新能源与化工生产柔性协同
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年产20万吨,国内首个绿醇生产/加注/远洋航运全链示范项目启动
势银能链· 2025-10-31 04:21
Core Viewpoint - The article discusses the launch of China's first comprehensive green methanol demonstration project, which integrates green methanol production, fuel refueling, and ocean shipping, marking a significant step towards sustainable energy solutions in the shipping industry [3][5]. Group 1: Project Overview - The project, led by State Power Investment Corporation Jilin Electric Power Co., in collaboration with COSCO Shipping and Shanghai Port Group, aims to create a full-chain green methanol production model [3]. - The project is expected to produce 197,200 tons of green methanol annually and reduce carbon dioxide emissions by approximately 300,000 tons per year [3]. Group 2: Technological Innovations - The project employs an innovative coupling technology of "wind power to green hydrogen + biomass gasification to syngas," which enhances system stability and economic efficiency by addressing the volatility of renewable energy [5]. - It integrates agricultural waste utilization with green energy production, utilizing straw as a raw material to create a complete chain from biomass resources to green fuel [5]. Group 3: System Operation and Coordination - The project features an integrated flexible regulation system that ensures seamless connection between renewable energy and chemical production, allowing for continuous hydrogen supply even during periods of low wind [6]. - By combining hydrogen technology with traditional chemical processes, the project stabilizes the synthesis process and ensures safe and stable operation of the entire system [6]. Group 4: Strategic Importance - The project represents a significant beginning for Jilin Electric Power in the green liquid fuel sector, leveraging the region's abundant wind and biomass resources to produce green methanol for decarbonizing shipping [6]. - It explores a new path for the synergy between new energy and traditional industries, as well as the role of agricultural resources in energy transition [6].