Thermodynamic Performance of a Novel Compressed Carbon Dioxide Energy Storage System Based on Guanidinium Sulfate (Gua2SO)4) Adsorption

吸附 二氧化碳 硫酸盐 材料科学 工艺工程 化学工程 化学 环境科学 工程类 物理化学 有机化学 冶金
作者
Jiaxin Liu,Zhan Liu
出处
期刊:Energy Science & Engineering [Wiley]
标识
DOI:10.1002/ese3.2054
摘要

ABSTRACT In recent years, energy storage technology has developed rapidly with the aim to promote the development of renewable energy sources and establish a green and sustainable energy structure. A novel compressed CO 2 energy storage system based on Gua 2 SO 4 adsorption is proposed in this study. Gua 2 SO 4 has low sorption enthalpy and mild physical conditions in the adsorbent and desorption process, which are very beneficial for reducing the design difficulty of low‐pressure gas storage devices and improving the system performance. The energy and exergy analysis models are conducted after establishing several assumptions. The round trip efficiency, energy density, CO 2 capture unit volume and liquid CO 2 tank volume are 68.8%, 12.6 kWh/m 3 , 44,208 m 3 and 19,235 m 3 under design conditions, respectively. In addition, according to the exergy analysis, the liquefaction unit and compression unit have the highest exergy destructions. The monotonic increase in high‐pressure cooler end temperature difference and ambient temperature will cause the system efficiency to show a trend of first increasing and then decreasing. The liquid CO 2 tank temperature and throttling pressure have a trade‐off relationship on system performance. It should be noted that when the throttling pressure is below a certain value and the liquid CO 2 tank temperature is above a certain value, the system efficiency will sharply decrease. Moreover, increasing compressor and turbine efficiency has a conducive effect on improving system efficiency while the growth of heat exchanger pinch temperature and pressure loss rate have a negative influence to that.
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