· Honghong Shi, Nader Mahinpey, Aqsha Aqsha, Rico Silbermann, “Characterization, thermochemical conversion studies, and heating value modeling of municipal solid waste”, Waste Manage., 48, 2016, pp.34~47.
· Psomopoulos, C., Bourka, A., Themelis, N.J., “Waste-to-energy: a review of the status and benefits in USA”, Waste Manage., 29(5), 2009, pp.1718~1724.
· Kathiravale, S., Muhd-Yunus, M.N., Sopian, K., Samsuddin, A.H., Rahman, R.A., “Modeling the heating value of municipal solid waste”, Fuel, 82(9), 2003, pp.1119~1125.
· Chen, N., Degnan, T., Koenig, L., “Liquid fuel from carbohydrates”, ChemTech., 16(8), 1986, pp.506~511.
· Yin, C.Y., “Prediction of higher heating values of biomass from proximate and ultimate analyses“, Fuel, 90(3), 2011, pp.1128~1132.
· Patumsawad, S., Cliffe, K.R., “Experimental study on fluidized bed combustion of high moisture municipal solid waste”, Energy Convers.Manage. 43(17), 2002, pp.2329~2340.
· González, J.F., Encinar, J.M., Canito, J.L., Rodrı´ guez, J.J., “Pyrolysis of automobile tyre waste: influence of operating variables and kinetics study”, J. Anal. Appl. Pyrol., 58, 2001, pp.667~683.
· Parikh, J., Channiwala, S.A., Ghosal, G.K., “A correlation for calculating HHV from proximate analysis of solid fuels”, Fuel 84(5), 2005, pp.487~494.
· Channiwala, S.A., Parikh, P.P., “A unified correlation for estimating HHV of solid, liquid and gaseous fuels”, Fuel, 81(8), 2002, pp.1051~1063.
· Prins, M.J., Ptasinski, K.J., Janssen, F.J., “Torrefaction of wood: Part 1. Weight loss kinetics”, J. Anal. Appl. Pyrol., 77(1), 2006, pp.28~34.
· Sørum, L., Grønli, M., Hustad, J.E., “Pyrolysis characteristics and kinetics of municipal solid wastes”, Fuel, 80(9), 2001, pp.1217~1227.
· Zhou, H., Meng, A., Long, Y., Li, Q., Zhang, Y., “Interactions of municipal solid waste components during pyrolysis: a TG-FTIR study”. J. Anal. Appl. Pyrol., 108, 2014, pp.19~25.