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首页> 外文期刊>Chemical Engineering Communications >Energy Efficiency Evaluation for a 'Green' Power Generation Process with Minimum Effort on Carbon Dioxide Capture and Storage
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Energy Efficiency Evaluation for a 'Green' Power Generation Process with Minimum Effort on Carbon Dioxide Capture and Storage

机译:尽最大努力减少二氧化碳捕获和存储的“绿色”发电过程的能效评估

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This study evaluates the use of cracking for the removal of carbon from fuels to be used in a power generation process. Unlike conventional power generation systems, the proposed system includes a cracking unit, the function of which is to convert primary fuels into H2 rich syngas and solid carbon, thus avoiding the emission of CO2 and the need for carbon capture and storage (CCS) in the power generation system. Based on the thermodynamic analysis of equilibrium reactions in the cracker, it is demonstrated that the operating temperature has a significant influence on the carbon capture rate achieved and the composition of the syngas. Carbon in the fuel can be captured in solid form from hydrocarbon fuels when operating the cracker at sufficiently high temperatures; however, only a portion of carbon can be captured in a solid form from oxygenated hydrocarbon fuels, with the maximum carbon capture rate being achieved at an optimum temperature. An energy analysis, which takes into account the energy penalty of CCS for the conventional power generation system, reveals that the net available energy from the proposed system is still not as high as that of the conventional system with CCS; however, the solid carbon can be of high commercial value when appropriate technology is employed to convert the carbon byproduct into a high-added-vdlue carbon product such as carbon black or carbon nanotubes (CNTs).
机译:这项研究评估了裂解用于从发电过程中使用的燃料中除去碳的用途。与传统的发电系统不同,拟议的系统包括裂解装置,裂解装置的功能是将一次燃料转化为富氢的合成气和固体碳,从而避免了二氧​​化碳的排放,并避免了碳捕集和封存(CCS)的需要。发电系统。基于裂解器中平衡反应的热力学分析,证明了操作温度对获得的碳捕获率和合成气的组成具有显着影响。当裂解炉在足够高的温度下运行时,燃料中的碳可以以固体形式从烃类燃料中捕集。但是,只有一部分碳可以从氧化烃燃料中以固体形式捕获,在最佳温度下可获得最大的碳捕获率。能量分析考虑了常规发电系统的CCS能耗,结果表明,所提出系统的净可用能量仍然不及采用CCS的常规系统高。然而,当采用适当的技术将碳副产物转化为高添加量的碳产物(如炭黑或碳纳米管(CNT))时,固体碳具有很高的商业价值。

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