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首页> 外文期刊>Journal of Hazardous Materials >Liquid-liquid phase-change absorption of SO_2 using N, N- dimethylcyclohexylamine as absorbent and liquid paraffin as solvent
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Liquid-liquid phase-change absorption of SO_2 using N, N- dimethylcyclohexylamine as absorbent and liquid paraffin as solvent

机译:以N,N-二甲基环己胺为吸收剂,液体石蜡为溶剂的SO_2的液-液相变吸收

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摘要

In the present work, liquid-liquid phase-change absorption of SO2 was investigated using N, N-dimethylcyclohexylamine (DMCHA) as an absorbent, and high boiling liquid paraffin (LP) as a solvent to reduce volatilization of the absorbent. The homogenous solution was split into two immiscible phases upon SO2 loading. The phase-change mechanism was attributed to the polarity variation of DMCHA before and after absorption by forming the charge-transfer complex DMCHA center dot SO2. The viscosity of the lower phase reached a maximum value of 24.5 mPa s at the absorption capacity of 1 mol SO2/mol DMCHA, and the viscosity of the corresponding upper phase was 46.4 mPa s. Both are lower than the reported viscosity of most ionic liquids. This solution exhibited extremely high mass selectivity of SO2/CO2 with a value of 626. The mass absorption capacity was founded to be 1.19 g SO2/g DMCHA at 1 atm, which is comparable with the highest reported mass absorption capacity. At low partial pressure, the absorption capacity still reached 0.78 g/g at 0.1 atm, 0.43 g/g at 0.02 atm and 0.27 g/g at 0.001 atm. Furthermore, DMCHA could be completely regenerated in 10 min via microwave heating. All the results indicated this phase-change solution is a promising candidate for SO2 capture.
机译:在本工作中,研究了使用N,N-二甲基环己胺(DMCHA)作为吸收剂和高沸点液体石蜡(LP)作为溶剂来减少吸收剂挥发的SO2的液-液相变吸收。加载SO2后,均匀溶液分成两个不混溶的相。通过形成电荷转移络合物DMCHA中心点SO2,相变机制归因于吸收前后DMCHA的极性变化。在1 mol SO2 / mol DMCHA的吸收容量下,下相的粘度达到最大值24.5 mPa s,相应的上相的粘度为46.4 mPa s。两者均低于大多数离子液体的报告粘度。该溶液对SO2 / CO2的质量选择性极高,值为626。在1个大气压下的质量吸收容量为1.19 g SO2 / g DMCHA,与报道的最高质量吸收容量相当。在低分压下,吸收容量在0.1 atm时仍达到0.78 g / g,在0.02 atm时为0.43 g / g,在0.001 atm时为0.27 g / g。此外,通过微波加热,DMCHA可以在10分钟内完全再生。所有结果表明,该相变解决方案是用于SO2捕集的有希望的候选者。

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