Trading strategies for electrolytic copper industrial parks participating in electricity-carbon markets based on multi-flow coupling
マルチフロー連携に基づく電解銅工業団地の電力・炭素市場取引戦略 (AI 翻訳)
Ruiqing Duan, Qilin Han, Yan Jiang, Xinchun Zhu, Dan Zhang, Chuan Zhao, Youxiang Wang, Kaiyuan Yu, Linbo Fu
🤖 gxceed AI 要約
日本語
世界的な温暖化対策の強化を受け、電解銅工業団地を対象に電力・炭素市場の取引戦略を提案。物質・エネルギー・炭素排出フローの連成モデルを構築し、運営コスト最小化を目指す。実際のデータを用いた検証により、炭素排出削減と経済性向上の有効性を確認した。
English
This paper proposes a trading strategy for electrolytic copper industrial parks participating in electricity-carbon markets, leveraging multi-flow coupling of material, energy, and carbon emissions. By modeling thermal inertia of electrolytic cells, it optimizes production scheduling to minimize costs while reducing carbon emissions. Real operational data validate the strategy's effectiveness in cutting emissions and improving economic benefits.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では、産業セクターの脱炭素化が急務であり、特に電力・炭素市場の連動が進む中で、本稿の提案は銅産業に限らずエネルギー多消費型産業に応用可能。日本のGX実践において、工場レベルでの最適化戦略として参考になる。
In the global GX context
Global carbon markets and electricity market coupling are growing, especially in regions like the EU with ETS and in emerging carbon pricing systems. This paper provides a concrete industrial case study showing how a metal processing plant can reduce compliance costs while cutting emissions, relevant for practitioners in energy-intensive industries.
👥 読者別の含意
🔬研究者:Highlights the multi-flow coupling approach for industrial carbon accounting and optimization.
🏢実務担当者:Offers a practical trading strategy to reduce carbon compliance costs and improve operational efficiency in electrolytic copper production.
🏛政策担当者:Illustrates how electricity-carbon market design can incentivize industrial decarbonization at the plant level.
📄 Abstract(原文)
Against the backdrop of intensifying global greenhouse effect, this paper investigates the electricity carbon market trading strategies for electrolytic copper industrial parks, to alleviate the pressures of carbon compliance requirements and energy consumption costs. First, considering the material flow of each production process in electrolytic copper industrial parks, especially the thermal inertia characteristic that short-term power regulation of electrolytic cells will not impair product quality, a material flow model for each production process is developed. Second, a coupling model for electrolytic copper industrial parks is constructed in accordance with the interactive coupling relationships among the material, energy and carbon emission flows. Then, a coordinated electricity carbon market trading strategy for electrolytic copper industrial parks is put forward, with the minimization of overall comprehensive operation costs as the core optimization objective. Finally, the feasibility and effectiveness of the proposed trading strategy are validated against actual operational data collected from an electrolytic copper industrial park. The results demonstrate that the multi-flow coupling-based electricity-carbon market trading strategy developed in this study can effectively drive electrolytic copper industrial parks to cut carbon emissions and enhance the economic benefits of production and operation activities.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.22541/authorea.15006246/v1first seen 2026-07-20 04:57:46
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