考虑余热回收与碳-证联合交易的铜冶炼企业低碳优化策略
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河海大学电气与动力工程学院

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国家自然科学基金资助项目(52307090)


Low-carbon optimization strategy for copper smelting enterprises considering waste heat recovery and carbon-green certificate joint trading
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School of Electrical and Power Engineering, Hohai University

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National Natural Science Foundation of China (No. 52307090)

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    摘要:

    在当前“双碳”目标的推进下,铜冶炼企业高能耗、高排放的情况更加凸显,如何充分挖掘工艺流程中的余热潜力,同时借助碳市场与绿证市场的协同机制已逐渐成为该行业低碳转型的关键。针对上述问题,提出一种考虑余热回收与碳-证联合交易的铜冶炼企业低碳优化策略。首先,基于典型铜冶炼工艺流程,划分差异化工序调节特性,并构建余热回收模型以挖掘余热资源的节能降碳潜力;其次,量化铜冶炼全流程的碳排放,融合阶梯式碳交易与绿证交易机制,建立碳-证联合交易框架;最后,结合企业实际生产约束,构建铜冶炼全流程低碳优化策略。算例验证结果表明所提策略能够在保障生产安全的前提下实现经济效益与低碳效益的协同优化,为高耗能行业的低碳转型提供参考。

    Abstract:

    Under the current carbon peaking and carbon neutrality goals, the high energy consumption and high emissions of copper smelting enterprises have become more pronounced. How to fully tap the potential of waste heat recovery in the production processes while leveraging the synergistic mechanism of the carbon market and green certificate market has gradually become a key factor in the low-carbon transformation of this industry. To address these problems, a low-carbon optimiza-tion strategy for copper smelting enterprises involving waste heat recovery and carbon-green certificate joint trading is proposed. First, the differential process regulation character-istics of typical copper smelting processes are classified, and a waste heat recovery model is constructed to fully exploit the energy-saving and carbon-reduction potential of waste heat resources; Second, full-process carbon emissions of copper smelting are quantified, integrating a stepped carbon trading mechanism with green certificate trading to establish a car-bon-green certificate joint trading framework; Finally, a full-process low-carbon optimization strategy is formulated considering actual production constraints of enterprises. The results of the case study show that the proposed strategy can achieve synergistic optimization of economic and low-carbon benefits on the premise of ensuring production safety, providing a reference for the low-carbon transformation of energy-extensive industries.

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  • 收稿日期:2026-05-19
  • 最后修改日期:2026-06-11
  • 录用日期:2026-08-21
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