An Improved CO2 Separation and Purification System Based on Cryogenic Separation and Distillation Theory

Усовершенствованная система разделения и очистки CO2 на основе теории криогенного разделения и дистилляции
Gang Xu, Feifei Liang, Yongping Yang, Yue Hu, Kai Zhang, Wenyi Liu
2014-05-23

CO2 captureCO2 distillationcryogenic CO2 separationmulti-stage compressiontechno-economic analysis
In this study, an improved CO2 separation and purification system is proposed based on in-depth analyses of cryogenic separation and distillation theory as well as the phase transition characteristics of gas mixtures containing CO2. Multi-stage compression, refrigeration, and separation are adopted to separate the majority of the CO2 from the gas mixture with relatively low energy penalty and high purity. Subsequently, the separated crude liquid CO2 is distilled under high pressure and near ambient temperature conditions so that low energy penalty purification is achieved. Simulation results indicate that the specific energy consumption for CO2 capture is only 0.425 MJ/kgCO2 with 99.9% CO2 purity for the product. Techno-economic analysis shows that the total plant investment is relatively low. Given its technical maturity and great potential in large-scale production, compared to conventional MEA and SelexolTM absorption methods, the cost of CO2 capture of the proposed system is reduced by 57.2% and 45.9%, respectively. The result of this study can serve as a novel approach to recovering CO2 from high CO2 concentration gas mixtures.
1
Cryogenic separation removes most CO2 with relatively low energy consumption and high purity, followed by near-ambient-temperature purification of crude liquid CO2.
2
Simulations achieve 99.9% CO2 product purity with a specific capture energy consumption of 0.425 MJ/kgCO2.
3
Techno-economic analysis indicates relatively low total plant investment and capture-cost reductions of 57.2% versus MEA and 45.9% versus SelexolTM absorption.
4
The proposed system combines multi-stage compression, refrigeration, separation, and high-pressure distillation to capture and purify CO2 efficiently.
5
The system is presented as a technically mature, scalable approach for recovering CO2 from high-CO2-concentration gas mixtures.

CO2 separation and purification system for recovering CO2 from high-CO2-concentration gas mixtures

energy-efficient, high-purity CO2 capture and purification performance, including specific energy consumption, product purity, and techno-economic cost

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2014-05-23
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Authors
Gang Xu
Feifei Liang
Yongping Yang
Yue Hu
Kai Zhang
Wenyi Liu
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