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waste using steam explosion followed by water and acetone extractions. Waste Biomass Valoriz
9:2423–2432. https://doi.org/10.1007/s12649-017-0157-x
Asumadu-Sarkodie S, Owusu PA (2016) Feasibility of biomass heating system in Middle East
Technical University, Northern Cyprus Campus. Cogent Eng 3(1):1134304
Atalla RH, Vanderhart DL (1984) Native cellulose: a composite of two distinct crystalline forms.
Science 223(4633):283–285
Benjamin Y, Görgens JF (2015) Improving sugar conversion and bioethanol yield through transgenic sugarcane clone in South Africa. Int J Environ Bioenergy 10(1, October):9–25
Benjamin Y, Cheng H, Görgens JF (2013) Evaluation of bagasse from different varieties of
sugarcane by dilute acid pretreatment and enzymatic hydrolysis. Ind Crops Prod Elsevier
B.V. 51:7–18. https://doi.org/10.1016/j.indcrop.2013.08.067
Bezerra TL, Ragauskas AJ (2016) A review of sugarcane bagasse for second-generation bioethanol
and biopower production. Biofuels Bioprod Biorefin 10(5):634–647
Bhagwat S, Ratnaparkhe S, Kumar A (2015) Biomass pre-treatment methods and their economic
viability for efficient production of biofuel. Br Biotechnol J 8:1–17. https://doi.org/10.9734/
BBJ/2015/18284
Bhattacharya AS, Bhattacharya A, Pletschke BI (2015) Synergism of fungal and bacterial cellulases
and hemicellulases: a novel perspective for enhanced bio-ethanol production. Biotechnol Lett
37:1117–1129. https://doi.org/10.1007/s10529-015-1779-3
Bian J, Peng F, Peng XP, Xiao X, Peng P, Xu F, Sun RC (2014) Effect of [Emim] ac pretreatment
on the structure and enzymatic hydrolysis of sugarcane bagasse cellulose. Carbohydr Polym
100:211–217
BNDES, National Development Bank (2011) Perspectivas do setor de biomassa de madeira para a
geração de energia. https://web.bndes.gov.br/bib/jspui/bitstream/1408/2523/1/A%20BS%
2033%20Perspectivas%20do%20setor%20de%20biomassa%20de%20madeira%20para%20a
%20gera%C3%A7%C3%A3o%20de%20energia_P.pdf. Accessed 8 Jan 2019.
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e perspectivas. https://web.bndes.gov.br/bib/jspui/bitstream/1408/15384/1/BS47__Biogas__
FECHADO.pdf. Accessed 29 Jan 2019.
Brazilian Ministry of Mines and Energy (2017) Impactos da participação do biogas e do biometano
na matriz brasileira. http://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/
PublicacoesArquivos/publicacao-244/topico-257/EPE_IV%20FORUM%20BIOGAS_JOSE%
20MAURO_2017_1710.pdf. Accessed 10 Jan 2019.
Brienzo M, Siqueira AF, Milagres AMF (2009) Search for optimum conditions of sugarcane
bagasse hemicellulose extraction. Biochem Eng J 46(2):199–204
Brienzo M, Carvalho W, Milagres AM (2010) Xylooligosaccharides production from alkalipretreated sugarcane bagasse using xylanases from Thermoascus aurantiacus. Appl Biochem
Biotechnol 162(4):1195–1205
Brienzo M, Ferreira S, Vicentim MP, de Souza W, Sant’Anna C (2014) Comparison study on the
biomass recalcitrance of different tissue fractions of sugarcane culm. Bioenergy Res 7(4):1454–
1465
Brienzo M, Fikizolo S, Benjamin Y, Tyhoda L, Görgens J (2017) Influence of pretreatment severity
on structural changes, lignin content and enzymatic hydrolysis of sugarcane bagasse samples.
Renew Energy 104:271–280
Brillouet JM, Joseleau JP (1987) Investigation of the structure of a heteroxylan from the outer
pericarp (beeswing bran) of wheat kernel. Carbohydr Res 159(1):109–126
Brosse N, El Hage R, Chaouch M, Pétrissans M, Dumarçay S, Gérardin P (2010) Investigation of
the chemical modifications of beech wood lignin during heat treatment. Polym Degrad Stab 95
(9):1721–1726
Burton RA, Fincher GB (2014) Plant cell wall engineering: applications in biofuel production and
improved human health. Curr Opin Biotechnol 26:79–84
Campos BB (2015) Produção de etanol em biomassa de capim-elefante por Kluyveromyces
marxianus CCT 7735. Dissertation, Federal University of Viçosa
58
F. L. Shimizu et al.
waste using steam explosion followed by water and acetone extractions. Waste Biomass Valoriz
9:2423–2432. https://doi.org/10.1007/s12649-017-0157-x
Asumadu-Sarkodie S, Owusu PA (2016) Feasibility of biomass heating system in Middle East
Technical University, Northern Cyprus Campus. Cogent Eng 3(1):1134304
Atalla RH, Vanderhart DL (1984) Native cellulose: a composite of two distinct crystalline forms.
Science 223(4633):283–285
Benjamin Y, Görgens JF (2015) Improving sugar conversion and bioethanol yield through transgenic sugarcane clone in South Africa. Int J Environ Bioenergy 10(1, October):9–25
Benjamin Y, Cheng H, Görgens JF (2013) Evaluation of bagasse from different varieties of
sugarcane by dilute acid pretreatment and enzymatic hydrolysis. Ind Crops Prod Elsevier
B.V. 51:7–18. https://doi.org/10.1016/j.indcrop.2013.08.067
Bezerra TL, Ragauskas AJ (2016) A review of sugarcane bagasse for second-generation bioethanol
and biopower production. Biofuels Bioprod Biorefin 10(5):634–647
Bhagwat S, Ratnaparkhe S, Kumar A (2015) Biomass pre-treatment methods and their economic
viability for efficient production of biofuel. Br Biotechnol J 8:1–17. https://doi.org/10.9734/
BBJ/2015/18284
Bhattacharya AS, Bhattacharya A, Pletschke BI (2015) Synergism of fungal and bacterial cellulases
and hemicellulases: a novel perspective for enhanced bio-ethanol production. Biotechnol Lett
37:1117–1129. https://doi.org/10.1007/s10529-015-1779-3
Bian J, Peng F, Peng XP, Xiao X, Peng P, Xu F, Sun RC (2014) Effect of [Emim] ac pretreatment
on the structure and enzymatic hydrolysis of sugarcane bagasse cellulose. Carbohydr Polym
100:211–217
BNDES, National Development Bank (2011) Perspectivas do setor de biomassa de madeira para a
geração de energia. https://web.bndes.gov.br/bib/jspui/bitstream/1408/2523/1/A%20BS%
2033%20Perspectivas%20do%20setor%20de%20biomassa%20de%20madeira%20para%20a
%20gera%C3%A7%C3%A3o%20de%20energia_P.pdf. Accessed 8 Jan 2019.
BNDES, National Development Bank (2018) Biogás de resíduos agroindustriais: panorama
e perspectivas. https://web.bndes.gov.br/bib/jspui/bitstream/1408/15384/1/BS47__Biogas__
FECHADO.pdf. Accessed 29 Jan 2019.
Brazilian Ministry of Mines and Energy (2017) Impactos da participação do biogas e do biometano
na matriz brasileira. http://www.epe.gov.br/sites-pt/publicacoes-dados-abertos/publicacoes/
PublicacoesArquivos/publicacao-244/topico-257/EPE_IV%20FORUM%20BIOGAS_JOSE%
20MAURO_2017_1710.pdf. Accessed 10 Jan 2019.
Brienzo M, Siqueira AF, Milagres AMF (2009) Search for optimum conditions of sugarcane
bagasse hemicellulose extraction. Biochem Eng J 46(2):199–204
Brienzo M, Carvalho W, Milagres AM (2010) Xylooligosaccharides production from alkalipretreated sugarcane bagasse using xylanases from Thermoascus aurantiacus. Appl Biochem
Biotechnol 162(4):1195–1205
Brienzo M, Ferreira S, Vicentim MP, de Souza W, Sant’Anna C (2014) Comparison study on the
biomass recalcitrance of different tissue fractions of sugarcane culm. Bioenergy Res 7(4):1454–
1465
Brienzo M, Fikizolo S, Benjamin Y, Tyhoda L, Görgens J (2017) Influence of pretreatment severity
on structural changes, lignin content and enzymatic hydrolysis of sugarcane bagasse samples.
Renew Energy 104:271–280
Brillouet JM, Joseleau JP (1987) Investigation of the structure of a heteroxylan from the outer
pericarp (beeswing bran) of wheat kernel. Carbohydr Res 159(1):109–126
Brosse N, El Hage R, Chaouch M, Pétrissans M, Dumarçay S, Gérardin P (2010) Investigation of
the chemical modifications of beech wood lignin during heat treatment. Polym Degrad Stab 95
(9):1721–1726
Burton RA, Fincher GB (2014) Plant cell wall engineering: applications in biofuel production and
improved human health. Curr Opin Biotechnol 26:79–84
Campos BB (2015) Produção de etanol em biomassa de capim-elefante por Kluyveromyces
marxianus CCT 7735. Dissertation, Federal University of Viçosa
58
F. L. Shimizu et al.
