首页> 外文会议>ASME International Conference on Energy Sustainability >A NOVEL COAL GASIFICATION SYSTEM THROUGH THERMOCHEMICAL REGENERATIVE PROCESS OF SYNGAS SENSIBLE HEAT TO ENHANCE COLD GAS EFFICIENCY
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A NOVEL COAL GASIFICATION SYSTEM THROUGH THERMOCHEMICAL REGENERATIVE PROCESS OF SYNGAS SENSIBLE HEAT TO ENHANCE COLD GAS EFFICIENCY

机译:一种新型煤气化系统,通过合成气的热化学再生过程来增强冷气效

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In this paper, a novel coal gasification technology used for Integrated Gasification Combined Cycle (IGCC) power plants is proposed, in which a regenerative unit is applied to recover syngas sensible heat to generate steam and then the high temperature steam is used to gasify coke from pyrolyzer. Through such a thermochemical regenerative unit, the sensible heat with lower energy level is upgraded into syngas chemical energy with higher energy level, and therefore a higher cold gas efficiency (CGE) is expected. The Aspen Plus Software is selected to simulate the novel coal gasification system. Then the exergy and Energy-Utilization Diagram (EUD) analyses are applied to disclose the plant performance enhancement mechanism. It reveals that 83.2% of syngas sensible heat can be recovered into steam agent and so the CGE is upgraded to 90%. And with the enhancement of CGE, the efficiency of an IGCC plant based on the novel gasification system can be as high as 51.82%, showing a significant improvement compared to 45.2% in a Texaco coal gasification based plant. At the same time, the exergy destruction of gasification process is reduced from 132.5MW to 98.4MW through thermochemical reactions. Lift of accepted energy level (A_(ea)), and decrease of released energy level (A_(ed)) and heat absorption (ΔH) contribute to the exergy destruction reduction in the gasification process. Additionally, since oxygen agent is no longer used in the IGCC, 34.5MW exergy loss in the air separation unit is avoided. Thereby the novel coal gasification technology proposed in this paper has a good thermodynamic performance and may provide a quite promising way for high efficient and clean coal utilization.
机译:本文提出了一种用于集成气化组合循环(IGCC)发电厂的新型煤气化技术,其中应用再生单元以回收合成气溶性热量以产生蒸汽,然后使用高温蒸汽来气体焦热解器。通过这种热化学再生单元,具有较低能量水平的显热量以较高的能量水平升级为合成气化学能,因此预期更高的冷气效率(CGE)。选择ASPEN PLUS软件以模拟新型煤气化系统。然后应用了漏胀和能量利用图(EUD)分析来公开植物性能增强机制。它揭示了83.2%的合成气溶性热量可以回收到蒸汽剂中,因此CGE升级至90%。随着CGE的增强,基于新型气化系统的IGCC工厂的效率可以高达51.82%,显示出在德克萨科煤气化的植物中的45.2%相比具有显着改善。同时,通过热化学反应将气化过程的出境破坏从132.5mW降至98.4mW。升降可接受的能量水平(A_(ea))和释放的能级(A_(ed))和吸热(Δh)的降低有助于气化过程的低驱动破坏。另外,由于在IGCC中不再使用氧气,因此避免了34.5MW在空气分离单元中的漏洞。因此,本文提出的新型煤气化技术具有良好的热力学性能,可为高效和清洁煤利用提供相当有前途的方式。

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