Gas hold-up and oxygen mass transfer in three pneumatic bioreactors operating with sugarcane bagasse suspensions
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/content/pdf/10.1007/s00449-013-1049-5.pdf
Reference29 articles.
1. Macrelli S, Mogensen J, Zacchi G (2012) Techno-economic evaluation of 2nd generation bioethanol production from sugar cane bagasse and leaves integrated with the sugar-based ethanol process. Biotechol Biofuels 5:22
2. Singhania RR, Sukumaran RK, Patel AK, Larroche C, Pandey A (2010) Advancement and comparative profiles in the production technologies using solid-state and submerged fermentation for microbial cellulases. Enzym Microb Technol 46:541–549
3. Gabelle JC, Jourdier E, Licht RB, Ben Chaabane F, Henaut I, Morchain J, Augier F (2012) Impact of rheology on the mass transfer coefficient during the growth phase of Trichoderma reesei in stirred bioreactors. Chem Eng Sci 75:408–417
4. Schell DJ, Farmer J, Hamilton J, Lyons B, McMillan JD, Saez JC, Tholudar A (2001) Influence of operating conditions and vessel size on oxygen transfer during cellulase production. Appl Biochem Biotechol 91–3:627–642
5. Yu L, Chao YP, Wensel P, Chen SL (2012) Hydrodynamic and kinetic study of cellulase production by Trichoderma reesei with pellet morphology. Biotechnol Bioeng 109:1755–1768
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