标题: 以混合醇胺溶液(MEA+AMP)吸收二氧化碳温室效应气体之可行性研究
Feasibility Study of Carbon Dioxide Removal from Stack Gas by Mixed Alkanolamines (MEA+AMP) Scrubbing to Reduce Greenhouse Effect
作者: 潘守保
Pan, Shou-Pao
白曛绫
Bai, Hsun-Ling
环境工程系所
关键字: MEA;温室效应
公开日期: 1997
摘要: 本研究分别以半连续流及半连续流实验,来探讨混合醇胺溶液(MEA+AMP)吸收二化氧化碳温室气体之可行性研究。使用混合醇胺( MEA+AMP)的主要目的是要改良 MEA溶剂的缺点,藉由结合醇胺的吸收特性,以发展出兼及高吸收量、高吸收速率与回收时较低能源消耗的吸收液。
由半连续流实验结果显示,二氧化碳是最大去除率随 MEA在溶液中之比例增加而增加,显示MEA比 AMP有较快的反应速率。不同组成混合醇胺在 25℃到35℃之操作温度时,二氧化碳最大去除率相差不多。而混合醇胺中 AMP比重愈大,吸收容量也愈大,但需注意其操作温度不可太高,以免吸收容量下降。由于每单位 MEA所放出的热量大于 AMP,使得溶剂再生时,每单位MEA 所需的热量也大于AMP,故为节约能源起见,混合醇胺中之AMP比例愈大愈好,而在半连续流实验中所得之最佳混合醇胺组成比例,在 30%(w/w)之总浓度下为MEA=18% (W/W) , AMP=12%(W/W) 。
由连续流实验结果显示,当使用混合醇胺(MEA=18%, AMP=12%W/W)时,液/气比为 2.5ml/l,二氧化碳去除率为 83.11%,其吸收量为 0.502mol-CO2/mlo-醇胺;当使用30%w/w之 MEA 溶剂时,液/气比为2.5ml/l,二氧化碳去除率为 90.46%,其吸收量则为 0.450mol-CO2/mol-醇胺。混合醇胺溶液与单纯 MEA溶剂之总质传系数( KGa)随着液/气比例增加而增加, KGa值分别为 0.029~0.113 kmol/m3 kPa与 0.053~0.123 kmol/m3h kPa。混合醇胺溶液与单纯 MEA 溶剂之总质传单位数值(NoG)也随着液/气比增加而增加, NoG值分别为 1.51~5.89与 2.78~6.38。
In this study semi-continuous flow and continuous flow experiments using mixed MEA+AMP solutions were conducted to see their feasibility as scrubbing agents of CO2 greenhouse gas removal from stack gas. The mixed amines (MEA+AMP) solution improved the disadvatage of using pure MEA solution as the C02 scrubbing agent. The use of mixed amines combined the absorption characteristics of pure amines. As a result, it brought about a considerable improvement in teh absorption capacity and great savings in the neergy requirement.
A semi-continuous flow reactor was employed in this study to determine the best composition of mixed MEA/AMP amines soultion for both high operation efficiency and high absorption capacity. The results showed that the best composition for MEA and AMP are 18% and 12%, respectively, in a 30% by weight mixed amines soultion . A continuous flow reactor was then used to study the effect of liquid/gas (L/G) ratio on the absorption capacity of mixed MEA/AMP solution and the pure MEA solution (30% w/w). It is shown that at a L/G ratio of 2.5 ml/l, the CO2 removal efficiency of the mixed MEA/AMP solution is lower than that of the pure MEA solution, but the absorption capacity of mixed MEA/AMP solution is larger than that of the pure MEA solution. The overall mass transfer coefficient (KGa) of the mixed MEA/AMP solution increases with the L/G ratio. It ranges from 0.029 to 0.113 kmol/m3 kPa with L/G ratio ranging from 1.5 ml/l to 4.5 ml/l. The number of transfer unit (NoG) of the mixed MEA/AMP solution also increases with the L/G ratio and it ranges from 1.51 to 5.89.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT863515012
http://hdl.handle.net/11536/63605
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