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MCC Huatian Signs EPC Contract for Air Separation Unit Supporting Renewable Green Hydrogen-to-Methanol Project
SOURCE: AUTHOR:Ren Yixuan DATE:03 September 2024
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On August 30th, MCC Huatian, in the form of a consortium, signed an EPC (Engineering, Procurement, and Construction) contract with domestic wind power leader Goldwind Green Energy Chemical (Xing'anmeng) Co., Ltd. for the air separation unit of a 500,000-ton green hydrogen-to-methanol project. This project represents the world's largest and China's first wind power-coupled green hydrogen-to-methanol initiative, with the air separation unit undertaken by MCC Huatian being a crucial component. As a hallmark project of cross-industry collaboration between MCC Huatian and the new energy chemical sector, this multi-industry synergy underscores the company's technical prowess and brand influence in industrial gas production, significantly contributing to its future expansion in this field and seizing the "window of opportunity" in the renewable energy market.

 

The project primarily involves the construction of a 24,000 Nm3/h air separation unit in the Economic and Technological Development Zone of Xing'Anmeng, Inner Mongolia Autonomous Region. Leveraging years of technological expertise in industrial gas production, MCC Huatian has partnered with China Chemical Engineering 13th Construction Co., Ltd. to form a consortium to undertake this project. The project adopts international advanced process schemes such as full low-pressure molecular sieve adsorption pre-purification, air compression turboexpander refrigeration, expansion air entering the upper column, and internal compression of product oxygen and nitrogen. It also deeply integrates BIM (Building Information Modeling) forward design, intelligent PID (Process & Instrumentation Diagram), equipment model interlocking, and other digital delivery technologies. By establishing the "Regulations on 3D Design Models" and "Equipment Coding and Naming Rules," the project ensures the uniqueness and consistency of coding parameters across all equipment in the 3D model, aligning them with PID data for efficient real-time data updating and sharing, thereby facilitating precise construction management and quality control in later stages.

 

Upon completion, this project will propel the owner towards high-quality development, effectively promoting carbon reduction at the source, during the process, and at the end of the entire industrial chain in the northwest plateau region, as well as fostering the development of new productive forces.

 

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