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首页> 外文期刊>International Journal of Greenhouse Gas Control >Selective exhaust gas recirculation in combined cycle gas turbine power plants with post-combustion CO2 capture
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Selective exhaust gas recirculation in combined cycle gas turbine power plants with post-combustion CO2 capture

机译:结合循环燃气涡轮发电厂的选择性废气再循环与燃烧后CO2捕获

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摘要

In the context of the process intensification of Post-combustion Carbon Capture (PCC), Selective Exhaust Gas Recirculation (SEGR) in Natural Gas-fired Combined Cycle (NGCC) plants, a concept where CO2 is selectively recycled to increase concentration and reduce flow rates of the flue gas, is analysed. SEGR operated either in parallel or in series with a downstream PCC system increases CO2 concentration beyond 14 vol% and maintains oxygen levels in the combustor to approximately 19 vol%, well above the 16 vol% limit reported for non-selective Exhaust Gas Recirculation (EGR). Process modelling shows that the current class of gas turbine engines can operate without a significant deviation in the compressor and in the turbine performance. Compressor inlet temperature and CO2 concentration in the working fluid are the two critical parameters affecting the gas turbine net power output and efficiency. A higher turbine exhaust temperature allows the generation of additional steam in the HRSG. This results in an increase in net power output of approximately 42 MW (5.2%) and 18 MW (2.3%), and in net thermal efficiency of 0.55% point and 0.83% point, for the investigated configurations with SEGR in parallel and SEGR in series, respectively. With 30 wt% aqueous monoethanolamine scrubbing technology, SEGR leads to operation and cost benefits. SEGR in parallel with 70% recirculation, 97% selective CO2 transfer efficiency and 96% PCC efficiency results in a reduction of 46% in packing volume and 5% in specific reboiler duty, compared to air-based combustion CCGT with PCC, and of 10% in packing volume and 2% in specific reboiler duty, compared to 35% EGR. SEGR in series operating at 95% selective CO2 transfer efficiency and 32% PCC efficiency results in a reduction of 64% in packing volume and 7% in specific reboiler duty, compared to air-based CCGT with PCC, and of 40% in packing volume and 4% in specific reboiler duty, compared to 35% EGR. On selecting a technology for SEGR applications, CO2 selectivity, pressure drop and heat transfer flow rate are the operating parameters with a larger effect on the power plant performance with SEGR. It is important to minimise oxygen leakages from the air into the flue gas, minimise heat transfer that would otherwise increase CO2-enriched air temperature at compressor inlet, and minimise pressure drop, e.g. a 1 kPa pressure drop results in gas turbine derating of 2MW (0.7%).
机译:在燃烧后碳捕获(PCC)的过程强化的背景下,选择性废气再循环(SEGR)在天然气燃烧的组合循环(NGCC)植物中,一种CO 2选择性地回收以增加浓度并降低流速的概念分析烟气。与下游PCC系统并联或串联操作的SEGR将CO 2浓度增加超过14体积%,并将燃烧器中的氧水平保持在大约19体积%,远高于非选择性废气再循环报告的16 Vol%限制(EGR )。过程建模表明,目前的燃气轮机发动机可以在没有压缩机和涡轮机性能的情况下没有显着偏差操作。工作流体中的压缩机入口温度和CO2浓度是影响燃气轮机净功率输出和效率的两个关键参数。更高的涡轮机排气温度允许在HRSG中产生额外的蒸汽。这导致净功率输出增加约42 mW(5.2%)和18兆瓦(2.3%),净热效率为0.55%和0.83%,对于Segr在并行和SEGR中的调查配置分别系列。 SEGR含有30wt%的单乙醇胺水溶液洗涤技术,导致操作和成本效益。 SEGR与70%再循环平行,97%的选择性CO 2转移效率和96%的PCC效率导致填充体积的减少46%,与具有PCC的空气的燃烧CCGT相比,特定再沸器占性能降低46%,5%与35%EGR相比,填料体积%和2%的特定再沸器占状物。串联串联操作以95%选择性CO 2转移效率,32%的PCC效率导致填料体积的减少64%,与具有PCC的空气的CCGT相比,特定再沸器占性能为7%,填充体积为40%与35%EGR相比,特定的再沸剂占税4%。在选择SEGR应用的技术时,CO2选择性,压降和传热流速是对SEGR电厂性能效果较大的操作参数。重要的是最大限度地减少空气中的氧气泄漏进入烟道气,最小化热传递,否则将在压缩机入口处增加富含CO 2的空气温度,并最小化压降,例如,例如压降。 1 KPA压降导致燃气涡轮机逝退2MW(0.7%)。

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