Page 203 - Lignocellulosic Biomass to Liquid Biofuels
P. 203
Lignocellulosic biomass to biodiesel 165
[112] Y. Liang, T. Tang, T. Siddaramu, R. Choudhary, A.L. Umagiliyage, Lipid produc-
tion from sweet sorghum bagasse through yeast fermentation, Renew. Energy 40
(2012) 130 136.
[113] C. Huang, X.-F. Chen, L. Yang, X.Q. Xiong, J. Lin, J. Yang, Bioconversion of
corncob acid hydrolysate into microbial oil by the oleaginous yeast Lipomyces star-
keyi, Appl. Biochem. Biotechnol. 172 (2014) 2197 2204.
[114] M.C.A. Xavier, A.L.V. Coradini, A.C. Deckmann, T.T. Franco, Lipid production
from hemicellulose hydrolysate and acetic acid by Lipomyces starkeyi and the ability
of yeast to metabolize inhibitors, Biochem. Eng. J. 118 (2017) 11 19.
[115] X. Zhao, S. Wu, C. Hu, Q. Wang, Y. Hua, Z. Zhao, Lipid production from
Jerusalem artichoke by Rhodosporidium toruloides Y4, J. Ind. Microbiol. Biotechnol.
37 (2010) 581 585.
[116] Q. Wang, F.-J. Guo, Y.-J. Rong, Z.-M. Chi, Lipid production from hydrolysate of
cassava starch by Rhodosporidium toruloides 21167 for biodiesel making, Renew.
Energy 46 (2012) 164 168.
[117] Y. Liu, Y. Wang, H. Liu, J. Zhang, Enhanced lipid production with undetoxified
corncob hydrolysate by Rhodotorula glutinis using a high cell density culture strategy,
Bioresour. Technol. 180 (2015) 32 39.
[118] Q. Gao, Z. Cui, J. Zhang, J. Bao, Lipid fermentation of corncob residues hydroly-
sate by oleaginous yeast Trichosporon cutaneum, Bioresour. Technol. 152 (2014)
552 556.
[119] Y.A. Tsigie, L.H. Huynh, I.N. Ahmed, Y.-H. Ju, Maximizing biodiesel production
from Yarrowia lipolytica Po1g biomass using subcritical water pretreatment,
Bioresour. Technol. 111 (2012) 201 207.
[120] Z. Ruan, M. Zanotti, X. Wang, C. Ducey, Y. Liu, Evaluation of lipid accumula-
tion from lignocellulosic sugars by Mortierella isabellina for biodiesel production,
Bioresour. Technol. 10 (2012) 198 205.
[121] C.N. Economou, A. Makri, G. Aggelis, S. Pavlou, D.V. Vayenas, Semi-solid state
fermentation of sweet sorghum for the biotechnological production of single cell
oil, Bioresour. Technol. 101 (2010) 1385 1388.
[122] X.W. Peng, H.Z. Chen, Single Cell Oil production in solid-state fermentation by
Microsphaeropsis sp. from steam-exploded wheat straw mixed with wheat bran,
Bioresour. Technol. 99 (2008) 3885 3889.
[123] H. Lin, W. Cheng, H.T. Ding, X.J. Chen, Q.F. Zhou, Y.H. Zhao, Direct
microbial conversion of wheat straw into lipid by a cellulolytic fungus of
Aspergillus oryzae A-4 in solid-state fermentation, Bioresour. Technol. 101 (2010)
7556 7562.
[124] P. Dey, J. Banerjee, M.K. Maiti, Comparative lipid profiling of two endophytic
fungal isolates—Colletotrichum sp. and Alternaria sp. having potential utilities as bio-
diesel feedstock, Bioresour. Technol. 102 (2011) 5815 5823.
[125] D.J. Murphy, Storage lipid bodies in plants and other organisms, Prog. Lipid Res.
29 (1991) 299 324.
[126] H. Koku, I. Eroglu, U. Gunduz, M. Yucel, L. Turker, Kinetics of biological hydro-
gen production by the photosynthetic bacterium Rhodobacter sphaeroides O.U. 001,
Int. J. Hydrogen Energy 28 (2003) 381 388.
[127] R. Kalscheuer, T. Torsten Stolting, A. Steinbuchel, Microdiesel: Escherichia coli
engineered for fuel production, Microbiology 152 (2006) 2529 2536.
[128] N. Zabeti, P. Bonin, J.K. Volkman, S. Guasco, J.F. Rontani, Fatty acid composi-
tion of bacterial strains associated with living cells of the haptophyte Emiliania hux-
leyi, Org. Geochem. 41 (2010) 627 636.
[129] A. Steinbüchel, B. Füchtenbusch, Bacterial and other biological systems for polyes-
ter production, Trends Biotechnol. 16 (1998) 419 427.