Page 288 - Refining Biomass Residues for Sustainable Energy and Bioproducts
P. 288

256                     Refining Biomass Residues for Sustainable Energy and Bioproducts


         Gottumukkala, L.D., Binod, P., Valappil, S.K., Mathiyazhakan, K., Pandey, A., Sukumaran,
             R.K., 2013. Biobutanol production from rice straw by a non acetone producing
             Clostridium sporogenes BE01. Bioresour. Technol. 145, 182 187.
         Hay, J.X.Y., Wu, T.Y., Juan, J.C., Md Jahim, J., 2013. Biohydrogen production through
             photo fermentation or dark fermentation using waste as a substrate: overview, econom-
             ics, and future prospects of hydrogen usage. Biofuels Bioprod. Biorefin. 7, 334 352.
         Hazeena, S.H., Pandey, A., Binod, P., 2016. Evaluation of oil palm front hydrolysate as a
             novel substrate for 2,3-butanediol production using a novel isolate Enterobacter cloacae
             SG1. Renew. Energy 98, 216 220.
         Hazeena, S.H., Salini, C.N., Sindhu, R., Pandey, A., Binod, P., 2019. Simultaneous sacchari-
             fication and fermentation of oil palm front for the production of 2,3-butanediol.
             Bioresour. Technol. 278, 145 149.
         Hodge, D.B., Andersson, C., Berglund, K.A., Rova, U., 2009. Detoxification requirements
             for bioconversion of softwood dilute acid hydrolyzates to succinic acid. Enzyme
             Microb. Technol. 44, 309 316.
         Jiang, T., Qiao, H., Zheng, Z., Chu, Q., Li, X., Yong, Q., et al., 2016. Lactic acid production
             from pretreated hydrolysates of corn stover by a newly developed Bacillus coagulans
             strain. PLoS One 1 13. Available from: https://doi.org/10.1371/journal.pone.0149101.
         Jime ´nez-Quero, A., Pollet, E., Zhao, M., Marchioni, E., Ave ´rous, L., Phalip, V., 2016.
             Itaconic and fumaric acid production from biomass hydrolysates by Aspergillus strains.
             J. Microbiol. Biotechnol. 26, 1557 1565.
         Joelsson, E., Dienes, D., Kovacs, K., Galbe, M., Wallberg, O., 2016. Combined production
             of biogas and ethanol at high solids loading from wheat straw impregnated with acetic
             acid: experimental study and techno-economic evaluation. Sustain. Chem. Process 4,
             1 19.
         Klement, T., Milker, S., J¨ ager, G., Grande, P.M., de Marı ´a, P.D., Bu ¨chs, J., 2012. Biomass
             pretreatment affects Ustilago maydis in producing itaconic acid. Microbial Cell
             Factories 11, 43.
         Koti, S., Govumoni, S.P., Gentela, J., Rao, L.V., 2016. Enhanced bioethanol production from
             wheat straw hemicellulose by mutant strains of pentose fermenting organisms Pichia sti-
             pitis and Candida shehatae. Springer Plus 5, 1545.
         Kumar, M., Gayen, K., 2011. Developments in biobutanol production: new insights. Appl.
             Energy 88, 1999 2012.
         Lee, C.C., Kibblewhite, R.E., Paavola, C.D., Orts, W.J., Wagschal, K., 2017. Production of
             D-xylonic acid from hemicellulose using artificial enzyme complexes. J. Microbiol.
             Biotechnol. 27, 77 83.
         Li, Q., Liu, C.Z., 2012. Co-culture of Clostridium thermocellum and Clostridium thermo-
             saccharolyticum for enhancing hydrogen production via thermophilic fermentation of
             cornstalkwaste.Int.J.HydrogenEnergy37, 10648 10654.
         Li, Y.C., Liu, Y.F., Chu, C.Y., et al., 2012. Techno-economic evaluation of biohydrogen production
             from wastewater and agricultural waste. Int. J. Hydrogen Energy 37 (2012), 15704 15710.
         Li, X., Yang, L., Gu, X., Lai, C., Huang, C., Yong, Q., 2018. A combined process for pro-
             duction of fumaric acid and xylooligosaccharides from corncob. Bioresources 13,
             399 411.
         Liu, R., Liang, L., Li, F., Wu, M., Chen, K., Ma, J., et al., 2013. Efficient succinic acid pro-
             duction from lignocellulosic biomass by simultaneous utilization of glucose and xylose
             in engineered Escherichia coli. Bioresour. Technol. 149, 84 91.
         Mamphweli, C.M.S., Okoh, O., 2017. Bioethanol production from lignocellulosic sugarcane
             leaves and tops. J. Energy Southern Afr. 28, 1 11.
   283   284   285   286   287   288   289   290   291   292   293