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Modeling the Operation Mechanism of Combined P2G and Gas-Fired Plant With CO2Recycling

机译:CO 2 循环利用对P2G与燃气联合电厂运行机理建模

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The rapid development of power-to-gas (P2G) technology is promoting the integration of renewables and the interaction between multiple energy systems. In this paper, the concept of combined P2G and gas-fired power plant (GFPP) system is proposed as a potential solution for the globally recognized imperatives to reduce CO2emission and utilize renewable energy. The proposed system is featured by the on-site conversion of CO2back to the fuels of GFPP and thus recycles CO2without long-distance transport. This paper further establishes the mathematical model of the proposed system. Detailed gas, electricity and heat flow inside the system are explained and the input/output relationship is derived as well. This paper also studies the operational range and optimal scheduling method of the proposed system to quantify its ability on the reduction of CO2emission and utilization of renewables. According to the estimation, the GFPP-P2G system is able to utilize approximately 30% of the surplus renewables for electricity generation and 20% for heat generation. The combined GFPP-P2G system is also compared with the standalone GFPP through several cases. The numerical study shows great effect of the proposed system on the utilization of renewables and reduction of CO2emission.
机译:电力到天然气(P2G)技术的快速发展正在促进可再生能源的整合以及多种能源系统之间的相互作用。在本文中,提出了P2G和燃气电厂(GFPP)组合系统的概念,作为全球公认的减少CO的当务之急的潜在解决方案 n 2 nemission,并利用可再生能源。所建议的系统的特征在于现场转换CO n 2返回GFPP的燃料,从而回收了CO n 2 n,无需长距离传输。本文进一步建立了所提出系统的数学模型。详细说明了系统内部的气体,电流和热量流,并得出了输入/输出关系。本文还研究了拟议系统的运行范围和最佳调度方法,以量化其减少CO n 2 可再生能源的排放和利用。根据估算,GFPP-P2G系统能够将大约30%的剩余可再生能源用于发电,将20%的热量用于发电。通过几种情况,还将组合的GFPP-P2G系统与独立的GFPP进行了比较。数值研究表明,所提出的系统对可再生能源的利用和减少CO n 2 nemission。

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