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首页> 外文期刊>Journal of Energy Resources Technology >Analysis of the Flue Gas Preparation Process for the Purposes of Carbon Dioxide Separation Using the Adsorption Methods
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Analysis of the Flue Gas Preparation Process for the Purposes of Carbon Dioxide Separation Using the Adsorption Methods

机译:吸附法分离二氧化碳的烟气制备工艺分析

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摘要

The necessity of limitation of carbon dioxide emissions, which also concerns the energy sector, causes that more and more effective and efficient methods of CO 2 capture from the flue gas are being tested. Among these technologies are adsorption ones, which have been used for a gas separation for many years. The characteristic features of adsorption separation are: long life of the sorbents used, low energy expenditure, and minim effect on the environment; however, their application requires adequate initial preparation of the flue gas fed into the system of CO 2 separation so that the flue gas temperature is as low as possible, and there is no water content in it. The study presents the concept and numerical calculations of the system for preparation of the flue gas feeding the CO 2 adsorption (vacuum pressure swing adsorption (VPSA)) separation unit, using the absorption chiller (AC). In the presented concept, the AC is driven by the flue gas which is used as both: upper and lower heat source for AC; however, due to the amount of energy being carried out with the flue gas, which is larger than required by the AC, the additional heat exchangers must be implemented. The calculations presented in the study show that owing to the application of AC, flue gas may be cooled down to temperatures even about 5 °C. Moreover, the simultaneous process of flue gas cooling and drying in such system is realized at low energy expenditure which leads to improvement of the overall energy efficiency of the system of CO 2 separation from flue gas and also to reduction of its dimensions.
机译:限制二氧化碳排放的必要性也涉及能源部门,这导致人们正在测试越来越多的从烟道气捕获CO 2 的有效方法。这些技术中有吸附技术,已用于气体分离多年。吸附分离的特征是:所用吸附剂的寿命长,能耗低,对环境的影响最小;但是,它们的应用需要对进入CO 2 分离系统的烟道气进行充分的初始准备,以使烟道气温度尽可能低,并且其中不含水。这项研究提出了使用吸收式冷却器(AC)制备供入CO 2 吸附(真空变压吸附(VPSA))分离单元的烟气的系统的概念和数值计算。在提出的概念中,AC由烟气驱动,该烟气用作:AC的上下热源;但是,由于与烟道气相比要消耗更多的能量,因此必须使用附加的热交换器。研究中提出的计算结果表明,由于使用了交流电,烟气可能被冷却到甚至约5 C的温度。而且,在这种系统中烟气冷却和干燥的同时过程是在低能耗下实现的,这导致了从烟气中分离CO 2 的系统的整体能效的提高,并且还减少了其尺寸。

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