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首页> 外文期刊>The Journal of Chemical Thermodynamics >Studies on surface tension of 1,8-diazabicyclo [5.4.0] undec-7-ene (DBU)-glycerol and CO2-DBU-glycerol solutions at temperatures from 288.1 K to 323.1 K
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Studies on surface tension of 1,8-diazabicyclo [5.4.0] undec-7-ene (DBU)-glycerol and CO2-DBU-glycerol solutions at temperatures from 288.1 K to 323.1 K

机译:在288.1k至323.1k的温度下,在4,8-diazabiyclo [5.4.0] UDEC-7-eNE(DBU) - 甘油和CO2-DBU-甘油溶液的表面张力研究

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摘要

1,8-diazabicyclo [5.4.0] undec-7-ene (DBU)-glycerol system is a potential chemical absorbent of CO2. The surface tension of DBU-glycerol and CO2-DBU-glycerol systems at temperatures from 288.1 K to 323.1 K were studied using the Wilhelmy-plate method. In both systems, the surface tension decreases with increasing temperature, and the surface tensions of the DBU-glycerol and CO2-DBU-glycerol systems decrease by approximately 13-19% and 17-35%, respectively, over the measured temperature range. In the DBU-glycerol binary system, the surface tension decreases gradually with increasing DBU mole fraction. The excess surface tension was calculated and the concentration of DBU at the surface was found to be higher than that of the bulk. Four models (Redlich-Kister, FLW, WCH, and Jouyban-Acree method) were compared to model the surface tension of the DBU-glycerol system. The Kalies and proportionality methods were compared for modeling the surface tension of the CO2-DBU-glycerol solution. It was found that when the mass content of CO2 (omega(CO2)) based on the total mass of DBU and glycerol is less than 8%, the surface tension of CO2-DBU-glycerol is higher (maximum 31.3%) than that of DBU-glycerol. The Jouyban-Acree method and proportionality method are the best for calculating the surface tension of DBU-glycerol and DBU-glycerol-CO2 mixtures, respectively. The average relative deviations in the Jouyban-Acree and the proposed proportionality methods are 0.98% and 2.06%, respectively. Surface tension data can provide basic and useful information in the design of absorption equipment and subsequent operation for CO2 capture with DBU-glycerol solvent. (C) 2018 Elsevier Ltd.
机译:1,8-二氮杂双环[5.4.0] UDEC-7-ENE(DBU) - 甘油系统是CO2的潜在化学吸收剂。使用WILHELMY-PLATE方法研究了在288.1k至323.1k的温度下的DBU-甘油和CO2-DBU-甘油系统的表面张力。在两个系统中,表面张力随温度的增加而降低,并且在测量的温度范围内,DBU-甘油和CO2-DBU-甘油系统的表面张力分别降低约13-19%和17-35%。在DBU-甘油二进制系统中,随着DBU摩尔分数的增加,表面张力逐渐降低。计算过量的表面张力,发现表面的DBU的浓度高于块状的DBU。比较四种型号(redlich-kister,flw,wch和jouyban-acrae方法)以模拟DBU-甘油系统的表面张力。比较Kalies和比例方法,用于建模CO2-DBU-甘油溶液的表面张力。发现基于DBU和甘油总质量的CO 2(OMEGA(CO2))的质量含量小于8%时,CO 2 -DBU-甘油的表面张力越高(最大31.3%) DBU-甘油。 jouyban-acrae方法和比例方法是计算DBU-甘油和DBU-甘油-CO2混合物的表面张力的最佳方法。 Jouyban-Acree的平均相对偏差和拟议的比例方法分别为0.98%和2.06%。表面张力数据可以在吸收设备的设计中提供基本和有用的信息和随后用DBU-甘油溶剂进行CO2捕获的后续操作。 (c)2018年elestvier有限公司

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