Research progress and applications of transcritical carbon dioxide heat pumps: A review

Author:

Mei Shengong,Liu Zhongyi,Liu Xia

Abstract

Heat pump technology is an energy-saving technology that can efficiently utilize low-grade energy. It has broad application prospects in building heating, industrial waste heat utilization, new energy and other fields. However, the refrigerants used in traditional heat pump systems have serious negative impacts on the environment, and there is an urgent need to find a safe, environmentally friendly, and efficient alternative refrigerant. As a natural refrigerant, CO2 has good physical and chemical properties and is very suitable as a working fluid in transcritical cycles, showing great advantages in the field of heat pump technology. At present, research on CO2 heat pumps has made certain progress, but there are few reviews of the research status and development trends of CO2 heat pumps in different applications. Therefore, this article systematically summarizes the latest research results of transcritical CO2 heat pumps in different application fields, pointing out the difficulties such as high pressure and low operating efficiency in system design and operation. It also summarizes the latest optimization research on system components, cycle structure, mixed refrigerants and control strategies. The results show that each optimization method can significantly improve system performance, among which mixed refrigerant is the simplest optimization method. Finally, the outlook for CO2 heat pump technology is put forward. With policy support and technological advancement, more comprehensive, energy-saving, and intelligent CO2 heat pump technology will continue to develop and innovate.

Publisher

Universe Scientific Publishing Pte. Ltd.

Reference104 articles.

1. Yi L, Xiang X, Zhao X, et al. Atmospheric observation and emission of HFC-134a in China and its four cities. Environmental Science & Technology 2023; 57(12): 4732–4740. doi: 10.1021/acs.est.2c07711

2. Wang J. Green heating makes people’s hearts warmer and the sky bluer (Chinese). Qinghai Daily, 27 November 2023, p. 8.

3. Yan H, Zhang C, Shao Z, et al. The underestimated role of the heat pump in achieving China’s goal of carbon neutrality by 2060. Engineering 2023; 23: 13–18. doi: 10.1016/j.eng.2022.08.015

4. William S, Bodinus PE. The rise and fall of carbon dioxide systems: The first century of air conditioning. ASHRAE Journal 1999; 41(4): 37.

5. Liu J, Shang X, Zhang X. A review of international applications of transcritical carbon dioxide hot and cold supply technology (Chinese). Jie Neng Yu Huan Bao 2023; 8: 24–27.

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1. Editorial for Clean Energy Science and Technology (Volume 1 Issue 2);Clean Energy Science and Technology;2024-01-26

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