Biomedical Engineering Reference
In-Depth Information
94. Huang H, Yan J, Ji XJ, Li S, Hu YC. A method for methyl ethyl ketone production. Chinese
Patent: 200810122489.4, June 20, 2008
95. Zhang JA, Xie Y, Cheng KK, Zhou YJ, Liu HJ, Liu DH. A high efficient method for
converting
2,3-butanediol
to
methyl
ethyl
ketone.
Chinese
Patent:
200910083730.1,
May 8, 2009
96. Ni Y, Sun Z (2009) Recent progress on industrial fermentative production of acetone-
butanol-ethanol
by
Clostridium
acetobutylicum
in
China.
Appl
Microbiol
Biotechnol
83:415-423
97. Lee SY, Park JH, Jang SH, Nielsen LK, Kim J, Jung KS (2008) Fermentative butanol
production by clostridia. Biotechnol Bioeng 101:209-228
98. Chen CK, Blaschek HP (1999) Acetate enhances solvent production and prevents
degeneration in Clostridium beijerinckii BA101. Appl Microbiol Biotechnol 52:170-173
99. Atsumi S, Hanai T, Liao JC (2008) Non-fermentative pathways for synthesis of branched-
chain higher alcohols as biofuels. Nature 451:86-89
100. Zhang KC,
Sawaya MR,
Eisenberg DS,
Liao
JC (2008)
Expanding metabolism
for
biosynthesis of nonnatural alcohols. Proc Natl Acad Sci USA 105:20653-20658
101. Manzer LE. Method of making 2-butanol. US 7754928B2, Jul 13, 2010
102. Siemerink MAJ, Kuit W, Lopez Contreras AM, Eggink G, van der Oost J, Kengen SWM
(2011) Heterologous expression of an acetoin reductase leads to D-2,3-butanediol
production in Clostridium acetobutylicum. Appl Environ Microbiol 77:2582-2588
103. Bramucci MG, Flint D, Miller ES, Nagarajan V, Sedkova N, Singh M, Van Dyk TK.
Method for the production of 2-butanol, US 20080274525 A1, April 28, 2008
104. Burk MJ, Pharkya P, Burgard AP. Microorganisms for the production of methyl ethyl
ketone and 2-butanol. US 20100184173 A1, November 13, 2009
105. Osterhout RE, Niu W, Burgard AP. Microorganisms and methods for carbon-efficient
biosynthesis of MEK and 2-butanol. US 20110008858 A1, June 10, 2010
106. Tsao GT, Cao NJ, Du J, Gong CS (1999) Production of multifunctional organic acids from
renewable resources. Adv Biochem Eng Biotechnol 65:243-280
107. Nigam P (2009) Production of organic acids from agro-industrial residues. In: Nigam P,
Pandey A (eds) Biotechnology for agro-industrial residues utilization. Springer Netherlands,
Amsterdam
108. Werpy T, Petersen G (2004) Top value added chemicals from biomass, Volume 1: results of
screening for potential candidates from sugars and synthesis gas. U.S. Department of
Energy. http://www1.eere.energy.gov/biomass/pdfs/35523.pdf
109. Sauer M, Porro D, Mattanovich D, Branduardi P (2008) Microbial production of organic
acid: expanding the markets. Trends Biotechnol 26:100-108
110. Zhu YM, Lee YY, Elander RT (2007) Conversion of aqueous ammonia-treated corn stover
to
lactic
acid
by
simultaneous
saccharification
and
cofermentation.
Appl
Biochem
Biotechnol 137:721-738
111. Givry S, Prevot V, Duchiron F (2008) Lactic acid production from hemicellulosic
hydrolyzate by cells of Lactobacillus bifermentans immobilized in Ca-alginate using
response surface methodology. World J Microbiol Biotechnol 24:745-752
112. Ruengruglikit C, Hang YD (2003) L(+)-lactic acid production from corncobs by Rhizopus
oryzae NRRL-395. Food Sci Technol 36:573-575
113. Woiciechowski AL, Soccol CR, Ramos LP, Pandey A (1999) Experimental design to
enhance the production of L-(+)-lactic acid from steam-exploded wood hydrolysate using
Rhizopus oryzae in a mixed-acid fermentation. Process Biochem 34:949-955
114. Walton SL, Bischoff KM, van Heiningen ARP, van Walsum GP (2010) Production of lactic
acid from hemicellulose extracts by Bacillus coagulans MXL-9. J Ind Microbiol Biotechnol
37:823-830
115. Wee YJ, Yun JS, Park DH, Ryu HW (2004) Biotechnological production of L-lactic acid
from wood hydrolyzate by batch fermentaion of
Enterococcus faecalis. Biotechnol Lett
26:71-74
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