The acid hydrolysis of sugarcane bagasse hemicellulose to produce xylose, arabinose, glucose and other products

Biomass and Bioenergy - Tập 23 Số 5 - Trang 367-380 - 2002
B. P. Lavarack1, Gregory Griffin2, David Rodman3
1Sugar Research Institute, Mackay, Qld 4740, Australia
2School of Engineering, James Cook University, Townsville, Qld 4811, Australia#TAB#
3CSR Ltd., Pioneer Mill, Ayr, Qld 4807, Australia

Tóm tắt

Từ khóa


Tài liệu tham khảo

Edwards B. Energy use in cane and beet factories. Proceedings of the Australian Society of Sugar Cane Technologists, 1991. p. 227–9.

Dawson M, Dixon T, Inkerman P. Moisture loss from baled bagasse during storage. Proceedings of the Australian Society of Sugar Cane Technologists, 1990. p. 199–206.

Jenkins GH. Real sugar economy in the cane sugar factory. Proceedings of the 28th Conference of Queensland Society of Sugar Cane Technologists, 1961. p. 96–101.

Reid M, Rein P. Steam balance for the new Felixton II mill. Proceedings of the South African Sugar Technologists’ Association, 1983. p. 85–91.

Briody P. Australian Sugar Yearbook 1997. Rural Press Queensland, Brisbane, 1997. p. 33–4 & 246.

Marton G, Dencs J, Szokonya L. Principles of biomass refining. In: Handbook of heat and mass transfer. Houston: Gulf Publishing, 1989. p. 609–52.

Tsao G. Ethanol and chemicals from cellulosics. Proceedings of the International Symposium: Alternative Sources of Energy for Agriculture, 1984. p. 177–85.

Trickett R, Neytzell-de Wilde F. Dilute acid hydrolysis of bagasse hemicellulose. Chemsa 1982; March: 11–5.

Youssef, 1991, Improvement of the biodegredation of some cellulosic wastes by acid pretreatment, Acta Microbiologica Polonica, 40, 187

Torget, 1990, Dilute acid pretreatment of short rotation woody and herbaceous crops, Applied Biochemistry and Biotechnology, 24/25, 115, 10.1007/BF02920238

El-Taaboulsi, 1983, A modified method of nitric acid pulping of bagasse, Journal of Chemical Technology and Biotechnology, 33A, 387, 10.1002/jctb.504330802

Fontana J, Corea J, Duarte J, Barbosa A, Blumel M. Aqueous phosphoric acid hydrolysis of hemicelluloses from sugarcane and sorghum bagasses. Biotechnology and Bioengineering Symposium No. 14, 1984. p. 175–85.

Springer. Hydrolysis of aspenwood xylan with aqueous solutions of hydrochloric acid. TAPPI Journal 1966; 49(3):102–6.

Saavedra F, Karacsonyi S, Monzon J, Cordero D, Gonzales J. The hemicelluloses of sugar cane. ISSCT, Proceedings of XX Congress, Sao Paulo, 1989. p. 269–75.

TAPPI. TAPPI test methods 1994–1995. Georgia, Atlanta: Technical Association of the Pulp and Paper Industry, 1994.

Paturau J. By-products of the cane sugar industry. Sugar series. Amsterdam: Elsevier, 1989. p. 74–6.

Reicher, 1994, Uneven O-acetyl distribution in a lightly acetylated d-xylan from sugar cane, Ciencia y Cultura (Sao Paulo), 46, 283

du Toit, 1984, Sugar cane bagasse as a possible source of fermentable carbohydrates. I. Characterisation of bagasse with regard to monosaccharide, hemicellulose and amino acid composition, Biotechnology and Bioengineering, XXVI, 1071, 10.1002/bit.260260909

Davis, 1941, Journal of Agricultural Research, 63, 241

Saska, 1995, Aqueous extraction of sugarcane bagasse hemicellulose and production of xylose syrup, Biotechnology and Bioengineering, 45, 517, 10.1002/bit.260450609

Kaar, 1991, Simplified analysis of acid soluble lignin, Journal of Wood Chemistry and Technology, 11, 465, 10.1080/02773819108051087

TAPPI, TAPPI test methods 1994–1995. Acid-insoluble lignin in wood and pulp. Method T 222 om-88, 1994.

Manohar Rao P. Industrial utilization of sugar cane and its co-products. Delhi: ISPCK, 1997. p. 30–113.

Dixon T. Spontaneous combustion in bagasse stockpiles. Proceedings of Australian Society of Sugar Cane Technologists, 1988. p. 53–61.

Braid, G., Marsh, S., Bridge, W. Conversion of bagasse lignocellulose to ethanol. NERDDC Project No. 414. CSR Sugar Division, Sydney, 1995.

Honig, 1953

Maekawa, 1989, An evaluation of the acid-soluble lignin determination in analyses of lignin by the sulphuric acid method, Journal of Wood Chemistry and Technology, 9, 549, 10.1080/02773818908050315

Conner, 1984, Kinetic modelling of hardwood prehydrolysis. Part I xylan removal by water prehydrolysis, Wood and Fibre Science, 16, 268

Kamiyama, 1979, Rate of hydrolysis of xylo-oligosaccharides in dilute sulphuric acid, Carbohydrate Research, 73, 151, 10.1016/S0008-6215(00)85484-1

Trickett R. Utilisation of bagasse for the production of C5- and C6-sugar, Masters thesis, University of Natal, Durban, 1984.

Koukios, 1995, The role of pre-hydrolysis in refining lignocellulosic biomass, Cellulose Chemistry and Technology, 29, 435

Marton G. Furfurolgyártó Reaktorok Optimális Kinetikai Tervezése (Optimal Kinetic Design of Furfural-Reactors). D.Sc. thesis, University of Veszprém, Veszprém. 1987.

Dunlop, 1953

Root, 1959, Forest Products Journal, 9, 158

Szokonya, 1988, Chemical processing of biomass I- Production of D-xylose by acidic hydrolysis of plant materials, Hungarian Journal of Industrial Chemistry, 16, 511

Sidiras D, Koukios G. Optimising acid catalysed organosolv fractionation of wheat straw. Fifth European conference on biomass for energy and industry, Lisbon, 1989. p. 2–8.

Vazquez G, Antorrena G, Gonzalez J, Freire S. Kinetic studies on acetosolv pulping of lignocellulosics. Proceedings of the Eighth European Conference on Biomass for Energy and Industry, 1995. p. 1394–400.

Szokonya, 1989, Chemical processing of biomass II-Production of levulinic acid by acid hydrolysis of plant materials, Hungarian Journal of Industrial Chemistry, 17, 477

Nee, 1976, Hydrolysis of pentosans in bagasse pith, Journal of Applied Chemistry and Biotechnology, 26, 283, 10.1002/jctb.5020260510