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A novel combined system for LNG cold energy utilization to capture carbon dioxide in the flue gas from the magnesite processing industry

机译:用于液化天然气冷能利用的新型组合系统,用于从菱镁矿加工业中捕获烟气中的二氧化碳

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摘要

A novel system which include a new concept called cascade nested organic Rankine cycle (ORC) was proposed based on LNG (liquified natural gas) cryogenic exergy utilization. The flue gas from the magnesite processing industry and LNG was used as heat source and heat sink for ORC respectively. Meanwhile CO2 in the flue gas was captured by LNG. The mixed working fluid, regenerator and LNG regasification pressure play a key role in the system. Furthermore, the generating power capacity, the exergy efficiency, the CO2 capture quantity and the cold energy utilization efficiency were calculated as criteria to evaluate the system performance. The results indicate that the selection of suitable mixed working fluid and the installation of regenerator can improve the system performance effectively. Under the given condition, the exergy efficiency of the integrated system, the efficiency of LNG cold energy utilization, the output power of the integrated system and the amount of CO2 capture reaches to 56.9%, 20.81%, 22.59 kWh/t(LNG) and 0.29t(CO2)/t(LNG) respectively. Moreover, as the LNG gasification pressure increases, the exergy efficiency and cold energy utilization efficiency increases, while the CO2 capture quantity and power generation decreases. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种基于LNG(低温)自然能利用的新型系统,包括级联嵌套有机朗肯循环(ORC)。菱镁矿加工业的烟气和LNG分别用作ORC的热源和散热器。同时,烟气中的二氧化碳被液化天然气捕获。混合的工作流体,蓄热室和LNG的气化压力在系统中起关键作用。此外,以发电能力,火用效率,CO2捕集量和冷能利用效率为标准,以评估系统性能。结果表明,选择合适的混合工质和安装蓄热室可以有效地改善系统性能。在给定条件下,集成系统的火用效率,LNG冷能利用效率,集成系统的输出功率和CO2捕集量分别达到56.9%,20.81%,22.59 kWh / t(LNG)和分别为0.29t(CO2)/ t(LNG)。而且,随着LNG气化压力的增加,火用效率和冷能利用效率增加,而CO 2捕集量和发电量减少。 (C)2019 Elsevier Ltd.保留所有权利。

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