The Influence of Sugar Cane Bagasse Type and Its Particle Size on Xylose Production and Xylose-to-Xylitol Bioconversion with the Yeast Debaryomyces hansenii

Author:

Aghcheh Razieh Karimi,Bonakdarpour Babak,Ashtiani Farzin Zokaee

Publisher

Springer Science and Business Media LLC

Subject

Molecular Biology,Applied Microbiology and Biotechnology,Biochemistry,General Medicine,Bioengineering,Biotechnology

Reference42 articles.

1. Johnson, F. X., & Seebaluck, V. (2013). Bioenergy for sustainable development competitiveness: the role of sugar cane in Africa (p. 165). Routledge: Taylor and Francis group.

2. Najafi, G., Ghobadian, B., Tavakoli, T., & Yusaf, T. (2009). Potential of bioethanol production from agricultural wastes in Iran. Renewable and Sustainable Energy, 13(6/7), 1418–1427.

3. Hemmasi, A. H., Samariha, A., Tabei, A., Nemati, M., & Khakifirooz, A. (2011). Study of morphological and chemical composition fibers from Iranian sugarcane bagasse. American-Eurasian Journal of Agricultural & Environmental Sciences, 11(4), 478–481.

4. Pandey, A., Soccol, R. C., Nigam, P., & Soccol, T. V. (2000). Biotechnological potential of agro-industrial residues, І: sugarcane bagasse. Bioresource Technology, 74, 69–80.

5. Delgado, A. V., & Casanova, C. A. (2001). Sugar processing and by-products of the sugar industry. In FAO Agricultural Services Bulletin (FAO), no. 144/FAO, Rome (Italy). Agricultural Support Systems Div. pp. 143.

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