Method using high-viscosity absorbent to separate CO2 based on dissolution assisting effect
An absorbent, high-viscosity technology, applied in separation methods, dispersed particle separation, chemical instruments and methods, etc., can solve the problems of increasing absorbent viscosity and affecting the absorption effect, etc., to improve absorbent concentration and reduce desorption energy consumption. , the effect of reducing the amount of evaporation
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Embodiment 1
[0025] 24 g of an aqueous solution with a mass fraction of ethanolamine (MEA) of 50% was prepared, and 16 g of n-butanol was added thereto to obtain 40 g of a novel absorbent. The mass of n-butanol added is 66.7% of the original high-viscosity amine absorbent. Then, at a temperature of 20°C and under normal pressure, it is absorbed to saturation, and the absorbent forms a liquid-liquid two-phase, and the upper liquid phase is CO 2 Loaded lean liquid phase, volume 20.0 mL, CO 2 The load is 0.179mol / L, and the lower liquid phase is CO 2 Loaded rich liquid phase, volume 24.0 mL, CO 2 The load was 4.915 mol / L. will CO 2 The loaded rich phase is separated and desorbed to obtain CO. 2 ; Desorbed absorbent and CO 2 The lean phase of the load is mixed, and then the cycle reaction absorption is carried out.
Embodiment 2
[0027] 24 g of an aqueous solution with a mass fraction of triethanolamine (TEA) of 50% was prepared, and 16 g of n-butanol was added thereto to obtain 40 g of a novel absorbent. The mass of n-butanol added is 66.7% of the original high-viscosity amine absorbent. Then, at a temperature of 20°C and under normal pressure, it is absorbed to saturation, and the absorbent forms a liquid-liquid two-phase, and the upper liquid phase is CO 2 Loaded lean liquid phase, volume 24.5 mL, CO 2 The load is 0.200mol / L, and the lower liquid phase is CO 2 Loaded rich liquid phase, volume 17.5 mL, CO 2 The load was 1.635 mol / L. will CO 2 The loaded rich phase is separated and desorbed to obtain CO. 2 ; Desorbed absorbent and CO 2 The lean phase of the load is mixed, and then the cycle reaction absorption is carried out.
Embodiment 3
[0029] Prepare 30 g of an aqueous solution with a mass fraction of benzylamine of 66.7%, add 10 g of benzene to it, and obtain 40 g of a novel absorbent. The mass of benzene added is 33.3% of the original high-viscosity amine absorbent. Then, at a temperature of 20 °C and under normal pressure, it is absorbed to saturation, and the absorbent forms a liquid-solid two-phase, and the liquid phase is CO. 2 Loaded lean phase, solid phase is CO 2 Load rich phase. will CO 2 The loaded rich phase is separated and desorbed to obtain CO. 2 ; Desorbed absorbent and CO 2 The lean phase of the load is mixed, and then the cycle reaction absorption is carried out.
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