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Thermodynamic analysis of chemical looping gasification coupled with lignite pyrolysis

机译:化学循环气化结合褐煤热解的热力学分析

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摘要

A poly-generation system integrating coal pyrolysis and chemical looping gasification (CLG) is proposed to realize the multi-generation of value-added chemicals, synthetic gas fuels and heat/electricity. In this system, the models including coal pyrolysis, coal drying, air reactor (AR) and fuel reactor (FR) are employed to simulate the coupled system using Aspen Plus software. Especially, the FR model is used to produce syngas, which is the main target product, on the basis of Gibbs free energy minimization approach. According to the thermodynamic data obtained from the simulation, chemical exergy and physical exergy are determined for process streams and thermal efficiency is discussed as well. The overall energy efficiency of the new system can achieve values of 43.12%, with the drying unit causing the highest energy destruction. The results indicate that the coupled system shows a better performance compared with its original individual processes in consideration of the thermodynamic efficiency and effects on the environment, though the additional mechanical energy consumption occurs in the new system. Moreover, being used as the gasification agent in the FR, phenol wastewater has been greatly reduced, which reduces levels of environmental pollution. Hence, this new system will be of great potential in industrial application due to its high energy utilization efficiency and low pollution. (C) 2018 Published by Elsevier Ltd.
机译:提出了一种结合煤热解和化学回路气化技术的多联产系统,以实现增值化学品,合成气燃料和热电的多联产。在该系统中,使用包括煤热解,煤干燥,空气反应堆(AR)和燃料反应堆(FR)在内的模型,使用Aspen Plus软件来模拟耦合系统。特别地,基于吉布斯自由能最小化方法,FR模型用于生产合成气,这是主要的目标产品。根据从仿真中获得的热力学数据,确定了工艺流的化学能级和物理能级,并讨论了热效率。新系统的整体能源效率可以达到43.12%,其中干燥单元造成的能源破坏最大。结果表明,考虑到热力学效率和对环境的影响,尽管新系统中发生了额外的机械能耗,但与原始的单个过程相比,该耦合系统表现出更好的性能。此外,苯酚废水被用作阻燃剂中的气化剂,已大大减少,从而降低了环境污染水平。因此,这种新系统由于其高能源利用效率和低污染而将在工业应用中具有巨大的潜力。 (C)2018由Elsevier Ltd.发布

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