References
- [1] F. Hu, and A. Ragauskas, “Pretreatment and lignocellulosic chemistry”, Bioenerg Res., Vol. 5, Pp. 1043–1066, 2012. doi:10.1007/s12155-012-9208-010.1007/s12155-012-9208-0
- [2] M. Tripathi, J.N. Sahu, and P. Ganesan, “Effect of process parameters on production of biochar from biomass waste through pyrolysis: A review”, Renewable and Sustainable Energy Reviews, Vol. 55, Pp. 467–481, 2016.10.1016/j.rser.2015.10.122
- [3] D. Mohan, C.U. Pittman, and P.H. Steele, “Pyrolysis of wood/biomass for bio-oil: A critical review”, Energy and Fuels, Vol. 20, Pp. 848-889, 2006.10.1021/ef0502397
- [4] Q. Lu, Z.F. Zhang, C.Q. Dong, and X.F. Zhu, “Catalytic upgrading of biomass fast pyrolysis vapors with nano metal oxides: An analytical Py-GC/MS study”, Energies, Vol. 3, Pp. 1805–1820, 2010.
- [5] European Research Centre of Netherland, “Phyllis, database for biomass and waste”, Energy research Centre of the Netherlands, 2005.
- [6] C.O. Edmund, L. Zhenglong, K. Shantanu, S. Christopher, and O. Samuel, “Bio-oil yield potential of some tropical woody biomass”, Journal of Energy in Southern Africa, Vol. 26, No. 2, Pp. 33-41, 2015.10.17159/2413-3051/2015/v26i2a2193
- [7] T.B. Onifade, S.O. Wandiga, I.A. Bello, S.O. Jekayinfa, and P.J. Harvey, “Conversion of lignocelluloses from palm (Elaeis guineensis) fruit fibre and physic (Jatropha curcas) nut shell into bio-oil”, African Journal of Biotechnology, Vol. 16, No. 46, Pp. 2167-2180, 2017.
- [8] A.R. Ige, C.M. Elinge, M. Aliyu, M. Gwani, and L.G. Hassan, “Optimization and characterization of bio-oil produced from rice husk using surface response methodology”, Acta Chemica Malaysia, Vol. 5, No. 1, Pp. 10-17, 2020. DOI: 10.2478/acmy-2021-0003.10.2478/acmy-2021-0003
- [9] A.R. Ige, C.M. Elinge, M. Aliyu, M. Gwani, and L.G. Hassan, “Optimization of groundnut shell fast pyrolysis for the production and characterization of biooil using fabricated fixed bed reactor”, International Journal of advanced Chemistry, Vol. 8, No. 2, Pp. 217-224, 2020. DOI: 10.14419/ijac.v8i2.31050.10.14419/ijac.v8i2.31050
- [10] E. Jakab, G. Varhegyi, and O. Faix, “Thermal Decomposition of Polypropylene in the Presence of Wood Derived Materials”, Journal of Anal Pyrolysis, Vol. 56, Pp. 273-85, 2000.10.1016/S0165-2370(00)00101-7
- [11] B.A. McCarl, C. Peacorke, R. Chrisman, C.C. Kung, and R.D. Sands, “Economics of Biochar Production, Utilization and Greenhouse gas Effects”, Biochar for Environment Management Science and Technology: London; Earthscan, Pp. 341-57, 2009.
- [12] A. Dermibas, “Progress and recent trends in Biodiesel fuels”, Energy conversion and management, Vol. 50, Pp. 14-34, 2009.10.1016/j.enconman.2008.09.001
- [13] D. Khaerbouche, and B. Benyoucef, “Production of Hydrogen from Pyrolysis of Biomass: Influence of Temperature, substrate and catalyst”, Journal of E ngineering and Applied Science, Vol. 6, Pp. 91-5, 2011.10.3923/jeasci.2011.91.95
- [14] P.A. Arevalo, E.G. Baggethun, B.M. Lopez, and M.P. Rincon, “Widening the evaluative space for ecosystem services: A taxonomy of plural values and valuation methods”, Environmental values, Vol. 27, No. 1, Pp. 29 – 53, 2018.10.3197/096327118X15144698637513
- [15] O.Y. Ogunsanwo, and I.A. Adegoke, “Thermo-Chemical Characterization of Bio-Oil Produced from Sawdust of Three Hard Wood Species in Nigeria”, Journal of Environmental Extension, Vol. 10, No. 1, 2011.
- [16] N.N. Kasim, A.R. Mohamed, M.A.M. Ishak, R. Ahmad, W.I. Nawawi, K. Ismail, and N.H.M. Salleh, “Optimization of pyrolysis process parameters of torrefied demineralized palm empty fruit bunch (TDEFB) by response surface methodology”, AIP Publishing, 2018.10.1063/1.5054202
- [17] ASTM E 872-82, “Standard test method for volatile matter in the analysis of particulate wood fuels, West Conshohocken, (Pennsylvania): ASTM International and Plant Products”, Purdue University, USA, 2006.
- [18] ASTM D 4052, “Standard test method for density and relative density of liquids by digital density meter”, Easton, MD: American Society for Testing and Materials, 1988.
- [19] ASTM D 445, “Standard test method for kinematic viscosity of transparent and opaque liquids (and the calculation of dynamic viscosity)”, Easton, MD: American Society for Testing and Materials. Book of ASTM Standard, Vol. 05, No. 01, 1988.
- [20] ASTM D 482-07, “Standard Test Method for Ash from Petroleum Products”, American Society for Testing and Materials, 2007.
- [21] ASTM D 5373, “Standard test methods for instrumental determination of carbon, hydrogen, and nitrogen in laboratory samples of coal”, American Society for Testing and Materials, USA, 2008.
- [22] K. Muthukumarappan, A. Sivasastri, and C. Karunanithy, “Characteriztion of Biochar and Bio-oil Produced from Different Feedstocks”, Journal of Agricultural Machinery Science, Vol. 7, No. 4, Pp. 351-354, 2011.
- [23] F. Yu, S. Deng, P. Chen, Y. Wan, A. Olson, D. Kittleson, and R. Ruan, “Physical and Chemical Properties of Bio-oils from Microwave Pyrolyis of Corn Stover”, Applied Biochemistry and Biotechnology, Vol. 136-140, Pp. 957-970, 2007.10.1007/978-1-60327-181-3_78
- [24] E.A. Antonakou, Lappas, M.H. Nilsen, A. Bouzga, and M. Stocker, “Evaluation of various types of Al-MCM-41 materials as catalysts in biomass pyrolysis for the production of bio-fuel and chemicals”, Ibid., Vol. 85, No. 14-15, Pp. 2202-2212, 2006.
- [25] H. Aubin, and C. Roy, “Fuel Science Technology International”, Vol. 8, Pp. 77–86, 1980.10.1080/08843759008915914
- [26] A. Oasmaa, and S. Czernik, “Fuel oil quality of biomass pyrolysis oils - state of the art for the end users”, Energy and Fuels, Vol. 13, No. 4, Pp. 914-921, 1999.10.1021/ef980272b
- [27] F. Abnisa, A. Arami-Niya, D. Wan, and J.N. Sahu, “Characterization of Bio-oil and Bio-char from Pyolysis of Palm Oil Wastes”, BioEnergy Research, Vol. 6, No. 2, Pp. 830-840, 2013a.10.1007/s12155-013-9313-8
- [28] N. Abdullah, and H. Gerhauser, “Bio-oil Derived from Empty Fruit Bunches”, Fuel, Vol. 87, No. 12, Pp. 2606-2613, 2008.
- [29] W. Piyarat, and T. Chiyot, “Fuel Properties and ChemicalCompositions of Bio-oils from Biomass Pyrolysis”, Journal of Society of Automatic Engineers of Japan; JSAE 2007087,SAE 2007-01-2024.
- [30] L.G. Hassan, and N.A. Sani, “Preliminary Studies on Biofuel Properties of Bottle Gourd (Lagenaria siceraria) Seeds Oils”, Nigerian Journal of Renewable Energy., Vol. 14, No. 1&2, Pp. 12-15, 2006.
- [31] H.S. Heo, “Fast pyrolysis of rice husk under different reaction conditions”, Journal of Industrial and Engineering Chemistry, Vol. 16, Pp. 27-31, 2010.10.1016/j.jiec.2010.01.026
- [32] A.N.E. Rahman, M.A. Khaleel, and K.B.S. Prasad, “Pyrolysis of Solid Wastes”, Journal of Scientific and Industrial Research, Vol. 60, Pp. 52-59, 2001.