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Simulation study on the carbon capture system applying LNG cold energy to the O 2/H 2O oxy-fuel combustion

机译:将LNG冷能应用于O 2 / H 2 的碳捕集系统的模拟研究氧燃料燃烧

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At present, the oxy-fuel combustion (O2/CO2circulating combustion) is dominant in natural gas generating systems, but it consumes much energy for air separation oxygen generation and carbon capture, leading to a severe reduction of generating efficiency. The O2/H2O combustion system, as the new generation of an oxy-combustion system, is superior to the oxy-fuel combustion, and its pollutant emission is lower, but during its combustion, air separation oxygen generation is still needed, so CO2compression energy consumption is still higher. In this paper, a set of carbon capture system applying LNG cold energy to the O2/H2O combustion was developed, and its mathematical model was established to calculate thermal efficiency and exergy efficiency. And then, it was compared with the COOLCEP system which also makes use of LNG cold energy for carbon capture. The combustion process of this system is operated under high pressure with H2O as the circulation medium, and LNG is utilized in a cascading pattern, so the energy consumption of air separation oxygen generation and carbon capture system is reduced, the generating efficiency of the system is increased and carbon capture is conducted at low cost. The thermal efficiency and energy efficiency of this system increase continuously as the inlet temperature of gas turbine rises. When the flow rate of circulating water is 13.5?kmol/s, the combustion pressure is 1.6?MPa, and the inlet temperature of gas turbine reaches 1328.1?°C, the thermal efficiency and exergy efficiency is 57.9% (maximum) and 42.7%, respectively. Compared with COOLCEP system, the O2/H2O combustion system is much lower in energy consumption and its thermal efficiency and exergy efficiency are 6.3% and 5.4% higher, respectively.
机译:目前,氧-燃料燃烧(O2 / CO2循环燃烧)在天然气发电系统中占主导地位,但是它在空气分离中消耗大量能量以产生氧气和捕获碳,从而导致发电效率的严重降低。作为氧气燃烧系统的新一代,O2 / H2O燃烧系统优于氧气燃料燃烧,其污染物排放较低,但在燃烧过程中仍需要空气分离氧气的产生,因此,CO2压缩能消费仍然更高。本文开发了一套将LNG冷能应用于O2 / H2O燃烧的碳捕集系统,并建立了其数学模型来计算热效率和火用效率。然后,将其与COOLCEP系统进行了比较,该系统也利用LNG冷能进行碳捕集。该系统的燃烧过程在高压下以H2O为循环介质进行操作,并且LNG以级联方式使用,从而降低了空分制氧和碳捕集系统的能耗,该系统的发电效率为碳捕获量增加,并且低成本进行。随着燃气轮机入口温度的升高,该系统的热效率和能效不断提高。当循环水流量为13.5?kmol / s时,燃烧压力为1.6?MPa,燃气轮机的入口温度达到1328.1?C,热效率和火用效率最高(57.9%)和42.7%。 , 分别。与COOLCEP系统相比,O2 / H2O燃烧系统的能耗低得多,热效率和火用效率分别高6.3%和5.4%。

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