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重大突破!世界首台!
证券时报· 2025-11-14 09:23
Core Viewpoint - The world's first 650℃ high-efficiency ultra-supercritical coal-fired boiler has entered the full construction phase at Huaneng Yuhuan Power Plant, marking a significant technological breakthrough in high-temperature materials and clean coal utilization in China [1]. Group 1: Technological Breakthrough - The boiler achieves the highest steam temperature of 650℃ globally, utilizing domestically developed high-temperature alloy materials, overcoming key technological challenges [1]. - This development represents a major advancement in the field of high-temperature materials and clean coal technology, contributing to China's efforts in achieving carbon neutrality [1]. Group 2: Environmental Impact - The boiler is expected to set new records for the highest operational parameters and the lowest coal consumption in coal-fired power generation, significantly enhancing the efficiency of coal utilization [1]. - As boilers account for over 40% of national carbon emissions, the development and application of high-temperature and high-pressure materials are crucial for reducing energy consumption and carbon emissions, supporting China's dual carbon goals [1].
重大突破!世界首台!
中国基金报· 2025-11-14 06:49
Core Points - The world's first 650℃ high-efficiency ultra-supercritical coal-fired boiler has recently completed its first concrete pouring at Huaneng Yuhuan Power Plant, marking the start of full construction [1] - This boiler is the first equipment approved for sandbox testing by the State Administration for Market Regulation under China's special equipment safety sandbox regulatory system [1] - The boiler will set new records for the highest operating parameters and lowest coal consumption in global coal-fired power units, significantly enhancing the clean and efficient utilization of coal power [1] Summary by Sections - **Technological Breakthrough** - The boiler achieves the world's highest steam temperature of 650℃ for coal-fired power units, utilizing domestically developed high-temperature alloy materials, overcoming the "bottleneck" issue in high-temperature alloys [1] - This represents a major breakthrough in the field of high-temperature new materials and clean, efficient coal power utilization technology in China [1] - **Environmental Impact** - Boilers are the largest energy-consuming and carbon-emitting equipment in China, accounting for over 40% of the national carbon emissions [1] - The development and application of high-temperature and high-pressure new materials are key pathways for reducing energy consumption and carbon emissions, contributing to China's "dual carbon" goals [1]