Mehmood, A.;                     Tahir, M.W.;                     Saeed, M.A.;                     Arshad, M.Y.;                     Hussain, H.;                     Mularski, J.;                     Niedzwiecki, L.    
        Optimization of Gasifying Agents in 3D Downdraft Gasification for Enhanced Gas Composition, Combustion, and CO2 Utilization. Fire 2023, 6, 361.
    https://doi.org/10.3390/fire6090361
    AMA Style
    
                                Mehmood A,                                 Tahir MW,                                 Saeed MA,                                 Arshad MY,                                 Hussain H,                                 Mularski J,                                 Niedzwiecki L.        
                Optimization of Gasifying Agents in 3D Downdraft Gasification for Enhanced Gas Composition, Combustion, and CO2 Utilization. Fire. 2023; 6(9):361.
        https://doi.org/10.3390/fire6090361
    
    Chicago/Turabian Style
    
                                Mehmood, Adil,                                 Muhammad Wasim Tahir,                                 Muhammad Azam Saeed,                                 Muhammad Yousaf Arshad,                                 Huma Hussain,                                 Jakub Mularski,                                 and Lukasz Niedzwiecki.        
                2023. "Optimization of Gasifying Agents in 3D Downdraft Gasification for Enhanced Gas Composition, Combustion, and CO2 Utilization" Fire 6, no. 9: 361.
        https://doi.org/10.3390/fire6090361
    
    APA Style
    
                                Mehmood, A.,                                 Tahir, M. W.,                                 Saeed, M. A.,                                 Arshad, M. Y.,                                 Hussain, H.,                                 Mularski, J.,                                 & Niedzwiecki, L.        
        
        (2023). Optimization of Gasifying Agents in 3D Downdraft Gasification for Enhanced Gas Composition, Combustion, and CO2 Utilization. Fire, 6(9), 361.
        https://doi.org/10.3390/fire6090361