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Happy New Year 2024 **********************【A Decade of Great Development in Chemical Engineering Equipment】Continuous updates and summaries are available; feel free to join the discussions at https://bbs.hcbbs.com/thread-3576046-1-1.html (Source: Haichuan Chemical Engineering Forum) *****************Recently, the gas turbine flue gas waste heat utilization project at Huaneng Beijing Thermal Power Plant, which was designed by China Energy Engineering Group North China Institute, installed by Zhejiang Thermal Power Installation Company, and commissioned by the East China Electric Power Research Institute affiliated with the technology company, completed performance tests under various load conditions and was successfully handed over for operation. This marks the full-scale operation of the world’s largest project for efficient utilization of waste heat from gas turbine flue gas. The project is located in Wangsiying Township, Chaoyang District, Beijing, adjacent to the East Fifth Ring Road. It covers a total area of 19,280 square meters. The power plant consists of three phases, with a total installed capacity of 2.766 million kilowatts. It has been designated by the Beijing municipal government as the southeastern thermal and power generation center of the capital. This project is also the world’s first F-class gas turbine flue gas waste heat utilization project to adopt the \"flue gas-water plate heat exchanger + heat pump technology\"; all the recovered flue gas waste heat is fed into the urban heating network, serving as an important model for improving the efficiency of primary energy use and reducing energy consumption and carbon emissions. This project recovers heat from the waste heat in the flue gases generated by gas turbine combustion to heat the water used in the heating cycle, thereby contributing to urban heating. After the project is put into operation, the gas turbines at Beijing Thermal Power Plant will gain an additional zero-carbon heating capacity of 300,000 kilowatts, enabling an expansion of the heating area by 7.5 million square meters. This will result in a savings of 80 million standard cubic meters of natural gas per year, a reduction of 130,000 tons of carbon dioxide emissions per year, and the recovery of 500,000 tons of flue gas condensate per year. At present, the system is operating smoothly, with a maximum daily heat recovery of 25,000 GJ, playing a vital role in supplying green and clean energy for heating in the capital.