Performance Assessment of a Novel Polygeneration System Based on the Integration of Waste Plasma Gasification, Tire Pyrolysis, Gas Turbine, Supercritical CO2 Cycle and Organic Rankine Cycle

被引:0
|
作者
Fuyuan Feng
Tongyu Li
Jizhen An
Heng Chen
Yi’nan Wang
Gang Xu
Qinxin Zhao
Tong Liu
机构
[1] North China Electric Power University,Beijing Key Laboratory of Emission Surveillance and Control for Thermal Power Generation
[2] Guangdong Academy of Sciences,Guangdong Key Laboratory of Integrated Agro
[3] Xi’an Jiaotong University,environmental Pollution Control and Management, Institute of Eco
来源
Journal of Thermal Science | 2023年 / 32卷
关键词
polygeneration system; waste plasma gasification; tire pyrolysis; gas turbine cycle; supercritical CO; cycle; organic Rankine cycle;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, a novel polygeneration system involving plasma gasifier, pyrolysis reactor, gas turbine (GT), supercritical CO2 (S-CO2) cycle, and organic Rankine cycle (ORC) has been developed. In the proposed scheme, the syngas is obtained by the gasification and the pyrolysis is first burned and drives the gas turbine for power generation, and then the resulting hot exhaust gas is applied to heat the working fluid for the supercritical CO2 cycle and the working fluid for the bottom organic Rankine cycle. In addition to the electrical output, the pyrolysis subsystem also produces pyrolysis oil and char. Accordingly, energy recovery is achieved while treating waste in a non-hazardous manner. The performance of the new scheme was examined by numerous methods, containing energy analysis, exergy analysis, and economic analysis. It is found that the net total energy output of the polygeneration system could attain 19.89 MW with a net total energy efficiency of 52.77%, and the total exergy efficiency of 50.14%. Besides, the dynamic payback period for the restoration of the proposed project is only 3.31 years, and the relative net present value of 77 552 640 USD can be achieved during its 20-year lifetime.
引用
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页码:2196 / 2214
页数:18
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