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PERFORMANCE ASSESSMENT OF A MICRO GAS TURBINE CYCLE WITH EXHAUST GAS RECIRCULATION FUELED BY BIOGAS FOR POST-COMBUSTION CARBON CAPTURE APPLICATION

机译:微燃气涡轮循环与废气再循环的性能评估,沼气后燃烧后燃烧碳捕获应用

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As a renewable energy source, biogas produced from anaerobic digestion seems to play an important role in the energy market. Unlike wind and solar, which are intermittent, gas turbines fueled by biogas provide dispatchable renewable energy that can be ramped up and down to match the demand. If post-combustion carbon capture systems are implemented, they can also result in negative CO_2 emissions. However, one of the major challenges here is the energy needed for CO_2 chemical absorption in post-combustion capture, which is closely related to the concentration of CO_2 in the exhaust gas upstream of the capture unit. This paper presents an evaluation of the effects of biogas and exhaust gas recirculation use on the performance of the gas turbine cycle for post-combustion CO_2 capture application. The study is based on a combined heat and power micro gas turbine, Turbec T100, delivering 100kWe. The thermodynamic model of the gas turbine has been validated against experimental data obtained from test facilities in Norway and the United Kingdom. Based on the validated model, performance calculations for the baseline micro gas turbine (fueled by natural gas), biogas-fired cases and the cycle with exhaust gas recirculation have been carried out at various operational conditions and compared together. A wide range of biogas composition with varying methane content was assumed for this study. Necessary minor modifications to fuel valves and compressor were assumed to allow the engine operation with different biogas composition. The methodology and results are fully discussed in this paper.
机译:作为可再生能源,厌氧消化产生的沼气似乎在能源市场中发挥着重要作用。与风和太阳能不同,沼气推动的燃气轮机提供可调度的可再生能源,可以上下升温以满足需求。如果实施后燃烧碳捕获系统,它们也可以导致负二氧化碳排放。然而,这里的主要挑战之一是燃烧后捕获中CO_2化学吸收所需的能量,其与捕获单元上游的废气中的CO_2的浓度密切相关。本文介绍了对燃烧后CO_2捕获应用的燃气涡轮机循环性能对沼气和废气再循环的影响的评价。该研究基于组合的热量和电力微型燃气轮机,涡轮T100,输送100kWe。燃气轮机的热力学模型已经验证了从挪威和英国的测试设施获得的实验数据验证。基于验证的模型,在各种操作条件下,在各种操作条件下进行了基线微型燃气轮机(由天然气燃料),沼气射击病例和废气再循环的循环。为本研究假定具有不同甲烷含量的各种沼气组合物。假设对燃料阀和压缩机的必要微小修改,以允许发动机运行不同的沼气组成。本文完全讨论了方法和结果。

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