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Effect of Carbon Dioxide Loading on Removal of Heat Stable Salts from Amine Solvent by Electrodialysis

机译:二氧化碳负载量对电渗析去除胺溶剂中热稳定盐的影响

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摘要

Heat stable salts (HSS) formed and continuously accumulated in the amine-based solvents due to solvent degradation and impurities in the feed gas can dramatically change the efficiency of the amine scrubbing process. HSS can be removed by using different methods including membrane separation such as electrodialysis (ED). In this work, we studied the effect of CO loading of the lean 30 wt % monoethanolamine (MEA) solution on the efficiency of HSS removal and MEA loss. In the model MEA solution containing HSS on the level of 48 meq/L, the carbon dioxide concentration was varied from 0.2 down to 0 mole (CO )/mole (MEA). The reclaiming of model MEA solution was carried out by lab-scale two-stage ED unit when the concentrate stream after the first stage was additionally treated using ED (second stage) that allowed reducing MEA loss. It was shown that the decrease of carbon dioxide content from 0.2 down to 0 mole (CO )/mole (MEA) resulted in a substantial reduction of both parameters—the MEA loss and the specific power consumption with respect to extracted HSS (from 140 down 37 kJ per 1 g of recovered HSS anions). This can be explained by the drop in the total concentration of ions formed by the interaction of MEA solution with carbon dioxide. However, the change of CO loading is associated with additional power consumption towards further solvent regeneration in the column. Based on the preliminary estimations of power consumption required for additional CO stripping with the respect to the power consumption of ED stage, it seems that lean solvent CO loading of 0.1 mole/mole provides an optimum for the power input at 25.9 MJ/kg(solvent).
机译:由于溶剂降解和进料气中的杂质,形成并连续累积在胺基溶剂中的热稳定盐(HSS)会极大地改变胺洗涤过程的效率。可以通过使用包括膜分离(例如电渗析(ED))在内的不同方法除去HSS。在这项工作中,我们研究了稀有30 wt%的单乙醇胺(MEA)溶液的CO负载量对HSS去除效率和MEA损失的影响。在含有48毫克当量/升的HSS的MEA模型溶液中,二氧化碳浓度从0.2降至0摩尔(CO)/摩尔(MEA)。当第一阶段后的浓缩物流额外使用可减少MEA损失的ED(第二阶段)进行处理时,通过实验室规模的两阶段ED单元进行MEA模型溶液的回收。结果表明,二氧化碳含量从0.2降低到0摩尔(CO)/摩尔(MEA),导致MEA参数损失和相对于提取的HSS的单位功耗(从140每1克回收的HSS阴离子为37 kJ)。这可以通过MEA溶液与二氧化碳相互作用形成的离子总浓度下降来解释。但是,CO载量的变化与塔中进一步溶剂再生的额外功耗有关。根据ED阶段能耗的额外CO汽提所需的能耗初步估算,似乎稀有溶剂的CO负载量为0.1摩尔/摩尔为25.9 MJ / kg(溶剂)的功率输入提供了最佳选择。 )。

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