SPIC Jilin's Green Methanol Project: Transitioning to Green Hydrogen and Biomass in Jilin Province
Key Ideas
  • Jilin Electric Power Co., Ltd. initiates a transformative project in Siping City, Jilin Province, transitioning from Wind and Solar Power to Green Hydrogen and Biomass Coupled Green Methanol production.
  • The project involves significant hydrogen production capacity of 9,750 mt/year and methanol synthesis scale of 197,200 mt/year, utilizing a combination of alkaline and PEM electrolyzers.
  • Construction is set to begin in August 2025 with a 24-month timeline, ensuring a substantial output in green methanol while contributing to sustainable industrial practices.
  • The supervision scope involves overseeing various construction stages, from preparation to handover, emphasizing quality control and adherence to green energy principles in the project execution.
Jilin Electric Power Co., Ltd. has announced the commencement of a groundbreaking project in Siping City, Jilin Province, focusing on the transition from Wind and Solar Power to Green Hydrogen and Biomass Coupled Green Methanol production. The project, located within the Chemical Industry Park of the Siping New-type Industrialization Economic Development Zone, aims to enhance sustainable practices in the region. With a hydrogen production capacity of 9,750 mt/year and methanol synthesis scale of 197,200 mt/year, the project is set to utilize 24 sets of alkaline electrolyzers and PEM electrolyzers for efficient production. Scheduled to start in August 2025, the construction phase is slated for completion within 24 months, aligning with the green energy objectives of the initiative. The supervision scope of the project encompasses diverse construction aspects, ensuring quality control and adherence to green energy standards throughout the process. From construction preparation to project handover, the project emphasizes excellence in sustainable industrial practices. This innovative project signifies a significant step towards sustainable energy production in the region, highlighting the shift towards green hydrogen and biomass-coupled methanol synthesis. By integrating renewable energy sources and advanced electrolyzer technologies, the project showcases a commitment to environmental stewardship and sustainable industrial development in the area.
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