Biomedical Engineering Reference
In-Depth Information
102. Azeredo LAI, Lima MB, Coelho R, Freire D. Thermophilic protease production by Strep-
tomyces sp. 594 in submerged and solid-state fermentations using feather meal. J Appl
Microbiol. 2006;100(4):641-7.
103. Sandhya C, Sumantha A, Szakacs G, Pandey A. Comparative evaluation of neutral pro-
tease production by Aspergillus oryzae in submerged and solid-state fermentation. Process
Biochem. 2005;40(8):2689-94.
104. Fenice M, Giovannozzi Sermanni G, Federici F, D'Annibale A. Submerged and solid-state
production of laccase and Mn-peroxidase by Panus tigrinus on olive mill wastewater-based
media. J Biotechnol. 2003;100(1):77-85.
105. Papagianni M, Nokes SE, Filer K. Submerged and solid-state phytase fermentation by
Aspergillus niger : effects of agitation and medium viscosity on phytase production, fungal
morphology and inoculum performance. Food Technol Biotechnol. 2001;39(4):319-26.
106. Ashokkumar
-
fructofuranosidase production by Aspergillus niger in submerged and solid state fermentation.
Process Biochem. 2001;37(4):331-8.
107. Noé Aguilar C, Augur C, Favela-Torres E, Viniegra-González G. Induction and repres-
sion patterns of fungal tannase in solid-state and submerged cultures. Process Biochem.
2001;36(6):565-70.
108. Romero-Gomez S, Augur C, Viniegra-González G. Invertase production by Aspergillus niger
in submerged and solid-state fermentation. Biotechnol Lett. 2000;22(15):1255-8.
109. Taragano VM, Pilosof AMR. Application of Doehlert designs for water activity, pH, and
fermentation time optimization for Aspergillus niger pectinolytic activities production in
solid-state and submerged fermentation. Enzym Microb Technol. 1999;25(3):411-9.
110. Gouda MK, Omar SH. Production of xylanolytic enzymes in solid-state and submerged
fermentation by a local isolate of Aspergillus tamarii . Egypt J Microbiol. 1999;34(3):465-77.
111. Maldonado M, Strasser de Saad A. Production of pectinesterase and polygalacturonase
by Aspergillus niger in submerged and solid state systems. J Ind Microbiol Biotechnol.
1998;20(1):34-8.
112. George S, Raju V, Subramanian T, Jayaraman K. Comparative study of protease production
in solid substrate fermentation versus submerged fermentation. Bioprocess Biosyst Eng.
1997;16(6):381-2.
113. Sudo
B,
Kayalvizhi
N,
Gunasekaran
P.
Optimization
of
media
for
-amylase produc-
tion by Aspergillus kawachii in solid-state and submerged cultures. J Ferment Bioeng.
1994;77(5):483-9.
114. Chen HZ, Xu J. Principle and application of modern solid state fermentation. Beijing:
Chemical Industry Press; 2004.
115. Zhang LX, Xu R, Shi GY, Zhang KC. Cellulase production by solid state fermentation of
distiller's wheat. Chem Ind For Prod. 2000;20(3):27-32.
116. Su HD, Sun JS, Zhang D, Shi J, Liu P. Effect of the operation parameter of bioreactor on
alcoholic fermentation with corn stalk. China Brew. 2005;5:18-20.
117. Chen HZ, Li ZH. Technology and equipment of solid-state fermentation with double dynamic
of gas phase. China Patent 02100176.6, 2002.
118. Chen HZ, Li ZH. Gas dual-dynamic solid state fermentation technique and apparatus. U.S.
Patent 7,183.074B2, 2003.
119. Li HQ, Chen HZ. The periodic change of environment factors in solid state fermentation and
effect on microorganism fermentation. Chin J Biotechnol. 2005;21(3):440-5.
120. Zhou XH, Chen HZ, Li ZH. Experimental observation on cellulosic biodegradation in solid
state fermentation. Chin J Process Eng. 2003;3(5):447-52.
121. Pandey A. Effect of particle size of substrate of enzyme production in solid-state fermentation.
Bioresour Technol. 1991;37(2):169-72.
122. Ghildyal N, Gowthaman M, Raghava Rao K, Karanth N. Interaction of transport resistances
with biochemical reaction in packed-bed solid-state fermentors: effect of temperature gradi-
ents. Enzym Microb Technol. 1994;16(3):253-7.
S,
Ishikawa
T,
Sato
K,
Oba
T.
Comparison
of
acid-stable
'
Search WWH ::




Custom Search