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Simulation and Exergy Analysis of a 600 MWe Oxy-combustion Pulverized Coal-fired Power Plant

机译:600 MWE氧气煤粉燃煤电厂的仿真和漏洞分析

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CO2 emission from pulverized coal-fired power plants (PC) can be efficiently controlled by adopting the oxy-combustion technology,which adds a cryogenic air separation process (ASU) and a flue gas treatment process (FGU) to the conventional combustion process. To understand the thermodynamic properties of the oxy-combustion process,a simulation study and an exergy analysis of a 600 MWe oxy-combustion PC were conducted. The commercial flowsheet software Aspen Plus was used to simulate the process and the simulation results are the basis to perform the exergy analysis. The simulation results show that the CO2 concentration in the flue gas from the oxycombustion boiler can be more than 80mol% and the CO2 purity from the FGU can reach 99 mol%;the net efficiency of the oxy-combustion system is 10.84% (lower heating value) lower because of the power consumptions of the ASU and FGU processes;the unit power consumption for the oxygen production in the ASU is 0.247 kWh/kg-O2. The exergy analysis focused on the boiler models (oxy-combustion and conventional) and each of them was divided to be several parts,such as furnace,heat exchanger. The exergy analysis results show that the exergy efficiency of the oxy-combustion boiler is 0.8% higher than that of the conventional combustion boiler, the primary reason for this is the exergy efficiency of the combustion process in the oxy-combustion boiler is about 4% higher.In addition,water wall and air heater in any boiler model have very low exergy efficiencies.
机译:从粉煤发电厂(PC)CO2排放可通过采用燃氧的技术,它增加了一个低温空气分离过程(ASU)和一个烟道气处理工艺(FGU)与传统的燃烧过程被有效地控制。为了了解氧燃烧过程的热力学性质,模拟研究和600兆瓦氧燃烧PC的火用分析进行的。商业流程软件Aspen Plus软件被用来模拟过程和模拟结果进行火用分析的基础。仿真结果表明,在烟道气中的CO 2浓度从富氧燃烧锅炉可以多于80mol%,并从FGU的CO 2纯度可达99摩尔%;所述富氧燃烧系统的净效率是10.84%(下部加热值)降低,原因在于ASU和FGU过程的功耗;对于氧气生产在ASU的单位电耗是0.247千瓦时/公斤 - O2。火用分析集中于锅炉模型(氧燃烧和常规的)和它们中的每被划分为几个部分,如炉,换热器。火用分析结果表明,该氧燃烧锅炉的有效能效率比传统的燃烧锅炉的更高0.8%,这样做的主要原因是在燃烧过程中的氧燃烧锅炉的有效能效率约为4% higher.In此外,水墙,空气能热水器在任何锅炉模型具有非常低的火用效率。

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