Enhanced life cycle modelling of a micro gas turbine fuelled with various fuels for sustainable electricity production

被引:27
作者
Ayaz, S. Kagan [1 ]
Altuntas, Onder [2 ]
Caliskan, Hakan [3 ]
机构
[1] Cukurova Univ, Dept Mech Engn, Fac Engn, TR-01380 Adana, Turkey
[2] Eskisehir Tech Univ, Fac Aeronaut & Astronaut, TR-26470 Eskisehir, Turkey
[3] Usak Univ, Dept Mech Engn, Fac Engn, TR-64200 Usak, Turkey
关键词
Energy; Environmental assessment; Exergy; Fuel; Life cycle assessment; Micro gas turbine; LAMINAR BURNING VELOCITY; LIQUEFIED NATURAL-GAS; AMMONIA PRODUCTION; COMBUSTION CHARACTERISTICS; EMISSION CHARACTERISTICS; EXERGY ANALYSIS; HYDROGEN; ENERGY; FLAMES; SWIRL;
D O I
10.1016/j.rser.2021.111323
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In this study, exergy and life cycle-based enhanced environmental (EXEN) and enviro-economic (EXENEC) an-alyses are performed on a micro gas turbine, operated with natural gas and alternative mixtures of natural gas-ammonia and natural gas-methanol. A novel iterative method that considers compressor pressure, turbine pressure, mass flow rates in the turbomachines, and net power output (100 +/- 3 kW) is used for simulation. Exergy analysis is applied, after which EXEN and EXENEC are performed. The EXEN shows that 50% natural gas-50% ammonia combustion has the lowest CO and CO2 emissions, and that natural gas combustion has the lowest NO emissions. 50% ammonia combustion decreases CO2 emissions by 48.9%, CO emissions by 50.12%, exergy output by 58.62%, and increases NO emissions by 2.37% compared to the natural gas. For 50% secondary fuel combustion, the CO reduction for ammonia compared to methanol is 56.33%. Ammonia combustion creates more NO compared for every same fraction of methanol. The EXEN values for GHG-100 (GHG: greenhouse gas) are found to be as follows: 29,404 kgCO(2)eq/month (CO(2)eq: CO2-equivalent); 27,395 kgCO(2)eq/month and 25,797 kgCO(2)eq/month; 23,406 kgCO(2)eq/month; 21,501 kgCO(2)eq/month; 19,651 kgCO(2)eq/month for natural gas; 10%-50% ammonia, respectively. The released CO(2)eq prices (GHG-100) in a month are decreased from $1005 to $672 with ammonia combustion. Methanol combustion decreases EXEN values (GHG-100) from 29,400 kgCO(2)eq/month to 19,275 kgCO(2)eq/month and EXENEC values (GHG-100) to $659. Ammonia has better CO2 and CO combustion-based reduction than the same fraction of methanol, while methanol leads to a 0.27%-1.9% better life cycle-based environmental performance compared to other fuel options.
引用
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页数:24
相关论文
共 134 条
[31]   Avoidable thermodynamic inefficiencies and costs in an externally fired combined cycle power plant [J].
Cziesla, F ;
Tsatsaronis, G ;
Gao, ZL .
ENERGY, 2006, 31 (10-11) :1472-1489
[32]   Ignition delay times of NH3/DME blends at high pressure and low DME fraction: RCM experiments and simulations [J].
Dai, Liming ;
Hashemi, Hamid ;
Glarborg, Peter ;
Gersen, Sander ;
Marshall, Paul ;
Mokhov, Anatoli ;
Levinsky, Howard .
COMBUSTION AND FLAME, 2021, 227 :120-134
[33]  
DECC, 2009, LOW CARBON TRANSITIO
[34]   The Effect of TiO2 on Engine Emissions for Gas Turbine engine Fueled with jatropha, butanol, Soya and Rapeseed oil [J].
Devi, P. Booma ;
Joseph, D. Raja ;
Gokutnath, R. ;
Manigandan, S. ;
Gunasekar, P. ;
Anand, T. P. Prem ;
Venkatesh, S. ;
Vimal, M. Rakesh .
INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2020, 37 (01) :85-94
[35]  
Duijm NJ, 2005, RISOR1504, V1504
[36]   Ammonia combustion at elevated pressure and temperature conditions [J].
Duynslaegher, C. ;
Jeanmart, H. ;
Vandooren, J. .
FUEL, 2010, 89 (11) :3540-3545
[37]  
Efma, 2000, BEST AVAILABLE TECHN
[38]   Assessment of thermodynamic performance and exergetic sustainability of turboprop engine using mixture of kerosene and methanol [J].
Ekici, Selcuk ;
Altuntas, Onder ;
Acikkalp, Emin ;
Sogut, M. Ziya ;
Karakoc, T. Hikmet .
INTERNATIONAL JOURNAL OF EXERGY, 2016, 19 (03) :295-314
[39]   Experimental and Kinetic Modeling Study of Laminar Flame Speed of Dimethoxymethane and Ammonia Blends [J].
Elbaz, Ayman M. ;
Giri, Binod Raj ;
Issayev, Gani ;
Shrestha, Krishna P. ;
Mauss, Fabian ;
Farooq, Aamir ;
Roberts, William L. .
ENERGY & FUELS, 2020, 34 (11) :14726-14740
[40]   Energy and exergy analyses of a novel ammonia combined power plant operating with gas turbine and solid oxide fuel cell systems [J].
Ezzat, M. F. ;
Dincer, I. .
ENERGY, 2020, 194