19. Werpy T, Petersen G (2004) Top value added chemicals from biomass volume I—results of
screening for potential candidates from sugars and synthesis gas. Technical report
NREL/TP-510-35523
20. Holladay JE, White JF, Bozel JJ, Johnson D (2007) Top value-added chemicals from
biomass: volume II-results of screening for potential candidates from biorefinery lignin.
Technical report PNNL-16983
21. Aresta M, Dibenedetto A (2018) Fuels from recycled carbon. In: Gude VG (ed) Green
chemistry for sustainable biofuel production. Apple Academic Press, pp 79–152. ISBN
9781771886390 (chapter 2)
22. Brown RC (ed) (2019) Thermochemical processing of biomass: conversion into fuels,
chemicals and power. Wiley
23. Sharma HK, Xu C, Qin W (2019) Biological pretreatment of lignocellulosic biomass for
biofuels and bioproducts: an overview. Waste Biomass Valorization 10(2):235–251
24. Di Donato P, Finore I, Poli A, Nicolaus B, Lama L (2019) The production of second
generation bioethanol: the biotechnology potential of thermophilic bacteria. J Cleaner Prod
233:1410–1417
25. Hu L, Wu Z, Xu J, Sun Y, Lin L, Liu S (2014) Zeolite-promoted transformation of glucose
into 5-hydroxymethylfurfural in ionic liquid. Chem Eng J 244:137–144
26. Abou-Yousef H, Hassan EB (2014) A novel approach to enhance the activity of H-form
zeolite catalyst for production of hydroxymethylfurfural from cellulose. J Ind Eng Chem
20:1952–1957
27. Ordomsky VV, van der Schaaf J, Schouten JC, Nijhuis TA (2012) The effect of solvent
addition on fructose dehydration to 5-hydroxymethylfurfural in biphasic system over zeolites.
J Catal 287:68–75
28. Xu H, Miao Z, Zhao H, Yang J, Zhao J, Song H, Liang N, Chou L (2015) Dehydration of
fructose into 5-hydroxymethylfurfural by high stable ordered mesoporous zirconium
phosphate. Fuel 145:234–240
29. Jimenez-Morales I, Teckchandani-Ortiz A, Santamaria-Gonzalez J, Maireless-Torres P,
Jimenez-Lûpez A (2014) elective dehydration of glucose to 5-hydroxymethylfurfural on
acidic mesoporous tantalum phosphate. Appl Catal B 144:22–28
30. Ordomsky V, Van der Schaaf J, Schouten JC, Nijhuis TA (2013) Glucose dehydration to 5‐
hydroxymethylfurfural in a biphasic system over solid acid foams ChemSusChem 6:1697–
1707
31. Zhang Y, Wang J, Ren J, Liu X, Li X, Xia Y, Lu G, Wang Y (2012) Mesoporous niobium
phosphate: an excellent solid acid for the dehydration of fructose to 5-hydroxymethylfurfural
in water. Catal Sci Technol 2:2485–2491
32. Zhuang J, Lin L, Pang C, Liu Y (2011) Selective catalytic conversion of glucose to
5-hydroxymethylfurfural over Zr (H 2 PO 4 ) 2 solid acid catalysts. Adv Mater Res 236–238:134–
137
33. Dibenedetto A, Aresta M, Pastore C, di Bitonto L, Angelini A, Quaranta E (2015) Conversion
of fructose into 5-HMF: a study on the behaviour of heterogeneous cerium-based catalysts and
their stability in aqueous media under mild conditions. RSC Adv 5:26941–26948
34. Dibenedetto A, Aresta M, di Bitonto L, Pastore C (2016) Organic carbonates: efficient
extraction solvents for the synthesis of HMF in aqueous media with cerium phosphates as
catalysts. Chemsuschem 9(1):118–125
35. Kläusli T, Biochem AVA (2014) Commercialising renewable platform chemical 5-HMF.
Green Process Synth 3:235–236
36. Executive Summary EU Project BIOCONSEPTS, Specialty and Bio Based Polymers,
RND_001346
37. Ventura M, Aresta M, Dibenedetto A (2016) Selective aerobic oxidation of 5(Hydroxymethyl)furfural to 5-formyl-2-furancarboxylic acid in water. Chemsuschem 9
(10):1096–1100
References
215
screening for potential candidates from sugars and synthesis gas. Technical report
NREL/TP-510-35523
20. Holladay JE, White JF, Bozel JJ, Johnson D (2007) Top value-added chemicals from
biomass: volume II-results of screening for potential candidates from biorefinery lignin.
Technical report PNNL-16983
21. Aresta M, Dibenedetto A (2018) Fuels from recycled carbon. In: Gude VG (ed) Green
chemistry for sustainable biofuel production. Apple Academic Press, pp 79–152. ISBN
9781771886390 (chapter 2)
22. Brown RC (ed) (2019) Thermochemical processing of biomass: conversion into fuels,
chemicals and power. Wiley
23. Sharma HK, Xu C, Qin W (2019) Biological pretreatment of lignocellulosic biomass for
biofuels and bioproducts: an overview. Waste Biomass Valorization 10(2):235–251
24. Di Donato P, Finore I, Poli A, Nicolaus B, Lama L (2019) The production of second
generation bioethanol: the biotechnology potential of thermophilic bacteria. J Cleaner Prod
233:1410–1417
25. Hu L, Wu Z, Xu J, Sun Y, Lin L, Liu S (2014) Zeolite-promoted transformation of glucose
into 5-hydroxymethylfurfural in ionic liquid. Chem Eng J 244:137–144
26. Abou-Yousef H, Hassan EB (2014) A novel approach to enhance the activity of H-form
zeolite catalyst for production of hydroxymethylfurfural from cellulose. J Ind Eng Chem
20:1952–1957
27. Ordomsky VV, van der Schaaf J, Schouten JC, Nijhuis TA (2012) The effect of solvent
addition on fructose dehydration to 5-hydroxymethylfurfural in biphasic system over zeolites.
J Catal 287:68–75
28. Xu H, Miao Z, Zhao H, Yang J, Zhao J, Song H, Liang N, Chou L (2015) Dehydration of
fructose into 5-hydroxymethylfurfural by high stable ordered mesoporous zirconium
phosphate. Fuel 145:234–240
29. Jimenez-Morales I, Teckchandani-Ortiz A, Santamaria-Gonzalez J, Maireless-Torres P,
Jimenez-Lûpez A (2014) elective dehydration of glucose to 5-hydroxymethylfurfural on
acidic mesoporous tantalum phosphate. Appl Catal B 144:22–28
30. Ordomsky V, Van der Schaaf J, Schouten JC, Nijhuis TA (2013) Glucose dehydration to 5‐
hydroxymethylfurfural in a biphasic system over solid acid foams ChemSusChem 6:1697–
1707
31. Zhang Y, Wang J, Ren J, Liu X, Li X, Xia Y, Lu G, Wang Y (2012) Mesoporous niobium
phosphate: an excellent solid acid for the dehydration of fructose to 5-hydroxymethylfurfural
in water. Catal Sci Technol 2:2485–2491
32. Zhuang J, Lin L, Pang C, Liu Y (2011) Selective catalytic conversion of glucose to
5-hydroxymethylfurfural over Zr (H 2 PO 4 ) 2 solid acid catalysts. Adv Mater Res 236–238:134–
137
33. Dibenedetto A, Aresta M, Pastore C, di Bitonto L, Angelini A, Quaranta E (2015) Conversion
of fructose into 5-HMF: a study on the behaviour of heterogeneous cerium-based catalysts and
their stability in aqueous media under mild conditions. RSC Adv 5:26941–26948
34. Dibenedetto A, Aresta M, di Bitonto L, Pastore C (2016) Organic carbonates: efficient
extraction solvents for the synthesis of HMF in aqueous media with cerium phosphates as
catalysts. Chemsuschem 9(1):118–125
35. Kläusli T, Biochem AVA (2014) Commercialising renewable platform chemical 5-HMF.
Green Process Synth 3:235–236
36. Executive Summary EU Project BIOCONSEPTS, Specialty and Bio Based Polymers,
RND_001346
37. Ventura M, Aresta M, Dibenedetto A (2016) Selective aerobic oxidation of 5(Hydroxymethyl)furfural to 5-formyl-2-furancarboxylic acid in water. Chemsuschem 9
(10):1096–1100
References
215
