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首页> 外文期刊>International Journal of Greenhouse Gas Control >An investigation of the role of N-methyl-diethanolamine in non-aqueous solution for CO2 capture process using C-13 NMR spectroscopy
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An investigation of the role of N-methyl-diethanolamine in non-aqueous solution for CO2 capture process using C-13 NMR spectroscopy

机译:使用C-13 NMR光谱研究N-甲基二乙醇胺在非水溶液中的作用研究

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CO2 absorption (at 313 K) and desorption (at 363 K) in 15 wt%N-methyl-diethanolamine (MDEA) + 25 wt% N-ethylmonoethanolamine (EMEA) + 60 wt% ethanol and 25 wt% EMEA + 75 wt% ethanol were investigated in order to determine the role of MDEA in non-aqueous solution for CO2 absorption and EMEA regeneration. The equilibrium solubility of CO2 in 15 wt% MDEA+EMEA+ ethanol with different EMEA concentrations (0-25 wt%) was studied in a vapor-liquid equilibrium (VLE) apparatus at 313 K to investigate the effect of the concentration of MDEA and EMEA on the CO2 capture ability in different pressure ranges. The experimental results indicated that the presence of MDEA in EMEA+ethanol can slightly improve the capacity of CO2 due to the deprotonation of EMEA(+)COO(-) by MDEA; however, it did not contribute to the improvement of the EMEA regeneration efficiency. The equilibrium solubility of CO2 increased with increasing EMEA concentration below 150 kPa, however, at higher pressure the solution with low EMEA concentration seems to be more beneficial for CO2 scrubbing. Results of C-13 NMR and H-1-C-13 HMBC spectroscopy confirmed that the carbon containing species after CO2 absorption in MDEA+ EMEA+ ethanol and EMEA+ ethanol solutions originated from the carboxylation reaction of EMEA and ethanol. (C) 2015 Elsevier Ltd. All rights reserved.
机译:CO 2吸收(在313 k)和解吸(在363 k)中(在15wt%N-甲基 - 二乙醇胺(MDEA)+ 25wt%N-乙醇乙醇胺(EMEA)+ 60wt%乙醇和25wt%emea + 75wt%研究了乙醇,以确定MDEA在非水溶液中的作用,用于CO 2吸收和EMEA再生。在313k的蒸气液平衡(VLE)装置中研究了CO 2在15wt%MDEA + EMEA +乙醇中的平衡溶解度,以313k在313k中研究了MDEA和EMEA浓度的影响关于不同压力范围的二氧化碳捕获能力。实验结果表明,由于MDEA的eMEA(+)COO( - )的去质子,EMEA +乙醇中MDEA的存在略微提高CO2的能力;但是,它没有有助于改善EMEA再生效率。 CO 2的平衡溶解度随着EMEA浓度的增加而增加,然而,在较高的压力下,低EEA浓度的溶液似乎对CO 2洗涤更有利。 C-13 NMR和H-1-C-13 HMBC光谱的结果证实,MDEA + EMEA +乙醇和EMEA +乙醇溶液在MDEA + EMEA +乙醇中吸收后的含碳物种源自EMEA和乙醇的羧化反应。 (c)2015 Elsevier Ltd.保留所有权利。

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