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Optimizing operation parameters of a spark- ignition engine fueled with biogas-hydrogen blend in hybrid renewable energy system working on solar and biomass (CROSBI ID 308593)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Van Ga, Bui ; Thi Minh Tu, Bui1 ; Hwai Chyuan, Ong ; Nižetić, Sandro ; Van Hung, Bui ; Thi Thanh Xuan, Nguyen ; A.E., Atabani ; Libor, Štěpanec ; Le Hoang, Phu Pham ; Anh Tuan, Hoang Optimizing operation parameters of a spark- ignition engine fueled with biogas-hydrogen blend in hybrid renewable energy system working on solar and biomass // Energy (Oxford), 252 (2022), 124052, 22. doi: 10.1016/j.energy.2022.124052

Podaci o odgovornosti

Van Ga, Bui ; Thi Minh Tu, Bui1 ; Hwai Chyuan, Ong ; Nižetić, Sandro ; Van Hung, Bui ; Thi Thanh Xuan, Nguyen ; A.E., Atabani ; Libor, Štěpanec ; Le Hoang, Phu Pham ; Anh Tuan, Hoang

engleski

Optimizing operation parameters of a spark- ignition engine fueled with biogas-hydrogen blend in hybrid renewable energy system working on solar and biomass

The smart control of the biogas-hydrogen engine is needed to improve the overall energy efficiency of the hybrid renewable energy system. The paper focuses on studying the optimal control parameters of the engine aiming to achieve the compromise between performance and pollutant emissions of the biogas-hydrogen engine. In neat biogas fueling mode, the optimal equivalence ratio changes from 1.05 to 1.01 as the CH4 composition in biogas increases from 60 to 80%. By adding 20% hydrogen into biogas, the optimal equivalence ratio practically reaches the stoichiometric value, despite the variation of CH4 concentration. At the same operating condition and hydrogen content, an increase of 10% CH4 in biogas leads to a decrease of 2°CA in the optimal advanced ignition angle. However, at a given engine speed and biogas composition, the optimal advanced ignition angle decreased by 3°CA when adding 10% hydrogen into biogas. The optimal ignition angle is independent of the load regime. Under optimal operating conditions, the addition of 20% hydrogen content into biogas is found to improve the indicated engine cycle work by 6%, to reduce CO and HC emissions by 5-10 times ; however, it increases NOx emission by 10-15% compared to neat biogas fueling mode.

Renewable energy ; Hybrid-energy system ; Hydrogen-biogas blends ; Sparkignition engine ; Engine performance ; Emission characteristics

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Podaci o izdanju

252

2022.

124052

22

objavljeno

0360-5442

1873-6785

10.1016/j.energy.2022.124052

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