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The removal of carbon dioxide with activated solutions of methyl-diethanol-amine

机译:用甲基二乙醇胺活化溶液脱除二氧化碳

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摘要

The (bulk) removal of carbon-dioxide (CO2) from industrial gases, e.g. natural gas, is usually realized with a reactive absorption technique in which (non-)aqueous solutions of alkanolamines are used. From the absorption rate point of view, primary or secondary amines are preferred. However, in case the costs of regeneration are also taken into account, tertiary amines are much more attractive. In order to combine the specific properties of tertiary and primary/secondary alkanolamines respectively, mixtures of both types of compounds are used. A well known example is the activated methyl-di-ethanol-amine (MDEA)-process in which MDEA is mixed with (small amounts) of piperazine. In this paper mixtures of MDEA with several activators, being primary and secondary amines, are studied with respect to the performance of CO2 removal from natural gas. The absorption process in a tray column has been simulated. For a number of default cases the impact of the activator on the total number of trays has been calculated. From these simulations the optimal number of trays in combination with the amount of activator-addition can be established. Furthermore, insight is obtained on the mechanism of the absorption steps in mixed amine solutions. It is demonstrated that the working action of the accelerator, the fast reacting amine, is substantially influenced by the partial pressures of carbon dioxide in the gas mixture. Moreover, this effect is strongly depending on the molar fraction of the accelerator.
机译:从工业气体(例如二氧化碳)中(批量)去除二氧化碳(CO2)天然气通常通过反应吸收技术实现,其中使用了链烷醇胺的(非)水溶液。从吸收率的观点来看,伯或仲胺是优选的。但是,如果还考虑再生成本,则叔胺更具吸引力。为了分别结合叔和伯/仲链烷醇胺的特定性质,使用两种类型的化合物的混合物。一个众所周知的例子是活化的甲基二乙醇胺(MDEA)法,其中MDEA与(少量)哌嗪混合。本文研究了MDEA与几种活化剂(伯胺和仲胺)的混合物的天然气脱除CO2的性能。托盘塔中的吸收过程已被模拟。对于许多默认情况,已计算出活化剂对塔板总数的影响。从这些模拟中,可以确定最佳数量的塔板以及活化剂的添加量。此外,获得了关于混合胺溶液中吸收步骤机理的见解。已经证明,促进剂即快速反应的胺的工作作用基本上受气体混合物中二氧化碳的分压的影响。此外,该效果强烈取决于促进剂的摩尔分数。

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