. Sustainability 2025, 17, 9574. https://doi.org/10.3390/su17219574

AMA Style

Zeng Y, Pan J, Gao M, Liang D, Zhuo R, Zhou C, Lu B. Life Cycle Assessment of Adjustable Permanent Magnet Drives for a Low-Carbon Transition in China’s Coal-Fired Power Systems. Sustainability. 2025; 17(21):9574. https://doi.org/10.3390/su17219574

Chicago/Turabian Style

Zeng, Yutang, Jingjin Pan, Meng Gao, Dong Liang, Ran Zhuo, Chuanbin Zhou, and Bin Lu. 2025. "Life Cycle Assessment of Adjustable Permanent Magnet Drives for a Low-Carbon Transition in China’s Coal-Fired Power Systems" Sustainability 17, no. 21: 9574. https://doi.org/10.3390/su17219574

APA Style

Zeng, Y., Pan, J., Gao, M., Liang, D., Zhuo, R., Zhou, C., & Lu, B. (2025). Life Cycle Assessment of Adjustable Permanent Magnet Drives for a Low-Carbon Transition in China’s Coal-Fired Power Systems. Sustainability, 17(21), 9574. https://doi.org/10.3390/su17219574

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop