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Long-Term Operation of Carbon Dioxide Capture System from a Real Coal-Fired Flue Gas Using Dry Regenerable Potassium-Based Sorbents

机译:使用干再生钾型吸附剂的真正燃煤烟气的二氧化碳捕获系统的长期运行

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Korea Institute of Energy Research (KIER) and Korea Electric Power Research Institute (KEPRI) have been developing a CO_2 capture technology using dry sorbents. The CO_2 removal in dry sorbent CO_2 capture system consists of two reactors for carbonation and regeneration. We used dry sorbent manufactured by spray-drying method contains potassium carbonate, which was supplied by KEPRI in order to investigate the sorbent performance in continuous operation mode with solid circulation between a fast fluidized bed type carbonation reactor (13.5 m tall pipe of 0.075 m i.d.) and a bubbling fluidized bed type regeneration reactor (2 m tall bed of 0.25 m i.d.). We used the real flue gas from 2MW coal-fired circulating fluidized bed combustor to check possibility of deactivation of dry sorbent by contaminants such as SOx and NOx in the real flue gas for the 100 Nm~3/hr of flue gas treatment facility. The residence time of the dry sorbents was about 3 seconds and 15 minutes in the carbonation reactor and the regeneration reactor, respectively. The CO_2 removal during 2 hrs in the whole experiments and the average CO_2 removal was above 70%. From the experiment, it was revealed that the removal of heat of sorption in the carbonation reactor was important to increase CO_2 removal. During the experiments continuous and smooth operation were accomplished with solid circulation between two reactors. These results indicate that CO_2 capture process using potassium carbonate solid sorbent is applicable for CO_2 capture in the coal-fired flue gas.
机译:韩国能源研究所(KIER)和韩国电力研究所(KEPRI)一直在开发使用干吸附剂的CO_2捕获技术。干燥吸附剂CO_2捕获系统中的CO_2去除由两个用于碳酸化和再生的反应器组成。我们使用喷雾干燥方法制造的干燥吸附剂含有碳酸钾,其由Kepri提供,以便在快速流化床型碳酸化反应器之间具有固体循环的连续操作模式下的吸附剂性能(13.5米高的0.075米ID。 )和一种鼓泡流化床型再生反应器(2米高的0.25米ID)。我们使用来自2MW燃煤循环流化床燃烧器的真正烟道气,检查真正的烟气中的污染物和NOx的干吸附剂的可能性,用于烟气处理设施100nm〜3 / hr的真实烟气。在碳酸化反应器和再生反应器中,干草的停留时间约为3秒和15分钟。在整个实验中2小时内的CO_2去除和平均CO_2去除高于70%。从实验中,揭示了碳化反应器中吸附热的热量对于增加CO_2去除是重要的。在实验期间,通过两种反应器之间的固体循环完成连续和平滑的操作。这些结果表明,使用碳酸钾固体吸附剂的CO_2捕获过程适用于燃煤烟气中的CO_2捕获。

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