Development and investigation of a pollutants emission reduction process from a coal-gasification power plant integrated with fuel cell and solar energy

被引:11
作者
Yanto, Doni Tri Putra [1 ]
Akhmadeev, Ravil [2 ]
Hamad, Hassan Salman [3 ]
Alawadi, Ahmed Hussien Radie [4 ]
Abdullayev, Abror Bozarboyevich [5 ]
Romero-Parra, Rosario Mireya [6 ]
Fooladi, Hadi [7 ]
机构
[1] Univ Negeri Padang, Elect Engn Dept, Padang, Indonesia
[2] Plekhanov Russian Univ Econ, Dept State & Municipal Finance, Stremyanny Lane,36, Moscow 117997, Russia
[3] Al Bayan Univ, Tech Coll Engn, Baghdad, Iraq
[4] Islamic Univ, Coll Tech Engn, Najaf, Iraq
[5] Islamic Univ, Coll Tech Engn, Najaf, Iraq
[6] Univ Rafael Belloso Chacin, Dept Gen Studies, Maracaibo, Venezuela
[7] Islamic Azad Univ, Fac Engn, Dept Energy Engn, Tabriz Branch, Tabriz, Iran
关键词
coal-gasification plant; fuel cell; solar energy; integrated energy cycle; pollutants emission reduction; optimization; LINEAR FRESNEL REFLECTOR; GAS-TURBINE; PERFORMANCE; COLLECTOR; SYSTEM; WATER; CYCLE; OPTIMIZATION; HYDROGEN; EXERGY;
D O I
10.1093/ijlct/ctad093
中图分类号
O414.1 [热力学];
学科分类号
摘要
Even though coal resources are the most abundant among fossil fuels, coal-fired plants release large amounts of greenhouse gases into the atmosphere. In this regard, reducing environmental challenges and crises caused by coal burning can be a promising option to reduce today's crises in the energy field. The integration of coal-fired plants with renewable-driven energy systems can simultaneously improve thermodynamic performance and reduce pollutants emission rates. This article presents the thermodynamic and pollutant emission investigations of a new coal-fired plant coupled with a linear Fresnel solar collector (LFSC)-driven solar unit, a parabolic trough solar collector (PTSC)-driven solar unit, a high-temperature fuel cell stack (molten carbonate fuel cell stack [MCFCS]) and a heat recovery system (based on the steam turbine and gas turbine-based power cycles). The plant is able to produce electricity and hot water (HW). The main structure of the offered plant is based on coal, whereas, is coupled with renewables-based cycles to mitigate environmental impacts. The plant could generate similar to 207 MW of power and 3728 m(3)/h of HW. In such conditions, the energy efficiency of 73.1% and exergy efficiency of 44.18% could be achievable. Further, the emitted gas rates of the plant were nearly 403 tons/h. A comprehensive comparison is also presented for the plant's behavior under different types of coal (petcoke and anthracite). In addition, a two-function optimization is developed to determine the maximum value of exergy efficiency and the minimum value of total pollutants emission rate.
引用
收藏
页码:1120 / 1133
页数:14
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