47
238. Jae J, Zheng WQ, Lobo RF, Vlachos DG (2013) Production of Dimethylfuran from
Hydroxymethylfurfural through catalytic transfer hydrogenation with Ruthenium supported
on carbon. ChemSusChem 6(7):1158–1162
239. Zheng H-Y, Zhu Y-L, Huang L, Zeng Z-Y, Wan H-J, Li Y-W (2008) Study on Cu–Mn–Si
catalysts for synthesis of cyclohexanone and 2-methylfuran through the coupling process.
Cat Com 9(3):342–348
240. Yang J, Zheng H-Y, Zhu Y-L, Zhao G-W, Zhang C-H, Teng B-T et al (2004) Effects of calcination temperature on performance of Cu–Zn–Al catalyst for synthesizing γ-butyrolactone
and 2-methylfuran through the coupling of dehydrogenation and hydrogenation. Cat Com
5(9):505–510
241. Nakagawa Y, Tamura M, Tomishige K (2013) Catalytic reduction of biomass-derived furanic
compounds with hydrogen. ACS Catal 3(12):2655–2668
242. Sitthisa S, Resasco DE (2011) Hydrodeoxygenation of Furfural over supported metal catalysts: a comparative study of Cu, Pd and Ni. Catal Lett 141(6):784–791
243. Chareonlimkun A, Champreda V, Shotipruk A, Laosiripojana N (2010) Catalytic conversion of sugarcane bagasse, rice husk and corncob in the presence of TiO2, ZrO2 and
mixed-oxide TiO2–ZrO2 under hot compressed water (HCW) condition. Bioresour Technol
101(11):4179–4186
244. Boussarsar H, Roge B, Mathlouthi M (2009) Optimization of sugarcane bagasse conversion
by hydrothermal treatment for the recovery of xylose. Bioresour Technol 100(24):6537–6542
245. Lichtenthaler FW, Peters S (2004) Carbohydrates as green raw materials for the chemical
industry. C R Chim 7(2):65–90
246. Qazanfarzadeh Z, Kadivar M (2016) Properties of whey protein isolate nanocomposite films
reinforced with nanocellulose isolated from oat husk. Int J Biol Macromol 91:1134–1140
247. Skiba EA, Budaeva VV, Baibakova OV, Zolotukhin VN, Sakovich GV (2017) Dilute nitricacid pretreatment of oat hulls for ethanol production. Biochem Eng J 126:118–125
248. Lawford HG, Rousseau JD, Tolan JS (2001) Comparative ethanol productivities of different Zymomonas recombinants fermenting oat hull hydrolysate. Appl Biochem Biotechnol
91(3):133–146
249. Valdebenito F, Pereira M, Ciudad G, Azocar L, Briones R, Chinga-Carrasco G (2017) On the
nanofibrillation of corn husks and oat hulls fibres. Ind Crop Prod 95:528–534
250. Varma AK, Mondal P (2017) Pyrolysis of sugarcane bagasse in semi batch reactor: effects
of process parameters on product yields and characterization of products. Ind Crop Prod
95:704–717
251. Chauhan MK, Varun, Chaudhary S, Kumar S, Samar (2011) Life cycle assessment of sugar
industry: a review. Renew Sustain Energy Rev 15(7):3445–3453
252. Jain A, Wei YZ, Tietje A (2016) Biochemical conversion of sugarcane bagasse into bioproducts. Biomass Bioenergy 93:227–242
253. Rocha GJD, Nascimento VM, Goncalves AR, Silva VFN, Martin C (2015) Influence of
mixed sugarcane bagasse samples evaluated by elemental and physical-chemical composition. Ind Crop Prod 64:52–58
254. Chandel AK, Antunes FAF, Freitas WLC, da Silva SS (2013) Sequential acid-base pretreatment of sugarcane bagasse: a facile method for the sugars recovery after enzymatic hydrolysis. J Bioprocess Eng Biorefin 2(1):11–19
255. Maryana R, Oktaviani K, Tanifuji K, Ohi H (2014) Comparison between acid sulfite and sodaAQ delignification methods for effective bio-ethanol production from sugarcane bagasse and
oil palm empty fruit bunch. In: 2014 Pan Pac Conf TAPPI; May 28; Taiwan, pp E46–E52
256. Ramos LP, da Silva L, Ballem AC, Pitarelo AP, Chiarello LM, Silveira MHL (2015)
Enzymatic hydrolysis of steam-exploded sugarcane bagasse using high total solids and low
enzyme loadings. Bioresour Technol 175:195–202
257. Al Arni S (2018) Comparison of slow and fast pyrolysis for converting biomass into fuel.
Renew Energy 124:197–201
Thermochemical Conversion of Biomass and Upgrading of Bio-Products to Produce…
238. Jae J, Zheng WQ, Lobo RF, Vlachos DG (2013) Production of Dimethylfuran from
Hydroxymethylfurfural through catalytic transfer hydrogenation with Ruthenium supported
on carbon. ChemSusChem 6(7):1158–1162
239. Zheng H-Y, Zhu Y-L, Huang L, Zeng Z-Y, Wan H-J, Li Y-W (2008) Study on Cu–Mn–Si
catalysts for synthesis of cyclohexanone and 2-methylfuran through the coupling process.
Cat Com 9(3):342–348
240. Yang J, Zheng H-Y, Zhu Y-L, Zhao G-W, Zhang C-H, Teng B-T et al (2004) Effects of calcination temperature on performance of Cu–Zn–Al catalyst for synthesizing γ-butyrolactone
and 2-methylfuran through the coupling of dehydrogenation and hydrogenation. Cat Com
5(9):505–510
241. Nakagawa Y, Tamura M, Tomishige K (2013) Catalytic reduction of biomass-derived furanic
compounds with hydrogen. ACS Catal 3(12):2655–2668
242. Sitthisa S, Resasco DE (2011) Hydrodeoxygenation of Furfural over supported metal catalysts: a comparative study of Cu, Pd and Ni. Catal Lett 141(6):784–791
243. Chareonlimkun A, Champreda V, Shotipruk A, Laosiripojana N (2010) Catalytic conversion of sugarcane bagasse, rice husk and corncob in the presence of TiO2, ZrO2 and
mixed-oxide TiO2–ZrO2 under hot compressed water (HCW) condition. Bioresour Technol
101(11):4179–4186
244. Boussarsar H, Roge B, Mathlouthi M (2009) Optimization of sugarcane bagasse conversion
by hydrothermal treatment for the recovery of xylose. Bioresour Technol 100(24):6537–6542
245. Lichtenthaler FW, Peters S (2004) Carbohydrates as green raw materials for the chemical
industry. C R Chim 7(2):65–90
246. Qazanfarzadeh Z, Kadivar M (2016) Properties of whey protein isolate nanocomposite films
reinforced with nanocellulose isolated from oat husk. Int J Biol Macromol 91:1134–1140
247. Skiba EA, Budaeva VV, Baibakova OV, Zolotukhin VN, Sakovich GV (2017) Dilute nitricacid pretreatment of oat hulls for ethanol production. Biochem Eng J 126:118–125
248. Lawford HG, Rousseau JD, Tolan JS (2001) Comparative ethanol productivities of different Zymomonas recombinants fermenting oat hull hydrolysate. Appl Biochem Biotechnol
91(3):133–146
249. Valdebenito F, Pereira M, Ciudad G, Azocar L, Briones R, Chinga-Carrasco G (2017) On the
nanofibrillation of corn husks and oat hulls fibres. Ind Crop Prod 95:528–534
250. Varma AK, Mondal P (2017) Pyrolysis of sugarcane bagasse in semi batch reactor: effects
of process parameters on product yields and characterization of products. Ind Crop Prod
95:704–717
251. Chauhan MK, Varun, Chaudhary S, Kumar S, Samar (2011) Life cycle assessment of sugar
industry: a review. Renew Sustain Energy Rev 15(7):3445–3453
252. Jain A, Wei YZ, Tietje A (2016) Biochemical conversion of sugarcane bagasse into bioproducts. Biomass Bioenergy 93:227–242
253. Rocha GJD, Nascimento VM, Goncalves AR, Silva VFN, Martin C (2015) Influence of
mixed sugarcane bagasse samples evaluated by elemental and physical-chemical composition. Ind Crop Prod 64:52–58
254. Chandel AK, Antunes FAF, Freitas WLC, da Silva SS (2013) Sequential acid-base pretreatment of sugarcane bagasse: a facile method for the sugars recovery after enzymatic hydrolysis. J Bioprocess Eng Biorefin 2(1):11–19
255. Maryana R, Oktaviani K, Tanifuji K, Ohi H (2014) Comparison between acid sulfite and sodaAQ delignification methods for effective bio-ethanol production from sugarcane bagasse and
oil palm empty fruit bunch. In: 2014 Pan Pac Conf TAPPI; May 28; Taiwan, pp E46–E52
256. Ramos LP, da Silva L, Ballem AC, Pitarelo AP, Chiarello LM, Silveira MHL (2015)
Enzymatic hydrolysis of steam-exploded sugarcane bagasse using high total solids and low
enzyme loadings. Bioresour Technol 175:195–202
257. Al Arni S (2018) Comparison of slow and fast pyrolysis for converting biomass into fuel.
Renew Energy 124:197–201
Thermochemical Conversion of Biomass and Upgrading of Bio-Products to Produce…
