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330                     Refining Biomass Residues for Sustainable Energy and Bioproducts


         Alam, M.I., De, S., Khan, T.S., Haider, M.A., Saha, B., 2018. Acid functionalized ionic liq-
             uid catalyzed transformation of non-food biomass into platform chemical and fuel addi-
             tive. Ind. Crops Prod. 123, 629 637.
         Arvaniti, E., Bjerre, A.B., Schmidt, J.E., 2012. Wet oxidation pretreatment of rape straw for
             ethanol production. Biomass Bioenergy 39, 94 105.
         Avolio, R., Bonadies, I., Capitani, D., Errico, M., Gentile, G., Avella, M., 2012. A multitech-
             nique approach to assess the effect of ball milling on cellulose. Carbohydr. Polym. 87
             (1), 265 273.
         Badgujar, K.C., Bhanage, B.M., 2015. Thermo-chemical energy assessment for production of
             energy-rich fuel additive compounds by using levulinic acid and immobilized lipase.
             Fuel Process. Technol. 138, 139 146.
         Bellido, C., Gonza ´lez-Benito, G., Coca, M., Lucas, S., Garcı ´a-Cubero, M.T., 2013. Influence
             of aeration on bioethanol production from ozonized wheat straw hydrolysates using
             Pichia stipitis. Bioresour. Technol. 133, 51 58.
         Ben’ko, E.M., Manisova, O.R., Lunin, V.V., 2013. Effect of ozonation on the reactivity of
             lignocellulose substrates in enzymatic hydrolyses to sugars. Russ. J. Phys. Chem. A 87
             (7), 1108 1113.
         Bevilaqua, D.B., Rambo, M.K.D., Rizzetti, T.M., Cardoso, A.L., Martins, A.F., 2013.
             Cleaner production: levulinic acid from rice husks. J. Cleaner Prod. 47, 96 101.
         Bharathiraja, S., Suriya, J., Krishnan, M., Manivasagan, P., Kim, S.K., 2017. Chapter Six—
             Production of enzymes from agricultural wastes and their potential industrial applica-
             tions. In: Kim, S.-K., Toldra ´, F. (Eds.), Advances in Food and Nutrition Research.
             Academic Press, pp. 125 148.
         Binder, J.B., Raines, R.T., 2009. Simple chemical transformation of lignocellulosic biomass
             into furans for fuels and chemicals. J. Am. Chem. Soc. 131 (5), 1979 1985.
         Binder, A., Pelloni, L., Fiechter, A., 1980. Delignification of straw with ozone to enhance
             biodegradability. Eur. J. Appl. Microbiol. Biotechnol. 11 (1), 1 5.
         Bohutskyi, P., Kula, T., Kessler, B.A., Hong, Y., Bouwer, E.J., Betenbaugh, M.J., et al.,
             2014. Mixed trophic state production process for microalgal biomass with high lipid
             content for generating biodiesel and biogas. Bioenergy Res. 7 (4), 1174 1185.
         Bule, M.V., Gao, A.H., Hiscox, B., Chen, S., 2013. Structural modification of lignin and
             characterization of pretreated wheat straw by ozonation. J. Agric. Food. Chem. 61 (16),
             3916 3925.
         Cesaro, A., Belgiorno, V., 2013. Sonolysis and ozonation as pretreatment for anaerobic diges-
             tion of solid organic waste. Ultrason. Sonochem. 20 (3), 931 936.
         Chandra, R., Takeuchi, H., Hasegawa, T., 2012. Hydrothermal pretreatment of rice straw bio-
             mass: a potential and promising method for enhanced methane production. Appl. Energy
             94, 129 140.
         Chang, C., Zhang, L., 2011. Cellulose-based hydrogels: present status and application pro-
             spects. Carbohydr. Polym. 84 (1), 40 53.
         Chen, W.Q., Lou, D.P., 2014. Synthesis of sodium carboxymethyl cellulose based on pre-
             treated bamboo shaving. Adv. Mater. Res. 997, 169 172.
         Chin, S.X., Chia, C.H., Zakaria, S., Fang, Z., Ahmad, S., 2015. Ball milling pretreatment and
             diluted acid hydrolysis of oil palm empty fruit bunch (EFB) fibres for the production of
             levulinic acid. J. Taiwan Inst. Chem. Eng. 52, 85 92.
         de Barros Rda, R., Paredes Rde, S., Endo, T., Bon, E.P., Lee, S.-H., 2013. Association of wet
             disk milling and ozonolysis as pretreatment for enzymatic saccharification of sugarcane
             bagasse and straw. Bioresour. Technol. 136, 288 294.
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