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China Airlines Shengshi was invited to participate in the 2025 China High Temperature and Industrial Heat Pump Innovation and Development Forum

2025-05-20

In order to promote the high-quality development of China's high-temperature and industrial heat pumps under the background of dual carbon, fill the vacancy of the Forum on the Integration and Innovation and Development of Industry and Academic Research Institutions in the field of high-temperature and industrial heat pumps, and promote technical exchanges, resource sharing, and industry-university-research cooperation in the upstream and downstream of the industry, the 2025 China High Temperature and Industrial Heat Pump Innovation and Development Forum was held in Taiyuan, Shanxi Province from May 16 to 17, 2025. The forum was guided by the China Energy Conservation Association, hosted by the Heat Pump Professional Committee of the China Energy Conservation Association and the Shanxi Clean Energy Research Institute of Tsinghua University.

The forum conducted in-depth exchanges on incentive policies, technology development paths, typical application fields, key component iterations, downstream innovative applications and future trends in the field of high temperature and industrial heat pumps, and jointly explored new opportunities for the development of high temperature and industrial heat pumps. Beijing China Airlines Shengshi Energy Technology Co., Ltd. was invited to attend the meeting.

Combining its own aviation turbine technology advantages and working fluid sealing technology, China Airlines Shengshi has successfully applied its years of project experience in the ORC field to the field of high temperature and industrial heat pumps, reducing the range of low-temperature waste heat energy recovery from 90°C to below 60°C, while having the characteristics of low failure rate, high COP and short recovery period. The unit can also be connected in series with China Airlines Shengshi centrifugal steam upgrading unit, which can meet the needs of low-temperature water steam production and provide a new solution for low-grade waste heat recovery.