PAPERmaking! Vol8 Nr1 2022

3. Association C, P. (2020) 2019 Annual Report of China's Paper Industry. Pap Biomater:70-80 doi:10.12103/j.issn.2096-2355.2020.03.007 4. Bosco M, Rat DS, Dupré N, Hasenknopf B, Lacôte E, Malacria M, Rémy DP, Kovensky J, Thorimbert S, Wadouachi AJC (2010) Lewis ‐ Acidic Polyoxometalates as Reusable Catalysts for the Synthesis of Glucuronic Acid Esters under Microwave Irradiation. ChemSusChem 3:1249-1252 doi:10.1002/cssc.201000218 5. Buléon A, Colonna P, Planchot V, Ball S (1998) Starch granules: structure and biosynthesis. Int J Biol Macromol 23:85-112 doi:10.1016/S0141-8130(98)00040-3 ½ . Chaterjee PK, Neogi S, Saha S, Jeon BH, Dey A (2019) Low pH treatment of starch industry e © uent with bacteria from leaf debris for methane production. Water Environ Res 91:377-385 doi:10.1002/wer.1033 7. Chen X, Huang P, Zhu X, Zhuang S, Zhu H, Fu J, Nissimagoudar AS, Li W, Zhang X, Zhou LJNH (2019) Keggin-type polyoxometalate cluster as an active component for redox-based nonvolatile memory. Nanoscale Horiz 4:697-704 doi:10.1039/C8NH00366A ¾ . Deng W, Zhang Q, Wang Y (2012) Polyoxometalates as e ¨ cient catalysts for transformations of cellulose into platform chemicals. Dalton Trans (Cambridge, England : 2003) 41:9817-9831 doi:10.1039/c2dt30637a 9. Dolbecq A, Dumas E, Mayer C, Mialane P (2010) ChemInform Abstract: Hybrid Organic-Inorganic Polyoxometalate Compounds: From Structural Diversity to Applications. Chem Rev 110:6009-6048 doi:10.1021/cr1000578 10. Du X, Liu W, Zhang Z, Mulyadi A, Brittain A, Gong J, Deng Y (2017) Low-Energy Catalytic Electrolysis for Simultaneous Hydrogen Evolution and Lignin Depolymerization. ChemSusChem 10:847-854 doi:10.1002/cssc.201601685 11. Farias FdAC, Moretti MMdS, Costa MS, BordignonJunior SE, Cavalcante KB, Boscolo M, Gomes E, Franco CML, Silva Rd (2020) Structural and physicochemical characteristics of taioba starch in comparison with cassava starch and its potential for ethanol production. Ind Crops Prod 157:112825 doi:10.1016/j.indcrop.2020.112825 12. Girisuta B, Janssen LPBM, Heeres HJ (2007) Kinetic Study on the Acid-Catalyzed Hydrolysis of Cellulose to Levulinic Acid. Ind Eng Chem Res 46:1696-1708 doi:10.1021/ie061186z 13. Glass EN, Fielden J, Huang Z, Xiang X, Musaev DG, Lian T, Hill CLJIC (2016) Transition metal substitution effects on metal-to-polyoxometalate charge transfer. Inorg Chem 55:4308-4319 doi:10.1021/acs.inorgchem.6b00060 14. Goodman BA (2020) Utilization of waste straw and husks from rice production: A review. J Bioresour Bioprod 5:143-162 doi:10.1016/j.jobab.2020.07.001 15. Guo K, Guan Q, Xu J, Tan W (2019) Mechanism of Preparation of Platform Compounds from Lignocellulosic Biomass Liquefaction Catalyzed by Bronsted Acid: A Review. J Bioresour Bioprod 4:202-213 doi:10.12162/jbb.v4i4.009

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