综合智慧能源

• •    

数据中心备用电源绿氨掺烧策略与经济路径分析

程明, 蒋琼琼, 柳华蔚, 吴有兵, 田野, 赵浩林, 洪慧   

  1. 中国煤炭销售运输有限责任公司, 北京 中国
    华北电力大学,
    中国科学院大学, 北京 中国
  • 收稿日期:2025-10-11 修回日期:2026-01-01
  • 基金资助:
    国家自然科学基金项目(No. 52306242)

Analysis of green ammonia co-firing strategy and economic pathway for data center backup power

  1. , , China
    , ,
  • Received:2025-10-11 Revised:2026-01-01
  • Supported by:
    National Natural Science Foundation of China(No. 52306242)

摘要: 本文旨在探讨绿氨掺烧技术对数据中心备用柴油发电机组低碳转型的可行路径,以应对算力增长与能源清洁化协同发展的挑战。研究通过分析绿氨能源发展态势与氨-柴油混合燃烧技术现状,系统梳理掺氨比例、喷射策略优化及发动机结构适配等关键技术瓶颈与发展潜力;构建基于经济性评价与多模式运营分析的阶段发展路线,并采用成本效益分析和场景模拟方法评估不同掺氨比例下的度电成本与碳减排效益,分析了技术发展路径与对策。结果表明:绿氨掺烧备用柴油发电机组在应急、互济和自备模式下均具有经济性优势,度电成本随掺氨比例提高与碳交易价格上升呈下降趋势,预计2044年后可低于传统柴油发电;该技术显著提升数据中心绿电消纳能力,降低碳排放,促进机组逐步由备用电源转向主力电源。本研究为“算力-电力”协同发展提供技术支撑和政策参考,证实了绿氨掺烧是实现数据中心备用电源功能灵活转化与绿色升级的有效途径,具备广阔的应用前景。

关键词: 数据中心, 绿氨掺烧, 经济性分析, 发展路径

Abstract: This paper aims to explore the feasibility of green ammonia co-firing technology for facilitating the low-carbon transition of backup diesel generator sets in data centers, addressing the challenge of synergistic development between computing power growth and clean energy utilization. By analyzing the development trends of green ammonia energy and the current status of ammonia-diesel blended combustion technology, the study systematically reviews key technical bottlenecks and development potentials, such as the ammonia blending ratio, injection strategy optimization, and engine structural modification. A phased development roadmap is constructed based on economic evaluation and multi-mode operational analysis, while cost-benefit analysis and scenario simulation methods are employed to assess the levelized cost of electricity and carbon reduction benefits under different ammonia blending ratios. The development pathways and corresponding strategies are also analyzed. Results indicate that green ammonia co-firing in backup diesel generator sets offers economic advantages under emergency, mutual assistance, and self-supply operation modes. The levelized cost of electricity decreases with higher ammonia blending ratios and rising carbon trading prices, and is projected to fall below that of traditional diesel generation after 2044. This technology significantly enhances the data center’s capacity for renewable energy integration, reduces carbon emissions, and facilitates the gradual transition of generator sets from a backup power source to a primary power source. This study provides technical and policy support for the synergistic development of "computing power and electric power", demonstrating that green ammonia co-firing is an effective pathway for achieving flexible functional transformation and green upgrading of backup power systems in data centers, with broad application prospects.

Key words: Data center, Ammonia co-firing, Economic analysis, Development roadmap