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         Chen, S.S., Yu, I.K.M., Tsang, D.C.W., Yip, A.C.K., Khan, E., Wang, L., et al., 2017.
             Valorization of cellulosic food waste into levulinic acid catalyzed by heterogeneous
             Brønsted acids: temperature and solvent effects. Chem. Eng. J. 327, 328 335. Available
             from: https://doi.org/10.1016/j.cej.2017.06.108.
         Choi, S., Song, C.W., Shin, J.H., Lee, S.Y., 2015. Biorefineries for the production of top
             building block chemicals and their derivatives. Metab. Eng. 28, 223 239. Available
             from: https://doi.org/10.1016/j.ymben.2014.12.007.
         Chowdhury, A., Mitra, D., Biswas, D., 2013. Biolubricant synthesis from waste cooking oil
             via enzymatic hydrolysis followed by chemical esterification. J. Chem. Technol.
             Biotechnol. 88, 139 144. Available from: https://doi.org/10.1002/jctb.3874.
                               ´
         Couto, S.R., Sanroma ´n, M.A., 2006. Application of solid-state fermentation to food
             industry—a review. J. Food Eng. 76, 291 302. Available from: https://doi.org/10.1016/
             j.jfoodeng.2005.05.022.
         Dahiya, S., Kumar, A.N., Shanthi Sravan, J., Chatterjee, S., Sarkar, O., Mohan, S.V., 2018.
             Food waste biorefinery: sustainable strategy for circular bioeconomy. Bioresour.
             Technol. 248, 2 12. Available from: https://doi.org/10.1016/j.biortech.2017.07.176.
         Das, R.K., Brar, S.K., Verma, M., 2016. Fumaric acid. Platform Chemical Biorefinery.
             Elsevier, pp. 133 157.
         Delgado Arcan ˜o, Y., Valman ˜a Garcı ´a, O.D., Mandelli, D., Carvalho, W.A., Magalha ˜es
             Pontes, L.A., 2018. Xylitol: a review on the progress and challenges of its production
             by  chemical  route.  Catal.  Today.  Available  from:  https://doi.org/10.1016/j.
             cattod.2018.07.060.
         Deng, W., Zhang, H., Xue, L., Zhang, Q., Wang, Y., 2015. Selective activation of the C O
             bonds in lignocellulosic biomass for the efficient production of chemicals. Chin. J.
             Catal. 36, 1440 1460. Available from: https://doi.org/10.1016/S1872-2067(15)60923-8.
         Dessie, W., Zhang, W., Xin, F., Dong, W., Zhang, M., Ma, J., et al., 2018. Succinic acid pro-
             duction from fruit and vegetable wastes hydrolyzed by on-site enzyme mixtures through
             solid state fermentation. Bioresour. Technol. 247, 1177 1180. Available from: https://
             doi.org/10.1016/j.biortech.2017.08.171.
         European Union, Regulation (EC) No 767/2009 of the European Parliament and of the
             Council of 13 July 2009 on the Placing on the Market and Use of Feed, Amending
             European Parliament and Council Regulation (EC) No 1831/2003 and Repealing
             Council Directive 79/373/EEC, Commission Directive 80/511/EEC, Council Directives
             82/471/EEC, 83/228/EEC, 93/74/EEC, 93/113/EC and 96/25/EC and Commission
             Decision 2004/217/EC Text With EEA Relevance.
         F˘ arca¸s, A.C., Socaci, S.A., Mudura, E., Dulf, F.V., Vodnar, D.C., Tofan˘ a, M., et al., 2017.
             Exploitation of brewing industry wastes to produce functional ingredients. In: Kanauchi,
             M. (Ed.), Brewing Technology. InTech.
         Food and Nutrition Sustainability. The Economist Intelligence Unit. Sponsored by Barilla.
             ,http://foodsustainability.eiu.com/. (accessed 25.02.19.).
         Global Market Insights. Fumaric Acid Market Size, Price Trends—Industry Share Report
             2024. ,https://www.gminsights.com/industry-analysis/fumaric-acid-market. (accessed
             25.02.19.).
         Grand View Research, Inc.a. Global Aspartic Acid Market By Application (Feed
             Supplements, Medicine, Polyaspartic Acid, Aspartame, L-Alanine) Expected to Reach
             USD 101.0 Million by 2022. Grand View Research, Inc. ,https://www.grandviewre-
             search.com/press-release/global-aspartic-acid-market. (accessed 22.02.19.).
         Grand  View  Research  Inc.b.  Global  Hydroxypropionic  Acid  Market—World
             Hydroxypropionic Acid Market Size, Trends, Analysis and Segment Forecasts To
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