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首页> 外文期刊>Turkish journal of chemistry >Experimental and theoretical investigation of the reaction between CO$_{2}$ and carbon dioxide binding organic liquids
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Experimental and theoretical investigation of the reaction between CO$_{2}$ and carbon dioxide binding organic liquids

机译:CO $ _ {2} $与二氧化碳结合的有机液体之间反应的实验和理论研究

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The reaction kinetics of CO$_{2}$ absorption into new carbon dioxide binding organic liquids (CO$_{2}$BOLs) was comprehensively studied to evaluate their potential for CO$_{2}$ removal. A stopped-flow apparatus with conductivity detection was used to determine the CO$_{2}$ absorption kinetics of novel CO$_{2}$BOLs composed of DBN (1,5-diazabicyclo[4.3.0]non-5-ene)/1-propanol and TBD (1,5,7-triazabicyclo[4.4.0]dec-5-ene)/1-butanol. A modified termolecular reaction mechanism for the reaction of CO$_{2}$ with CO$_{2}$BOLs was used to calculate the observed pseudo-first-order rate constant k$_{0}$ (s$^{-1})$ and second-order reaction rate constant k$_{2}$ (m$^{3}$/kmol.s). Experiments were performed by varying organic base (DBN or TBD) weight percentage in alcohol medium for a temperature range of 288-308 K. It was found that k$_{0}$ increased with increasing amine concentration and temperature. By comparing using two different CO$_{2}$BOL systems, it was observed that the TBD/1-butanol system has faster reaction kinetics than the DBN/1-propanol system. Finally, experimental and theoretical activation energies of these CO$_{2}$BOL systems were obtained and compared. Quantum chemical calculations using spin restricted B3LYP and MP2 methods were utilized to reveal the structural and energetic details of the single-step termolecular reaction mechanism.
机译:全面研究了将CO $ _ {2} $吸收到新的与二氧化碳结合的有机液体(CO $ _ {2} $ BOLs)中的反应动力学,以评估其去除CO $ _ {2} $的潜力。使用具有电导率检测功能的停流装置确定由DBN(1,5-二氮杂双环[4.3.0] non-5-组成的新型CO $ _ {2} $ BOL的CO $ _ {2} $吸收动力学烯)/ 1-丙醇和TBD(1,5,7-三氮杂双环[4.4.0]癸-5-烯)/ 1-丁醇。一种用于CO $ _ {2} $与CO $ _ {2} $ BOLs反应的改进的分子反应机理用于计算观察到的拟一阶速率常数k $ _ {0} $(s $ ^ { -1})$和二阶反应速率常数k $ _ {2} $(m $ ^ {3} $ / kmol.s)。通过改变酒精介质中有机碱(DBN或TBD)的重量百分比,在288-308 K的温度范围内进行实验。发现k $ _ {0} $随着胺浓度和温度的增加而增加。通过比较使用两种不同的CO $ _ {2} $ BOL系统,观察到TBD / 1-丁醇系统的反应动力学比DBN / 1-丙醇系统快。最后,获得并比较了这些CO $ _ {2} $ BOL系统的实验和理论活化能。利用自旋受限的B3LYP和MP2方法进行的量子化学计算被用来揭示单步分子反应机理的结构和能量细节。

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