118
S. Krishnan et al.
Q.J130000.3022.01M12, by Research Management Centre, Universiti Teknologi Malaysia. These
supports are highly appreciated.
References
Demirba¸ s, A. (1997). Calculation of higher heating values of biomass fuels. Fuel, 76(5):431–4.
Lauri, P., Havlík, P., Kindrmann, G., Forsell, N., & Böttcher, H. (2014). Woody biomass energy
potential in 2050. Energy Policy, 66, 19–31.
Mizuno, S., Ida, T., & Fuchihata, M. (2011). A study of physical properties of high-density solid
biomass, bio-coke, with unutilized biomass. Journal of the Japanese Society for Experimental
Mechanics, 1119–1124.
Mizuno, S., Ida, T., Fuchihata, M., Sanchez, E., & Yoshikuni, K. (2015). Formation characteristics of
bio-coke produced from waste agricultural biomass. American Society of Mechanical Engineers.
Montiano, M. G., Díaz-Faes, E., & Barriocanal, C. (2014a). Partial briquetting vs direct addition of
biomass in coking blends. Fuel, 2014(137), 313–320.
Montiano, M. G., et al. (2014b). Influence of biomass on metallurgical coke quality. Fuel, 2014(116),
175–182.
Montiano, M. G., Diaz-Faes, E., Barriocanal, C., & Alvarez, R. (2014c). Influence of biomass on
metallurgical coke quality. Fuel, 116, 175–182.
Murata, H., et al. (2014). Forming properties of bio-coke using fruit peels as raw material: Effective
utilization of unused biomass resources obtained from imported fruit from ASEAN countries.
Journal of Smart Processing, 3(5), 276–282.
Parikh, J., Channiwala, S. A., & Ghosal, G. K. (2005). A correlation for calculating HHV from
proximate analysis of solid fuels. Fuel, 84(5), 487–494.
Peters, M., & Luengen, H. B. (2011). Iron making in Western Europe. In Proceedings of 6th
European Coke and Ironmaking Congress, METEC Insteel Congress, Düsseldorf, Germany, June
27–July 1.
Suhartini, S., Hidayat, N., & Wijaya, S. (2011). Physical properties characterization of fuel briquette
made from spent bleaching earth. Biomass and Bioenergy, 35(10), 4209–4214.
Suopajärvi, H., Umeki, K., Mousa, E., Hedayati, A., Romar, H., Kemppainen, A., et al. (2018). Use
of biomass in integrated steelmaking–Status quo, future needs and comparison to other low-CO 2
steel production technologies. Applied Energy, 1(213), 384–407.
Yang, H., Huang, L., Liu, S., Sun, K., & Sun, Y. (2016). Pyrolysis process and characteristics of
products from sawdust briquettes. BioResources, 11, 2438–2456.
Yin, C. Y. (2011). Prediction of higher heating values of biomass from proximate and ultimate
analyses. Fuel, 90(3), 1128–1132.
S. Krishnan et al.
Q.J130000.3022.01M12, by Research Management Centre, Universiti Teknologi Malaysia. These
supports are highly appreciated.
References
Demirba¸ s, A. (1997). Calculation of higher heating values of biomass fuels. Fuel, 76(5):431–4.
Lauri, P., Havlík, P., Kindrmann, G., Forsell, N., & Böttcher, H. (2014). Woody biomass energy
potential in 2050. Energy Policy, 66, 19–31.
Mizuno, S., Ida, T., & Fuchihata, M. (2011). A study of physical properties of high-density solid
biomass, bio-coke, with unutilized biomass. Journal of the Japanese Society for Experimental
Mechanics, 1119–1124.
Mizuno, S., Ida, T., Fuchihata, M., Sanchez, E., & Yoshikuni, K. (2015). Formation characteristics of
bio-coke produced from waste agricultural biomass. American Society of Mechanical Engineers.
Montiano, M. G., Díaz-Faes, E., & Barriocanal, C. (2014a). Partial briquetting vs direct addition of
biomass in coking blends. Fuel, 2014(137), 313–320.
Montiano, M. G., et al. (2014b). Influence of biomass on metallurgical coke quality. Fuel, 2014(116),
175–182.
Montiano, M. G., Diaz-Faes, E., Barriocanal, C., & Alvarez, R. (2014c). Influence of biomass on
metallurgical coke quality. Fuel, 116, 175–182.
Murata, H., et al. (2014). Forming properties of bio-coke using fruit peels as raw material: Effective
utilization of unused biomass resources obtained from imported fruit from ASEAN countries.
Journal of Smart Processing, 3(5), 276–282.
Parikh, J., Channiwala, S. A., & Ghosal, G. K. (2005). A correlation for calculating HHV from
proximate analysis of solid fuels. Fuel, 84(5), 487–494.
Peters, M., & Luengen, H. B. (2011). Iron making in Western Europe. In Proceedings of 6th
European Coke and Ironmaking Congress, METEC Insteel Congress, Düsseldorf, Germany, June
27–July 1.
Suhartini, S., Hidayat, N., & Wijaya, S. (2011). Physical properties characterization of fuel briquette
made from spent bleaching earth. Biomass and Bioenergy, 35(10), 4209–4214.
Suopajärvi, H., Umeki, K., Mousa, E., Hedayati, A., Romar, H., Kemppainen, A., et al. (2018). Use
of biomass in integrated steelmaking–Status quo, future needs and comparison to other low-CO 2
steel production technologies. Applied Energy, 1(213), 384–407.
Yang, H., Huang, L., Liu, S., Sun, K., & Sun, Y. (2016). Pyrolysis process and characteristics of
products from sawdust briquettes. BioResources, 11, 2438–2456.
Yin, C. Y. (2011). Prediction of higher heating values of biomass from proximate and ultimate
analyses. Fuel, 90(3), 1128–1132.
