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2017 | OriginalPaper | Buchkapitel

2. General Considerations on the Use of Lignocellulosic Residues

verfasst von : Pratima Bajpai

Erschienen in: Single Cell Protein Production from Lignocellulosic Biomass

Verlag: Springer Singapore

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Abstract

Single-cell protein from lignocellulose biomass presents forthcoming technology aimed at providing protein supplement for both animal feed and human food. Lignocellulosic biomass does not compete with feedstocks used for human food and presents a readily available feedstock for microbial bioconversion. General considerations on the use of lignocellulosic residues are presented in this chapter.

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Literatur
Zurück zum Zitat Aristidou A, Penttilä M (2000) Metabolic engineering applications to renewable resource utilization. Curr Opin Biotechnol 11:187–198CrossRef Aristidou A, Penttilä M (2000) Metabolic engineering applications to renewable resource utilization. Curr Opin Biotechnol 11:187–198CrossRef
Zurück zum Zitat Bhalla TC, Joshi M (1994) Protein enrichment of apple pomace by coculture of cellulolytic moulds and yeasts. World J Microbiol Biotechnol 10:116–117CrossRef Bhalla TC, Joshi M (1994) Protein enrichment of apple pomace by coculture of cellulolytic moulds and yeasts. World J Microbiol Biotechnol 10:116–117CrossRef
Zurück zum Zitat Blanco P, Sieiro C, Villa TG (1999) Production of pectic enzymes in yeasts. FEMS Microbiol Lett 175:1–9CrossRef Blanco P, Sieiro C, Villa TG (1999) Production of pectic enzymes in yeasts. FEMS Microbiol Lett 175:1–9CrossRef
Zurück zum Zitat Desvaux M (2005) Clostridium cellulolyticum: model organism of mesophilic cellulolytic clostridia. FEMS Microbiol Rev 29:741–764 Desvaux M (2005) Clostridium cellulolyticum: model organism of mesophilic cellulolytic clostridia. FEMS Microbiol Rev 29:741–764
Zurück zum Zitat Fengel D, Wegener G (1984) Wood chemistry, ultrastructure, reactions. Berlin, New York Fengel D, Wegener G (1984) Wood chemistry, ultrastructure, reactions. Berlin, New York
Zurück zum Zitat Gabriel A, Victor N, du Preez James C (2014) Cactus pear biomass, a potential lignocellulose raw material for single cell protein production (SCP): a review. Int J Curr Microbiol App Sci 3(7):171–197 Gabriel A, Victor N, du Preez James C (2014) Cactus pear biomass, a potential lignocellulose raw material for single cell protein production (SCP): a review. Int J Curr Microbiol App Sci 3(7):171–197
Zurück zum Zitat Gilles A (2015). Personal communication Gilles A (2015). Personal communication
Zurück zum Zitat Hahn-Hägerdal B, Lindén T, Senac T, Skoog K (1991) Ethanolic fermentation of pentoses in lignocellulosic hydrolysates. Appl Biochem Biotechnol 28(29):131–144CrossRef Hahn-Hägerdal B, Lindén T, Senac T, Skoog K (1991) Ethanolic fermentation of pentoses in lignocellulosic hydrolysates. Appl Biochem Biotechnol 28(29):131–144CrossRef
Zurück zum Zitat Howard RL, Abotsi E, Jansen van Rensburg EL, Howard S (2003) Lignocellulose biotechnology: issues of bioconversion and enzyme production. Afr J Biotechnol 2:602–619CrossRef Howard RL, Abotsi E, Jansen van Rensburg EL, Howard S (2003) Lignocellulose biotechnology: issues of bioconversion and enzyme production. Afr J Biotechnol 2:602–619CrossRef
Zurück zum Zitat Hahn-Hägerdal B, Karhumaa K, Fonseca C, Spencer-Martins I, Gorwa- Grauslund MF (2007) Towards industrial pentose-fermenting yeast strains. Appl Microbiol Biotechnol 74:937–953CrossRef Hahn-Hägerdal B, Karhumaa K, Fonseca C, Spencer-Martins I, Gorwa- Grauslund MF (2007) Towards industrial pentose-fermenting yeast strains. Appl Microbiol Biotechnol 74:937–953CrossRef
Zurück zum Zitat Hendricks AT, Zeeman G (2009) Pretreatments to enhance the digestibility of lignocellulosic biomass. Bioresour Technol 100:10–18CrossRef Hendricks AT, Zeeman G (2009) Pretreatments to enhance the digestibility of lignocellulosic biomass. Bioresour Technol 100:10–18CrossRef
Zurück zum Zitat John F, Monsalve G, Medina PIV, Ruiz CAA (2006) Ethanol production of banana shell and cassava starch. Dyna Universidad Nacional de Colombia 2006(73):21–27 John F, Monsalve G, Medina PIV, Ruiz CAA (2006) Ethanol production of banana shell and cassava starch. Dyna Universidad Nacional de Colombia 2006(73):21–27
Zurück zum Zitat Kumar P, Barret DM, Delwiche MJ, Stroeve P (2009) Methods for pretreatment of lignocellulosic biomass for efficient hydrolysis and biofuel production. Ind Eng Chem Res 48:3713–3729CrossRef Kumar P, Barret DM, Delwiche MJ, Stroeve P (2009) Methods for pretreatment of lignocellulosic biomass for efficient hydrolysis and biofuel production. Ind Eng Chem Res 48:3713–3729CrossRef
Zurück zum Zitat Laureano-Perez L, Teymouri F, Alizadeh H, Dale BE (2005) Understanding factors that limit enzymatic hydrolysis of biomass: characterization of pretreated corn stover. Appl Biochem Biotechnol 121–124:1081–1099CrossRef Laureano-Perez L, Teymouri F, Alizadeh H, Dale BE (2005) Understanding factors that limit enzymatic hydrolysis of biomass: characterization of pretreated corn stover. Appl Biochem Biotechnol 121–124:1081–1099CrossRef
Zurück zum Zitat Malherbe S, Cloete TE (2002) Lignocellulose biodegradation: fundamentals and applications. Re/Views Environ Sci Bio/Technol 1:105–114CrossRef Malherbe S, Cloete TE (2002) Lignocellulose biodegradation: fundamentals and applications. Re/Views Environ Sci Bio/Technol 1:105–114CrossRef
Zurück zum Zitat McKendry P (2002) Energy production from biomass: overview of biomass. Bioresour Technol 2002(83):37–43CrossRef McKendry P (2002) Energy production from biomass: overview of biomass. Bioresour Technol 2002(83):37–43CrossRef
Zurück zum Zitat Pandey A, Soccol CR, Nigam P, Soccol VT (2000) Biotechnological potential of agro-industrial residues I: sugarcane bagasse. Bioresour Technol 74:69–80CrossRef Pandey A, Soccol CR, Nigam P, Soccol VT (2000) Biotechnological potential of agro-industrial residues I: sugarcane bagasse. Bioresour Technol 74:69–80CrossRef
Zurück zum Zitat Prassad S, Singh A, Joshi HC (2007) Ethanol as an alternative fuel from agricultural, industrial and urban residues. Resour Conserv Recycl 50:1–39CrossRef Prassad S, Singh A, Joshi HC (2007) Ethanol as an alternative fuel from agricultural, industrial and urban residues. Resour Conserv Recycl 50:1–39CrossRef
Zurück zum Zitat Reguant J, Rinaudo M (2000) Fibres Lignocellulosiques. En Iniciation á la Chimie et á la Physico-Chimie Macromoleculares. Les polymères naturels: Structure, modifications, applications. Groupe Français d’études et d’applications des polymères, France, p 13 Reguant J, Rinaudo M (2000) Fibres Lignocellulosiques. En Iniciation á la Chimie et á la Physico-Chimie Macromoleculares. Les polymères naturels: Structure, modifications, applications. Groupe Français d’études et d’applications des polymères, France, p 13
Zurück zum Zitat Robinson T, Nigam P (2003) Bioreactor design for protein enrichment of agricultural residues by solid state fermentation. Biochem Eng J 13:197–203CrossRef Robinson T, Nigam P (2003) Bioreactor design for protein enrichment of agricultural residues by solid state fermentation. Biochem Eng J 13:197–203CrossRef
Zurück zum Zitat Rajoka MI, Khan SH, Jabbar MA, Awan MS, Hashmi AS (2006) Kinetics of batch single cell protein production from rice polishings with Candida utilis in continuously aerated tank reactors. Bioresour Technol 97:1934–1941 Rajoka MI, Khan SH, Jabbar MA, Awan MS, Hashmi AS (2006) Kinetics of batch single cell protein production from rice polishings with Candida utilis in continuously aerated tank reactors. Bioresour Technol 97:1934–1941
Zurück zum Zitat Singh A, Abidi AB, Darmwal NS, Agrawal AK (1988) Evaluation of chemical pre-treatment for biodegradation of agricultural lignocellulosic wastes by Aspergillus niger. MIRCEN J Appl Microb 4:473–479 Singh A, Abidi AB, Darmwal NS, Agrawal AK (1988) Evaluation of chemical pre-treatment for biodegradation of agricultural lignocellulosic wastes by Aspergillus niger. MIRCEN J Appl Microb 4:473–479
Zurück zum Zitat Stewart D, Azzini A, Hall A, Morrison I (1997) Sisal fibers and their constituent non-cellulosic polymers. Ind Crops Prod 6:17–26CrossRef Stewart D, Azzini A, Hall A, Morrison I (1997) Sisal fibers and their constituent non-cellulosic polymers. Ind Crops Prod 6:17–26CrossRef
Zurück zum Zitat Tengerdy RP, Szakacs G (2003) Bioconversion of lignocellulose in solid substrate fermentation. Biochem Eng J 13:169–179CrossRef Tengerdy RP, Szakacs G (2003) Bioconversion of lignocellulose in solid substrate fermentation. Biochem Eng J 13:169–179CrossRef
Zurück zum Zitat Villa Bôas SG, Esposito E, de Mendonça MM (2002) Novel lignocellulolytic ability of Candida utilis during solid substrate cultivation on apple pomace. World J Microbiol Biotechnol 18:541–545 Villa Bôas SG, Esposito E, de Mendonça MM (2002) Novel lignocellulolytic ability of Candida utilis during solid substrate cultivation on apple pomace. World J Microbiol Biotechnol 18:541–545
Zurück zum Zitat van Maris AJ, Abbott DA, Bellissimi E, van den Brink J, Kuyper M, Luttik MAH, Wisselink HW, Scheffers WA, van Dijken JP, Pronk JT (2006) Alcoholic fermentation of carbon sources in biomass hydrolysates by Saccharomyces cerevisiae: current status. Antonie Van Leeuwenhoek 90:391–418 van Maris AJ, Abbott DA, Bellissimi E, van den Brink J, Kuyper M, Luttik MAH, Wisselink HW, Scheffers WA, van Dijken JP, Pronk JT (2006) Alcoholic fermentation of carbon sources in biomass hydrolysates by Saccharomyces cerevisiae: current status. Antonie Van Leeuwenhoek 90:391–418
Zurück zum Zitat Yakoub Khan M, Umar Dahot M, Yousuf Khan M (1992) Single cell protein production by Penicillium javanicum from pretreated rice husk. J Islamic Acad Sci 5:39–43 Yakoub Khan M, Umar Dahot M, Yousuf Khan M (1992) Single cell protein production by Penicillium javanicum from pretreated rice husk. J Islamic Acad Sci 5:39–43
Zurück zum Zitat Zadražil F, Reiniger P (1988) Treatment of Lignocellulosics with White-rot Fungi. UK, Elsevier, Essex, p 117 Zadražil F, Reiniger P (1988) Treatment of Lignocellulosics with White-rot Fungi. UK, Elsevier, Essex, p 117
Zurück zum Zitat Zhang Y, Lin SM, Zhu YJ, Liu CJ, Dong Y, Li FF, Wu GF, Wang HY, Zhang JH (2006) Protoplast fusion between Geotrichum candidium and Phanerochaete chrysosporium to produce fusants for corn stover fermentation. Biotechnol Lett 28:1351–1359CrossRef Zhang Y, Lin SM, Zhu YJ, Liu CJ, Dong Y, Li FF, Wu GF, Wang HY, Zhang JH (2006) Protoplast fusion between Geotrichum candidium and Phanerochaete chrysosporium to produce fusants for corn stover fermentation. Biotechnol Lett 28:1351–1359CrossRef
Metadaten
Titel
General Considerations on the Use of Lignocellulosic Residues
verfasst von
Pratima Bajpai
Copyright-Jahr
2017
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-5873-8_2