发电技术 ›› 2026, Vol. 47 ›› Issue (1): 14-25.DOI: 10.12096/j.2096-4528.pgt.260102

• 碳中和 • 上一篇    下一篇

考虑电转气-碳捕集电厂联动的综合能源系统㶲经济分析

王秀云, 章婉钰   

  1. 东北电力大学电气工程学院,吉林省 吉林市 132012
  • 收稿日期:2025-01-13 修回日期:2025-03-08 出版日期:2026-02-28 发布日期:2026-02-12
  • 作者简介:王秀云(1977),女,硕士,副教授,研究方向为电力系统优化运行,w-xiu-y@163.com
    章婉钰(1999),女,硕士研究生,研究方向为电力系统优化运行,1625160998@qq.om
  • 基金资助:
    吉林省教育厅重点基金项目(JJKH20230118KJ)

Exergoeconomic Analysis of Integrated Energy Systems of Power to Gas-Carbon Capture Power Plant

Xiuyun WANG, Wanyu ZHANG   

  1. Faculty of Electrical Engineering, Northeast Electric Power University, Jilin 132012, Jilin Province, China
  • Received:2025-01-13 Revised:2025-03-08 Published:2026-02-28 Online:2026-02-12
  • Supported by:
    Jilin Provincial Department of Education(JJKH20230118KJ)

摘要:

目的 考虑系统清洁低碳的前提下,综合能源系统中能源产品定价与市场用户的经济利益和能源运营商的盈利能力密切相关。为此,对含电转气-碳捕集电厂(power to gas-carbon capture power plant,P2G-CCPP)的综合能源系统(integrated energy system,IES)进行㶲经济分析。 方法 从㶲视角出发,兼顾能量的量与质,针对不同能流进行㶲值计算,建立㶲流计算子模型。将系统低碳经济性引入㶲经济分析中,将碳排放权交易成本、碳捕集能耗成本及碳封存成本纳入非能量成本中,建立㶲经济成本分摊子模型。相较于传统定价方法,考虑了碳成本及能量品位差异对系统冷热电单位㶲成本的影响,体现优质优价原则。 结果 仿真算例表明引入P2G-CCPP联动系统能够提高系统低碳减排能力,实现成本合理分摊。 结论 含P2G-CCPP机组的综合能源系统能够有效削减系统总成本及冷热电单位成本,增强了碳利用和燃气生产消费的节能减排途径,具有显著的经济及社会效益。

关键词: 综合能源系统, 电转气, 碳捕集电厂, 㶲流, 㶲经济, 成本分摊

Abstract:

Objectives Considering the premise of clean and low-carbon system, the pricing of energy products in the integrated energy system is closely related to the economic interests of market users and the profitability of energy operators. Exergic economic analysis of integrated energy system (IES) containing power to gas-carbon capture power plant (P2G-CCPP) is proposed. Methods From the perspective of exergy, both the quantity and quality of energy were taken into account, exergy values are calculated for different energy flows, and a sub-model of exergy flow calculation is established. The low carbon economy of the system is introduced into the exergic economic analysis. The carbon emission trading cost, carbon capture energy cost and carbon storage cost are included in the non-energy cost. The exergic economic cost distribution model is established. Compared with traditional pricing methods, the paper considered the impact of carbon cost and energy grade difference on the exergic cost of the system, reflecting the principle of good quality and good price. Results Simulation examples show that the P2G-CCPP linkage system can improve the low carbon emission reduction ability of the system and realize the reasonable cost allocation. Conclusions The integrated energy system with P2G-CCPP units can effectively reduce the total system cost and the unit cost of cooling, heating and power, enhance the energy conservation and emission reduction approaches of carbon utilization and gas production and consumption, and has significant economic and social benefits.

Key words: integrated energy system, power to gas, carbon capture power plants, exergy flow, exergoeconomy, cost allocation

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