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首页> 外文期刊>Journal of Chemical Engineering & Process Technology >Simulation of the Effects of Turbine Exhaust Recirculation on the Composition of Flue Gas for A CO2 Capture Unit
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Simulation of the Effects of Turbine Exhaust Recirculation on the Composition of Flue Gas for A CO2 Capture Unit

机译:涡轮废气再循环对CO2捕集装置烟气成分影响的模拟

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The main objective of this paper is to study the effects of Flue Gas Recirculation (FGR) ratio and Excess Air (EA) in a natural gas-fired turbine for an effective CO2 absorption by amines. To achieve this goal, the flue gas should contain at least 10% (mol.) of CO2. Moreover, in order to avoid technical problems related to the oxidative degradation of amines, the flue gas should also contain less than 5% (mol.) of O2. The simulation results indicate that, for a gas turbine that limits the temperature of the exhaust gas leaving the combustor at 1100°C, an excess air (EA) of 200% and a Flue Gas Recirculation (FGR) ratio of 0.65 are needed to fit the requirements of an effective absorption process by amines. For a turbine that allows temperatures as high as 1500°C, the operating parameters (EA=100% and FGR ratio of 0.4) will be selected.
机译:本文的主要目的是研究烟气再循环(FGR)比率和过量燃气(EA)在天然气涡轮机中对胺有效吸收CO2的影响。为了实现此目标,烟道气应包含至少10%(摩尔)的CO2。此外,为了避免与胺的氧化降解有关的技术问题,烟道气还应包含小于5%(摩尔)的O 2。仿真结果表明,对于将离开燃烧器的废气温度限制在1100°C的燃气轮机,需要安装200%的过量空气(EA)和0.65的烟气再循环(FGR)比胺有效吸收过程的要求。对于允许温度高达1500°C的涡轮机,将选择运行参数(EA = 100%,FGR比为0.4)。

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