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2015 | OriginalPaper | Buchkapitel

39. Analytical Methods for Lignocellulosic Biomass Structural Polysaccharides

verfasst von : Jason S. Lupoi

Erschienen in: Polysaccharides

Verlag: Springer International Publishing

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Abstract

The use of lignocellulosic biomass has been postulated as a potential pathway toward diminishing global dependence on nonrenewable sources of chemicals and fuels. Before a specific feedstock can be selected for biochemical conversion into biofuels and bio-based chemicals, it must first be characterized to evaluate the chemical composition of the cell walls. Polysaccharides, specifically cellulose and hemicellulose, are often the focal point of these appraisals, since these constituents are the dominant substrates converted into monomeric sugars like glucose and xylose. These monosaccharides can be transformed, using microorganisms like yeast, into substances such as ethanol. Plant species containing abundant polysaccharides are highly desirable, as higher quantities of sugars should translate into larger end-product yields. Given the vast pool of potential feedstocks, qualitative and quantitative analytical methods are needed to assess cell wall polysaccharides. Many of these tools, such as wet chemical and chromatographic techniques, have been ubiquitously used for some time. Shortcomings in these analyses, however, prevent their usage in screening large sample sets for quintessential, high-yield, fuel-producing traits. This chapter briefly summarizes how analytical spectroscopy can lessen some of these limitations and how it has been utilized for polysaccharide analysis.

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Literatur
Zurück zum Zitat Abu-Lail NI, Camesano TA (2003) Polysaccharide properties probed with atomic force microscopy. J Microsc (Oxford UK) 212(3):217–238 Abu-Lail NI, Camesano TA (2003) Polysaccharide properties probed with atomic force microscopy. J Microsc (Oxford UK) 212(3):217–238
Zurück zum Zitat Agarwal UP (1999) An overview of Raman spectroscopy as applied to lignocellulosic materials. Adv Lignocellul Charact 201–225 Agarwal UP (1999) An overview of Raman spectroscopy as applied to lignocellulosic materials. Adv Lignocellul Charact 201–225
Zurück zum Zitat Agarwal UP (2006) Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lignin and cellulose in black spruce wood (Picea mariana). Planta 224(5):1141–1153 Agarwal UP (2006) Raman imaging to investigate ultrastructure and composition of plant cell walls: distribution of lignin and cellulose in black spruce wood (Picea mariana). Planta 224(5):1141–1153
Zurück zum Zitat Agarwal UP (2008) Raman Spectroscopic Characterization of Wood and Pulp Fibers. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 17–35 doi: 10.1002/9781444305425 Agarwal UP (2008) Raman Spectroscopic Characterization of Wood and Pulp Fibers. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 17–35 doi: 10.1002/9781444305425
Zurück zum Zitat Agarwal UP, Atalla Rajai H (2010) Vibrational spectroscopy. In: Heitner C, Dimmel DR, Schmidt JA (eds) Lignin and lignans: advances in chemistry. CRC Press, Boca Raton, pp 103–136 Agarwal UP, Atalla Rajai H (2010) Vibrational spectroscopy. In: Heitner C, Dimmel DR, Schmidt JA (eds) Lignin and lignans: advances in chemistry. CRC Press, Boca Raton, pp 103–136
Zurück zum Zitat Agarwal UP et al (2013) Estimation of cellulose crystallinity of lignocelluloses using near-IR FT-Raman spectroscopy and comparison of the Raman and Segal-WAXS methods. J Agric Food Chem 61(1):103–113 Agarwal UP et al (2013) Estimation of cellulose crystallinity of lignocelluloses using near-IR FT-Raman spectroscopy and comparison of the Raman and Segal-WAXS methods. J Agric Food Chem 61(1):103–113
Zurück zum Zitat Agarwal UP et al (2010) Cellulose I crystallinity determination using FT-Raman spectroscopy: univariate and multivariate methods. Cellulose (Dordrecht Neth) 17(4):721–733 Agarwal UP et al (2010) Cellulose I crystallinity determination using FT-Raman spectroscopy: univariate and multivariate methods. Cellulose (Dordrecht Neth) 17(4):721–733
Zurück zum Zitat Akerholm M et al (2004) Characterization of the crystalline structure of cellulose using static and dynamic FT-IR spectroscopy. Carbohydr Res 339(3):569–578 Akerholm M et al (2004) Characterization of the crystalline structure of cellulose using static and dynamic FT-IR spectroscopy. Carbohydr Res 339(3):569–578
Zurück zum Zitat Ali M et al (2001) Spectroscopic studies of the aging of cellulosic paper. Polymer 42(7):2893–2900 Ali M et al (2001) Spectroscopic studies of the aging of cellulosic paper. Polymer 42(7):2893–2900
Zurück zum Zitat Alves EF et al (2010) Carbohydrate composition of eucalyptus, bagasse and bamboo by a combination of methods. Carbohydr Polym 82(4):1097–1101 Alves EF et al (2010) Carbohydrate composition of eucalyptus, bagasse and bamboo by a combination of methods. Carbohydr Polym 82(4):1097–1101
Zurück zum Zitat Atalla RH et al (1980) Carbon-13 NMR spectra of cellulose polymorphs. J Am Chem Soc 102(9):3249–3251 Atalla RH et al (1980) Carbon-13 NMR spectra of cellulose polymorphs. J Am Chem Soc 102(9):3249–3251
Zurück zum Zitat Atalla RH, Isogai A (2005) Recent developments in spectroscopic and chemical characterization of cellulose. Polysaccharides : structural diversity and functional versatility. New York : Marcel Dekker, pp 123–157 Atalla RH, Isogai A (2005) Recent developments in spectroscopic and chemical characterization of cellulose. Polysaccharides : structural diversity and functional versatility. New York : Marcel Dekker, pp 123–157
Zurück zum Zitat Atalla RH, VanderHart DL (1999) The role of solid-state carbon-13 NMR spectroscopy in studies of the nature of native celluloses. Solid State Nucl Magn Reson 15(1):1–19 Atalla RH, VanderHart DL (1999) The role of solid-state carbon-13 NMR spectroscopy in studies of the nature of native celluloses. Solid State Nucl Magn Reson 15(1):1–19
Zurück zum Zitat Balakshin MY et al (2008) Recent advances in the isolation and analysis of lignins and lignin-carbohydrate complexes. Charact Lignocellul Mater 148–170 Balakshin MY et al (2008) Recent advances in the isolation and analysis of lignins and lignin-carbohydrate complexes. Charact Lignocellul Mater 148–170
Zurück zum Zitat Barton FE II, Himmelsbach DS (1993) Two-dimensional vibrational spectroscopy II: correlation of the absorptions of lignins in the mid- and near-infrared. Appl Spectrosc 47(11):1920–1925 Barton FE II, Himmelsbach DS (1993) Two-dimensional vibrational spectroscopy II: correlation of the absorptions of lignins in the mid- and near-infrared. Appl Spectrosc 47(11):1920–1925
Zurück zum Zitat Bassett KH et al (1963) Infrared spectrum of crystalline polysaccharides. IX. Near infrared spectrum of cellulose. J Polym Sci A Polym Chem 1:1687–1692 Bassett KH et al (1963) Infrared spectrum of crystalline polysaccharides. IX. Near infrared spectrum of cellulose. J Polym Sci A Polym Chem 1:1687–1692
Zurück zum Zitat Beecher JF et al (2009) Tools for the Characterization of Biomass at the Nanometer Scale. In: Lucia LA, Rojas OJ (eds) The Nanoscience and Technology of Renewable Biomaterials, John Wiley & Sons, Ltd, Chichester, UK, pp 61–90 doi: 10.1002/9781444307474 Beecher JF et al (2009) Tools for the Characterization of Biomass at the Nanometer Scale. In: Lucia LA, Rojas OJ (eds) The Nanoscience and Technology of Renewable Biomaterials, John Wiley & Sons, Ltd, Chichester, UK, pp 61–90 doi: 10.1002/9781444307474
Zurück zum Zitat Bjarnestad S, Dahlman O (2002) Chemical compositions of hardwood and softwood pulps employing photoacoustic Fourier transform infrared spectroscopy in combination with partial least-squares analysis. Anal Chem 74(22):5851–5858 Bjarnestad S, Dahlman O (2002) Chemical compositions of hardwood and softwood pulps employing photoacoustic Fourier transform infrared spectroscopy in combination with partial least-squares analysis. Anal Chem 74(22):5851–5858
Zurück zum Zitat Bondar RJL, Mead DC (1974) Evaluation of glucose 6-phosphate dehydrogenase from Leuconostoc mesenteroides in the hexokinase method for determining glucose in serum. Clin Lab Sci (Winston-Salem NC) 20(5):586–590 Bondar RJL, Mead DC (1974) Evaluation of glucose 6-phosphate dehydrogenase from Leuconostoc mesenteroides in the hexokinase method for determining glucose in serum. Clin Lab Sci (Winston-Salem NC) 20(5):586–590
Zurück zum Zitat Brant DA (1999) Novel approaches to the analysis of polysaccharide structures. Curr Opin Struct Biol 9(5):556–562 Brant DA (1999) Novel approaches to the analysis of polysaccharide structures. Curr Opin Struct Biol 9(5):556–562
Zurück zum Zitat Brummer Y, Cui SW (2005) Understanding carbohydrate analysis. In: Cui SW (ed) Food Carbohydrates Chemistry, Physical Properties, and Applications. CRC Press, pp 67–104 Brummer Y, Cui SW (2005) Understanding carbohydrate analysis. In: Cui SW (ed) Food Carbohydrates Chemistry, Physical Properties, and Applications. CRC Press, pp 67–104
Zurück zum Zitat Cao S et al (2012) Chemical transformations of Populus trichocarpa during dilute acid pretreatment. RSC Advances 2:10925–10936 Cao S et al (2012) Chemical transformations of Populus trichocarpa during dilute acid pretreatment. RSC Advances 2:10925–10936
Zurück zum Zitat Carey PR (1982) Molecular biology: biochemical applications of Raman and resonance Raman spectroscopies. Academic Press, New York, NY Carey PR (1982) Molecular biology: biochemical applications of Raman and resonance Raman spectroscopies. Academic Press, New York, NY
Zurück zum Zitat Carrier M et al (2011) Thermogravimetric analysis as a new method to determine the lignocellulosic composition of biomass. Biomass Bioenergy 35(1):298–307 Carrier M et al (2011) Thermogravimetric analysis as a new method to determine the lignocellulosic composition of biomass. Biomass Bioenergy 35(1):298–307
Zurück zum Zitat Castellan A et al (2007) Studies on fluorescence of cellulosics. Holzforschung 61(5):504–508 Castellan A et al (2007) Studies on fluorescence of cellulosics. Holzforschung 61(5):504–508
Zurück zum Zitat Cetinkol OP et al (2010) Understanding the impact of ionic liquid pretreatment on eucalyptus. Biofuels 1(1):33–46 Cetinkol OP et al (2010) Understanding the impact of ionic liquid pretreatment on eucalyptus. Biofuels 1(1):33–46
Zurück zum Zitat Choi SM et al (2010) Applications of vibrational spectroscopy to the analysis of polysaccharide and hydrocolloid ingredients. Appl Vib Spectrosc Food Sci 2:577–592 Choi SM et al (2010) Applications of vibrational spectroscopy to the analysis of polysaccharide and hydrocolloid ingredients. Appl Vib Spectrosc Food Sci 2:577–592
Zurück zum Zitat Chundawat SPS et al (2008) High-throughput microplate technique for enzymatic hydrolysis of lignocellulosic biomass. Biotechnol Bioeng 99(6):1281–1294 Chundawat SPS et al (2008) High-throughput microplate technique for enzymatic hydrolysis of lignocellulosic biomass. Biotechnol Bioeng 99(6):1281–1294
Zurück zum Zitat Coimbra MA et al (2010) The potential of mid-infrared spectroscopy for monitoring changes in polysaccharides and other carbohydrates during processing. Appl Vib Spectrosc Food Sci 1:261–276 Coimbra MA et al (2010) The potential of mid-infrared spectroscopy for monitoring changes in polysaccharides and other carbohydrates during processing. Appl Vib Spectrosc Food Sci 1:261–276
Zurück zum Zitat Collings GF, Yokoyama MT (1979) Analysis of fiber components in feeds and forages using gas liquid chromatography. J Agric Food Chem 27(2):373–377 Collings GF, Yokoyama MT (1979) Analysis of fiber components in feeds and forages using gas liquid chromatography. J Agric Food Chem 27(2):373–377
Zurück zum Zitat Cozzani V et al (2008) A new method to determine the composition of biomass by thermogravimetric analysis. Can J Chem Eng 75(1):127–133 Cozzani V et al (2008) A new method to determine the composition of biomass by thermogravimetric analysis. Can J Chem Eng 75(1):127–133
Zurück zum Zitat Cui SW (2005) Structural analysis of polysaccharides. In: Cui SW (ed) Food carbohydrates. CRC Press, Boca Raton, pp 105–160 Cui SW (2005) Structural analysis of polysaccharides. In: Cui SW (ed) Food carbohydrates. CRC Press, Boca Raton, pp 105–160
Zurück zum Zitat Deutschmann R, Dekker RFH (2012) From plant biomass to bio-based chemicals: latest developments in xylan research. Biotechnol Adv 30(6):1627–1640 Deutschmann R, Dekker RFH (2012) From plant biomass to bio-based chemicals: latest developments in xylan research. Biotechnol Adv 30(6):1627–1640
Zurück zum Zitat Ding S-Y, Liu YS (2012) Imaging cellulose using atomic force microscopy. Methods Mol Biol (NY NY US) 908:23–30, Biomass Conversion Ding S-Y, Liu YS (2012) Imaging cellulose using atomic force microscopy. Methods Mol Biol (NY NY US) 908:23–30, Biomass Conversion
Zurück zum Zitat Du X et al (2013) Universal fractionation of lignin-carbohydrate complexes (LCCs) from lignocellulosic biomass: an example using spruce wood. Plant J 74(2):328–338 Du X et al (2013) Universal fractionation of lignin-carbohydrate complexes (LCCs) from lignocellulosic biomass: an example using spruce wood. Plant J 74(2):328–338
Zurück zum Zitat Du X et al (2014) Analysis of lignin-carbohydrate and lignin-lignin linkages after hydrolase treatment of xylan-lignin, glucomannan-lignin and glucan-lignin complexes from spruce wood. Planta Ahead of Print 239(5):1070–1090 Du X et al (2014) Analysis of lignin-carbohydrate and lignin-lignin linkages after hydrolase treatment of xylan-lignin, glucomannan-lignin and glucan-lignin complexes from spruce wood. Planta Ahead of Print 239(5):1070–1090
Zurück zum Zitat Dvorackova E et al (2014) Carbohydrate analysis: from sample preparation to HPLC on different stationary phases coupled with evaporative light-scattering detection. J Sep Sci 37(4):323–337 Dvorackova E et al (2014) Carbohydrate analysis: from sample preparation to HPLC on different stationary phases coupled with evaporative light-scattering detection. J Sep Sci 37(4):323–337
Zurück zum Zitat Edwards MC, Doran-Peterson J (2012) Pectin-rich biomass as feedstock for fuel ethanol production. Appl Microbiol Biotechnol 95(3):565–575 Edwards MC, Doran-Peterson J (2012) Pectin-rich biomass as feedstock for fuel ethanol production. Appl Microbiol Biotechnol 95(3):565–575
Zurück zum Zitat Ellis JW, Bath J (1940) Hydrogen bridging in cellulose as shown by infrared absorption spectra. J Am Chem Soc 62:2859–2861 Ellis JW, Bath J (1940) Hydrogen bridging in cellulose as shown by infrared absorption spectra. J Am Chem Soc 62:2859–2861
Zurück zum Zitat Eremeeva T (2003) Size-exclusion chromatography of enzymatically treated cellulose and related polysaccharides: a review. J Biochem Biophys Methods 56(1–3):253–264 Eremeeva T (2003) Size-exclusion chromatography of enzymatically treated cellulose and related polysaccharides: a review. J Biochem Biophys Methods 56(1–3):253–264
Zurück zum Zitat Fackler K, Schwanninger M (2010) Polysaccharide degradation and lignin modification during brown rot of spruce wood: a polarised Fourier transform near infrared study. J Near Infrared Spectrosc 18(6):403–416 Fackler K, Schwanninger M (2010) Polysaccharide degradation and lignin modification during brown rot of spruce wood: a polarised Fourier transform near infrared study. J Near Infrared Spectrosc 18(6):403–416
Zurück zum Zitat Fazilova SA et al (2011) Structural investigation of polysaccharides and nanocompositions based on them. Russ J Bioorg Chem 37(7):786–790 Fazilova SA et al (2011) Structural investigation of polysaccharides and nanocompositions based on them. Russ J Bioorg Chem 37(7):786–790
Zurück zum Zitat Fengel D, Wegener G (1979) Hydrolysis of polysaccharides with trifluoroacetic acid and its application to rapid wood and pulp analysis. Adv Chem Ser 181:145–158, Hydrolysis Cellul.: Mech. Enzym. Acid Catal Fengel D, Wegener G (1979) Hydrolysis of polysaccharides with trifluoroacetic acid and its application to rapid wood and pulp analysis. Adv Chem Ser 181:145–158, Hydrolysis Cellul.: Mech. Enzym. Acid Catal
Zurück zum Zitat Ferrier RJ et al (2002) NMR spectroscopy and conformational features. Carbohydr Chem 33:334–347 Ferrier RJ et al (2002) NMR spectroscopy and conformational features. Carbohydr Chem 33:334–347
Zurück zum Zitat Foston M, Ragauskas AJ (2010) Changes in lignocellulosic supramolecular and ultrastructure during dilute acid pretreatment of Populus and switchgrass. Biomass Bioenergy 24:5677–5685 Foston M, Ragauskas AJ (2010) Changes in lignocellulosic supramolecular and ultrastructure during dilute acid pretreatment of Populus and switchgrass. Biomass Bioenergy 24:5677–5685
Zurück zum Zitat Foston M, Ragauskas AJ (2012) Biomass characterization: recent progress in understanding biomass recalcitrance. Ind Biotechnol 8(4):191–208 Foston M, Ragauskas AJ (2012) Biomass characterization: recent progress in understanding biomass recalcitrance. Ind Biotechnol 8(4):191–208
Zurück zum Zitat Foston M et al (2012) 13C cell wall enrichment and ionic liquid NMR analysis: progress towards a high-throughput detailed chemical analysis of the whole plant cell wall. Analyst (Cambridge UK) 137(17):3904–3909 Foston M et al (2012) 13C cell wall enrichment and ionic liquid NMR analysis: progress towards a high-throughput detailed chemical analysis of the whole plant cell wall. Analyst (Cambridge UK) 137(17):3904–3909
Zurück zum Zitat Foyle T et al (2007) Compositional analysis of lignocellulosic materials: evaluation of methods used for sugar analysis of waste paper and straw. Bioresour Technol 98(16):3026–3036 Foyle T et al (2007) Compositional analysis of lignocellulosic materials: evaluation of methods used for sugar analysis of waste paper and straw. Bioresour Technol 98(16):3026–3036
Zurück zum Zitat Freda C et al (2012) Mathematical tool from corn stover TGA to determine its composition. Appl Biochem Biotechnol 167(8):2283–2294 Freda C et al (2012) Mathematical tool from corn stover TGA to determine its composition. Appl Biochem Biotechnol 167(8):2283–2294
Zurück zum Zitat Fujimoto T et al (2007) Estimation of wood stiffness and strength properties of hybrid larch by near-infrared spectroscopy. Appl Spectrosc 61(8):882–888 Fujimoto T et al (2007) Estimation of wood stiffness and strength properties of hybrid larch by near-infrared spectroscopy. Appl Spectrosc 61(8):882–888
Zurück zum Zitat Funami T (2010) Atomic force microscopy imaging of food polysaccharides in relation to rheological properties. Food Sci Technol Res 16(1):13–22 Funami T (2010) Atomic force microscopy imaging of food polysaccharides in relation to rheological properties. Food Sci Technol Res 16(1):13–22
Zurück zum Zitat Gamini A et al (2008) Use of capillary electrophoresis for polysaccharide studies and applications. Methods Mol Biol (Totowa NY US) 384:357–400, Capillary Electrophoresis Gamini A et al (2008) Use of capillary electrophoresis for polysaccharide studies and applications. Methods Mol Biol (Totowa NY US) 384:357–400, Capillary Electrophoresis
Zurück zum Zitat Gekko K (2013) Carbohydrate circular dichroism. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin Gekko K (2013) Carbohydrate circular dichroism. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin
Zurück zum Zitat Gillespie DT, Hammons HK (1999) Analysis of polysaccharides by SEC. ACS Symp Ser 731:288–310, Chromatography of Polymers Gillespie DT, Hammons HK (1999) Analysis of polysaccharides by SEC. ACS Symp Ser 731:288–310, Chromatography of Polymers
Zurück zum Zitat Gjersing E et al (2013) Rapid determination of sugar content in biomass hydrolysates using nuclear magnetic resonance spectroscopy. Biotechnol Bioeng 110(3):721–728 Gjersing E et al (2013) Rapid determination of sugar content in biomass hydrolysates using nuclear magnetic resonance spectroscopy. Biotechnol Bioeng 110(3):721–728
Zurück zum Zitat Goubet F et al (2002) Polysaccharide analysis using carbohydrate gel electrophoresis: a method to study plant cell wall polysaccharides and polysaccharide hydrolases. Anal Biochem 300(1):53–68 Goubet F et al (2002) Polysaccharide analysis using carbohydrate gel electrophoresis: a method to study plant cell wall polysaccharides and polysaccharide hydrolases. Anal Biochem 300(1):53–68
Zurück zum Zitat Hall M et al (2010) Cellulose crystallinity – a key predictor of the enzymatic hydrolysis rate. FEBS J 277(6):1571–1582 Hall M et al (2010) Cellulose crystallinity – a key predictor of the enzymatic hydrolysis rate. FEBS J 277(6):1571–1582
Zurück zum Zitat Hamad WY (2008) Studies of deformation processes in cellulosics using Raman microscopy. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 121–137 doi: 10.1002/9781444305425 Hamad WY (2008) Studies of deformation processes in cellulosics using Raman microscopy. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 121–137 doi: 10.1002/9781444305425
Zurück zum Zitat Hames BR (2009) Biomass compositional analysis for energy applications. Methods Mol Biol (Totowa NY US) 581:145–167, Biofuels Hames BR (2009) Biomass compositional analysis for energy applications. Methods Mol Biol (Totowa NY US) 581:145–167, Biofuels
Zurück zum Zitat Hames BR et al (2003) Rapid biomass analysis. New tools for compositional analysis of corn stover feedstocks and process intermediates from ethanol production. Appl Biochem Biotechnol 105–108:5–16 Hames BR et al (2003) Rapid biomass analysis. New tools for compositional analysis of corn stover feedstocks and process intermediates from ethanol production. Appl Biochem Biotechnol 105–108:5–16
Zurück zum Zitat Harris D et al (2010) Tools for cellulose analysis in plant cell walls. Plant Physiol 153(2):420–426 Harris D et al (2010) Tools for cellulose analysis in plant cell walls. Plant Physiol 153(2):420–426
Zurück zum Zitat Harris PJ et al (1984) An improved procedure for the methylation analysis of oligosaccharides and polysaccharides. Carbohydr Res 127(1):59–73 Harris PJ et al (1984) An improved procedure for the methylation analysis of oligosaccharides and polysaccharides. Carbohydr Res 127(1):59–73
Zurück zum Zitat Hatakeyama T, Hatakeyama H (2008) Lifetime prediction of cellulosics by thermal and mechanical analysis. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 138–147 doi: 10.1002/9781444305425 Hatakeyama T, Hatakeyama H (2008) Lifetime prediction of cellulosics by thermal and mechanical analysis. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 138–147 doi: 10.1002/9781444305425
Zurück zum Zitat Hausalo T (1995) Analysis of wood and pulp carbohydrates by anion exchange chromatography with pulsed amperometric detection. Int Symp Wood Pulping Chem 3:131–136, 8th Hausalo T (1995) Analysis of wood and pulp carbohydrates by anion exchange chromatography with pulsed amperometric detection. Int Symp Wood Pulping Chem 3:131–136, 8th
Zurück zum Zitat Hedenstroem M et al (2009) Identification of lignin and polysaccharide modifications in Populus wood by chemometric analysis of 2D NMR spectra from dissolved cell walls. Mol Plant 2(5):933–942 Hedenstroem M et al (2009) Identification of lignin and polysaccharide modifications in Populus wood by chemometric analysis of 2D NMR spectra from dissolved cell walls. Mol Plant 2(5):933–942
Zurück zum Zitat Hou S, Li L (2011) Rapid characterization of woody biomass digestibility and chemical composition using near-infrared spectroscopy. J Integr Plant Biol 53(2):166–175 Hou S, Li L (2011) Rapid characterization of woody biomass digestibility and chemical composition using near-infrared spectroscopy. J Integr Plant Biol 53(2):166–175
Zurück zum Zitat Hounsell E (2013) Techniques applied to glycan structure and conformation. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin Hounsell E (2013) Techniques applied to glycan structure and conformation. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin
Zurück zum Zitat International, A (2007) Standard test method for determination of carbohydrates in biomass by high performance liquid chromatography. ASTM International, West Conshohocken International, A (2007) Standard test method for determination of carbohydrates in biomass by high performance liquid chromatography. ASTM International, West Conshohocken
Zurück zum Zitat Isogai A, Yanagisawa M (2008) Integrated size-exclusion chromatography (SEC) analysis of cellulose and its derivatives. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 206–226 doi: 10.1002/9781444305425 Isogai A, Yanagisawa M (2008) Integrated size-exclusion chromatography (SEC) analysis of cellulose and its derivatives. In: Hu TQ (ed) Characterization of Lignocellulosic Materials, Blackwell Publishing Ltd., Oxford, UK, pp 206–226 doi: 10.1002/9781444305425
Zurück zum Zitat Jones RW et al (2002) Chemical analysis of wood chips in motion using thermal-emission mid-infrared spectroscopy with projection to latent structures regression. Anal Chem 74(2):453–457 Jones RW et al (2002) Chemical analysis of wood chips in motion using thermal-emission mid-infrared spectroscopy with projection to latent structures regression. Anal Chem 74(2):453–457
Zurück zum Zitat Kacurakova M et al (2000) FT-IR study of plant cell wall model compounds: pectic polysaccharides and hemicelluloses. Carbohydr Polym 43(2):195–203 Kacurakova M et al (2000) FT-IR study of plant cell wall model compounds: pectic polysaccharides and hemicelluloses. Carbohydr Polym 43(2):195–203
Zurück zum Zitat Kacurakova M, Wilson RH (2001) Developments in mid-infrared FT-IR spectroscopy of selected carbohydrates. Carbohydr Polym 44(4):291–303 Kacurakova M, Wilson RH (2001) Developments in mid-infrared FT-IR spectroscopy of selected carbohydrates. Carbohydr Polym 44(4):291–303
Zurück zum Zitat Kacurikova M et al (1998) Characterization of xylan-type polysaccharides and associated cell wall components by FT-IR and FT-Raman spectroscopies. Food Hydrocoll 13(1):35–41 Kacurikova M et al (1998) Characterization of xylan-type polysaccharides and associated cell wall components by FT-IR and FT-Raman spectroscopies. Food Hydrocoll 13(1):35–41
Zurück zum Zitat Kelley SS et al (2004) Rapid analysis of the chemical composition of agricultural fibers using near infrared spectroscopy and pyrolysis molecular beam mass spectrometry. Biomass Bioenergy 27(1):77–88 Kelley SS et al (2004) Rapid analysis of the chemical composition of agricultural fibers using near infrared spectroscopy and pyrolysis molecular beam mass spectrometry. Biomass Bioenergy 27(1):77–88
Zurück zum Zitat Kenton RC, Rubinovitz RL (1990) FT-Raman investigations of forest products. Appl Spectrosc 44(8):1377–1380 Kenton RC, Rubinovitz RL (1990) FT-Raman investigations of forest products. Appl Spectrosc 44(8):1377–1380
Zurück zum Zitat Kim SH et al (2013) Characterization of crystalline cellulose in biomass: basic principles, applications, and limitations of XRD, NMR, IR, Raman, and SFG. Korean J Chem Eng 30(12):2127–2141 Kim SH et al (2013) Characterization of crystalline cellulose in biomass: basic principles, applications, and limitations of XRD, NMR, IR, Raman, and SFG. Korean J Chem Eng 30(12):2127–2141
Zurück zum Zitat Kljun A et al (2011) Comparative analysis of crystallinity changes in cellulose I polymers using ATR-FTIR, X-ray diffraction, and carbohydrate-binding module probes. Biomacromolecules 12(11):4121–4126 Kljun A et al (2011) Comparative analysis of crystallinity changes in cellulose I polymers using ATR-FTIR, X-ray diffraction, and carbohydrate-binding module probes. Biomacromolecules 12(11):4121–4126
Zurück zum Zitat Li C et al (2011) Influence of physico-chemical changes on enzymatic digestibility of ionic liquid and AFEX pretreated corn stover. Bioresour Technol 102(13):6928–6936 Li C et al (2011) Influence of physico-chemical changes on enzymatic digestibility of ionic liquid and AFEX pretreated corn stover. Bioresour Technol 102(13):6928–6936
Zurück zum Zitat Li C et al (2010) Comparison of dilute acid and ionic liquid pretreatment of switchgrass: biomass recalcitrance, delignification and enzymatic saccharification. Bioresour Technol 101(13):4900–4906 Li C et al (2010) Comparison of dilute acid and ionic liquid pretreatment of switchgrass: biomass recalcitrance, delignification and enzymatic saccharification. Bioresour Technol 101(13):4900–4906
Zurück zum Zitat Li H et al (2012) Chemical composition and characterization of cellulose for Agave as a fast-growing, drought-tolerant biofuels feedstock. RSC Adv 2(11):4951–4958 Li H et al (2012) Chemical composition and characterization of cellulose for Agave as a fast-growing, drought-tolerant biofuels feedstock. RSC Adv 2(11):4951–4958
Zurück zum Zitat Li X et al (2013) Development and application of a high throughput carbohydrate profiling technique for analyzing plant cell wall polysaccharides and carbohydrate active enzymes. Biotechnol Biofuels 6:94 Li X et al (2013) Development and application of a high throughput carbohydrate profiling technique for analyzing plant cell wall polysaccharides and carbohydrate active enzymes. Biotechnol Biofuels 6:94
Zurück zum Zitat Liang CY, Marchessault RH (1959a) Infrared spectra of crystalline polysaccharides. I. Hydrogen bonds in native celluloses. J Polym Sci 37:385–395 Liang CY, Marchessault RH (1959a) Infrared spectra of crystalline polysaccharides. I. Hydrogen bonds in native celluloses. J Polym Sci 37:385–395
Zurück zum Zitat Liang CY, Marchessault RH (1959b) Infrared spectra of crystalline polysaccharides. II. Native celluloses in the region from 640 to 1700 cm.-1. J Polym Sci 39:269–278 Liang CY, Marchessault RH (1959b) Infrared spectra of crystalline polysaccharides. II. Native celluloses in the region from 640 to 1700 cm.-1. J Polym Sci 39:269–278
Zurück zum Zitat Liu L et al (2010) Variability of biomass chemical composition and rapid analysis using FT-NIR techniques. Carbohydr Polym 81(4):820–829 Liu L et al (2010) Variability of biomass chemical composition and rapid analysis using FT-NIR techniques. Carbohydr Polym 81(4):820–829
Zurück zum Zitat Liu YS et al (2009) Does the cellulose-binding module move on the cellulose surface? Cellulose (Dordrecht Neth) 16(4):587–597 Liu YS et al (2009) Does the cellulose-binding module move on the cellulose surface? Cellulose (Dordrecht Neth) 16(4):587–597
Zurück zum Zitat Lu F, Ralph J (1997) Derivatization followed by reductive cleavage (DFRC method), a new method for lignin analysis: protocol for analysis of DFRC monomers. J Agric Food Chem 45(7):2590–2592 Lu F, Ralph J (1997) Derivatization followed by reductive cleavage (DFRC method), a new method for lignin analysis: protocol for analysis of DFRC monomers. J Agric Food Chem 45(7):2590–2592
Zurück zum Zitat Lupoi JS et al (2013) Assessment of lignocellulosic biomass using analytical spectroscopy: an evolution to high-throughput techniques. Bioenerg Res 7:1–23 Lupoi JS et al (2013) Assessment of lignocellulosic biomass using analytical spectroscopy: an evolution to high-throughput techniques. Bioenerg Res 7:1–23
Zurück zum Zitat Lupoi et al. (2014) High-throughput prediction of eucalypt lignin syringyl/guaiacyl content using multivariate analysis: a comparison between mid-infrared, near-infrared, and Raman spectroscopies for model development, Biotechnology for Biofuels 7:93–106. Lupoi et al. (2014) High-throughput prediction of eucalypt lignin syringyl/guaiacyl content using multivariate analysis: a comparison between mid-infrared, near-infrared, and Raman spectroscopies for model development, Biotechnology for Biofuels 7:93–106.
Zurück zum Zitat Lupoi JS, Smith EA (2012) Characterization of woody and herbaceous biomasses lignin composition with 1064 nm dispersive multichannel Raman spectroscopy. Appl Spectrosc 66(8):903–910 Lupoi JS, Smith EA (2012) Characterization of woody and herbaceous biomasses lignin composition with 1064 nm dispersive multichannel Raman spectroscopy. Appl Spectrosc 66(8):903–910
Zurück zum Zitat Lygin AV et al (2011) Composition of cell wall phenolics and polysaccharides of the potential bioenergy crop – Miscanthus. GCB Bioenergy 3(4):333–345 Lygin AV et al (2011) Composition of cell wall phenolics and polysaccharides of the potential bioenergy crop – Miscanthus. GCB Bioenergy 3(4):333–345
Zurück zum Zitat Masuko T et al (2005) Carbohydrate analysis by a phenol-sulfuric acid method in microplate format. Anal Biochem 339(1):69–72 Masuko T et al (2005) Carbohydrate analysis by a phenol-sulfuric acid method in microplate format. Anal Biochem 339(1):69–72
Zurück zum Zitat Mathlouthi M, Koenig JL (1986) Vibrational spectra of carbohydrates. Adv Carbohydr Chem Biochem 44:7–89 Mathlouthi M, Koenig JL (1986) Vibrational spectra of carbohydrates. Adv Carbohydr Chem Biochem 44:7–89
Zurück zum Zitat Maunu SL (2002) NMR studies of wood and wood products. Prog Nucl Magn Reson Spectrosc 40(2):151–174 Maunu SL (2002) NMR studies of wood and wood products. Prog Nucl Magn Reson Spectrosc 40(2):151–174
Zurück zum Zitat Mazumder K et al (2012) Structural characterization of the heteroxylans from poplar and switchgrass. Methods Mol Biol (NY NY US) 908:215–228, Biomass Conversion Mazumder K et al (2012) Structural characterization of the heteroxylans from poplar and switchgrass. Methods Mol Biol (NY NY US) 908:215–228, Biomass Conversion
Zurück zum Zitat Meder R et al (1999) Rapid determination of the chemical composition and density of Pinus radiata by PLS modeling of transmission and diffuse reflectance FTIR spectra. Holzforschung 53(3):261–266 Meder R et al (1999) Rapid determination of the chemical composition and density of Pinus radiata by PLS modeling of transmission and diffuse reflectance FTIR spectra. Holzforschung 53(3):261–266
Zurück zum Zitat Meyer MW et al (2011) 1064 nm dispersive multichannel Raman spectroscopy for the analysis of plant lignin. Anal Chim Acta 706(1):164–170 Meyer MW et al (2011) 1064 nm dispersive multichannel Raman spectroscopy for the analysis of plant lignin. Anal Chim Acta 706(1):164–170
Zurück zum Zitat Michell AJ, Schimleck LR (1996) NIR spectroscopy of woods from Eucalyptus globulus. Appita J 49(1):23–26 Michell AJ, Schimleck LR (1996) NIR spectroscopy of woods from Eucalyptus globulus. Appita J 49(1):23–26
Zurück zum Zitat Miller GL (1959) Use of dinitrosalicylic acid reagent for determination of reducing sugar. Anal Chem 31(3):426–428 Miller GL (1959) Use of dinitrosalicylic acid reagent for determination of reducing sugar. Anal Chem 31(3):426–428
Zurück zum Zitat Miyagawa Y et al (2013) Fractionation and characterization of lignin-carbohydrate complexes (LCCs) of eucalyptus globulus in residues left after MWL isolation. Part II: analyses of xylan-lignin fraction (X-L). Holzforschung 67(6):629–642 Miyagawa Y et al (2013) Fractionation and characterization of lignin-carbohydrate complexes (LCCs) of eucalyptus globulus in residues left after MWL isolation. Part II: analyses of xylan-lignin fraction (X-L). Holzforschung 67(6):629–642
Zurück zum Zitat Mohnen D (2008) Pectin structure and biosynthesis. Curr Opin Plant Biol 11(3):266–277 Mohnen D (2008) Pectin structure and biosynthesis. Curr Opin Plant Biol 11(3):266–277
Zurück zum Zitat Moore AK, Owen NL (2001) Infrared spectroscopic studies of solid wood. Appl Spectrosc Rev 36(1):65–86 Moore AK, Owen NL (2001) Infrared spectroscopic studies of solid wood. Appl Spectrosc Rev 36(1):65–86
Zurück zum Zitat Nieto L, Jiménez-Barbero J (2013) Carbohydrate NMR spectroscopy. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin Nieto L, Jiménez-Barbero J (2013) Carbohydrate NMR spectroscopy. In: Roberts GCK (ed) Encyclopedia of biophysics. Springer, Berlin
Zurück zum Zitat Nikonenko NA et al (2000) Investigation of stretching vibrations of glycosidic linkages in disaccharides and polysaccharides with use of IR spectra deconvolution. Biopolymers 57(4):257–262 Nikonenko NA et al (2000) Investigation of stretching vibrations of glycosidic linkages in disaccharides and polysaccharides with use of IR spectra deconvolution. Biopolymers 57(4):257–262
Zurück zum Zitat Nkansah K, Dawson-Andoh B (2010) Rapid characterization of biomass using fluorescence spectroscopy coupled with multivariate data analysis. I. Yellow poplar (Liriodendron tulipifera L.). J Renew Sustain Energy 2(2):023103/023101-023103/023112 Nkansah K, Dawson-Andoh B (2010) Rapid characterization of biomass using fluorescence spectroscopy coupled with multivariate data analysis. I. Yellow poplar (Liriodendron tulipifera L.). J Renew Sustain Energy 2(2):023103/023101-023103/023112
Zurück zum Zitat Nkansah K, Dawson-Andoh B (2010) Rapid characterization of biomass using fluorescence spectroscopy coupled with multivariate data analysis. II. Northern red oak (Quercus rubra). J Renew Sustain Energy 2(4):043101/043101-043101/043110 Nkansah K, Dawson-Andoh B (2010) Rapid characterization of biomass using fluorescence spectroscopy coupled with multivariate data analysis. II. Northern red oak (Quercus rubra). J Renew Sustain Energy 2(4):043101/043101-043101/043110
Zurück zum Zitat O’Connor RT et al (1958) Application of infrared absorption spectroscopy to investigations of cotton and modified cottons. I. Physical and crystalline modifications and oxidation. Text Res J 28:382–392 O’Connor RT et al (1958) Application of infrared absorption spectroscopy to investigations of cotton and modified cottons. I. Physical and crystalline modifications and oxidation. Text Res J 28:382–392
Zurück zum Zitat Ona T et al (1997) Non-destructive determination of wood constituents by Fourier-transform Raman spectroscopy. J Wood Chem Technol 17(4):399–417 Ona T et al (1997) Non-destructive determination of wood constituents by Fourier-transform Raman spectroscopy. J Wood Chem Technol 17(4):399–417
Zurück zum Zitat Ona T et al (1998) Non-destructive determination of hemicellulosic neutral sugar composition in native wood by Fourier transform Raman spectroscopy. J Wood Chem Technol 18(1):27–41 Ona T et al (1998) Non-destructive determination of hemicellulosic neutral sugar composition in native wood by Fourier transform Raman spectroscopy. J Wood Chem Technol 18(1):27–41
Zurück zum Zitat Ona T et al (2003) A rapid quantitative method to assess eucalyptus wood properties for kraft pulp production by FT-Raman spectroscopy. J Pulp Pap Sci 29(1):6–10 Ona T et al (2003) A rapid quantitative method to assess eucalyptus wood properties for kraft pulp production by FT-Raman spectroscopy. J Pulp Pap Sci 29(1):6–10
Zurück zum Zitat Osborne BG, T Fearn (1986) Near infrared spectroscopy in food analysis Harlow, UK Longman Scientific and Technicall Osborne BG, T Fearn (1986) Near infrared spectroscopy in food analysis Harlow, UK Longman Scientific and Technicall
Zurück zum Zitat Osborne BG et al (1993) Practical NIR spectroscopy with applications in food and beverage analysis, 2nd edn. Harlow, Essex, England: New York: Longman Scientific and Technical, Wiley, Singapore Osborne BG et al (1993) Practical NIR spectroscopy with applications in food and beverage analysis, 2nd edn. Harlow, Essex, England: New York: Longman Scientific and Technical, Wiley, Singapore
Zurück zum Zitat Park S et al (2010) Cellulose crystallinity index: measurement techniques and their impact on interpreting cellulase performance. Biotechnol Biofuels 3:10–19 Park S et al (2010) Cellulose crystallinity index: measurement techniques and their impact on interpreting cellulase performance. Biotechnol Biofuels 3:10–19
Zurück zum Zitat Perlack RD, Stokes BJ (Leads) (2011) U.S. billion-ton update: biomass supply for a bioenergy and bioproducts industry. ORNL/TM-2011/224. U. S. Department of Energy, Oak Ridge National Laboratory, Oak Ridge, p 227 Perlack RD, Stokes BJ (Leads) (2011) U.S. billion-ton update: biomass supply for a bioenergy and bioproducts industry. ORNL/TM-2011/224. U. S. Department of Energy, Oak Ridge National Laboratory, Oak Ridge, p 227
Zurück zum Zitat Perlack RD, Wright LL, Turhollow AF, Graham RL, Stokes BJ, Erbach DC (2005) Biomass as a feedstock for a bioenergy and bioproducts industry: the technical feasibility of a billion-ton annual supply. Oak Ridge National Laboratory, Oak Ridge, DOE/GO-102005-2135 Perlack RD, Wright LL, Turhollow AF, Graham RL, Stokes BJ, Erbach DC (2005) Biomass as a feedstock for a bioenergy and bioproducts industry: the technical feasibility of a billion-ton annual supply. Oak Ridge National Laboratory, Oak Ridge, DOE/GO-102005-2135
Zurück zum Zitat Persson S et al (2011) Dissection of plant cell walls by high-throughput methods. Annu Rev Plant Biol 41:43–64, Plant Polysaccharides Persson S et al (2011) Dissection of plant cell walls by high-throughput methods. Annu Rev Plant Biol 41:43–64, Plant Polysaccharides
Zurück zum Zitat Pohling C et al (2014) Chemical imaging of lignocellulosic biomass by CARS microscopy. J Biophotonics 7(1–2):126–134 Pohling C et al (2014) Chemical imaging of lignocellulosic biomass by CARS microscopy. J Biophotonics 7(1–2):126–134
Zurück zum Zitat Poke FS, Raymond CA (2006) Predicting extractives, lignin, and cellulose contents using near infrared spectroscopy on solid wood in eucalyptus globulus. J Wood Chem Technol 26(2):187–199 Poke FS, Raymond CA (2006) Predicting extractives, lignin, and cellulose contents using near infrared spectroscopy on solid wood in eucalyptus globulus. J Wood Chem Technol 26(2):187–199
Zurück zum Zitat Ralet MC et al (2009) Mass spectrometry for pectin structure analysis. Carbohydr Res 344(14):1798–1807 Ralet MC et al (2009) Mass spectrometry for pectin structure analysis. Carbohydr Res 344(14):1798–1807
Zurück zum Zitat Reeves JB III (1997) Concatenation of near- and Mid-infrared spectra to improve calibrations for determining forage composition. J Agric Food Chem 45(5):1711–1714 Reeves JB III (1997) Concatenation of near- and Mid-infrared spectra to improve calibrations for determining forage composition. J Agric Food Chem 45(5):1711–1714
Zurück zum Zitat Reeves JB III (2012) Potential of near- and Mid-infrared spectroscopy in biofuel production. Commun Soil Sci Plant Anal 43(1–2):478–495 Reeves JB III (2012) Potential of near- and Mid-infrared spectroscopy in biofuel production. Commun Soil Sci Plant Anal 43(1–2):478–495
Zurück zum Zitat Rencoret J et al (2009) HSQC-NMR analysis of lignin in woody (Eucalyptus globulus and Picea abies) and non-woody (Agave sisalana) ball-milled plant materials at the gel state. Holzforschung 63(6):691–698 Rencoret J et al (2009) HSQC-NMR analysis of lignin in woody (Eucalyptus globulus and Picea abies) and non-woody (Agave sisalana) ball-milled plant materials at the gel state. Holzforschung 63(6):691–698
Zurück zum Zitat Rodrigues J et al (2001) Determination of monosaccharide composition of Eucalyptus globulus wood by FTIR spectroscopy. Holzforschung 55(3):265–269 Rodrigues J et al (2001) Determination of monosaccharide composition of Eucalyptus globulus wood by FTIR spectroscopy. Holzforschung 55(3):265–269
Zurück zum Zitat Rohrer JS (2003) High-performance anion-exchange chromatography with pulsed amperometric detection for the determination of oligosaccharides in foods and agricultural products. ACS Symp Ser 849:16–31, Oligosaccharides in Food and Agriculture Rohrer JS (2003) High-performance anion-exchange chromatography with pulsed amperometric detection for the determination of oligosaccharides in foods and agricultural products. ACS Symp Ser 849:16–31, Oligosaccharides in Food and Agriculture
Zurück zum Zitat Rohrer JS et al (2013) High-performance anion-exchange chromatography with pulsed amperometric detection for carbohydrate analysis of glycoproteins. Biochem Mosc 78(7):697–709 Rohrer JS et al (2013) High-performance anion-exchange chromatography with pulsed amperometric detection for carbohydrate analysis of glycoproteins. Biochem Mosc 78(7):697–709
Zurück zum Zitat Saar BG et al (2010) Label-free, real-time monitoring of biomass processing with stimulated Raman scattering microscopy. Angew Chem Int Ed 49(32):5476–5479, S5476/5471-S5476/5475 Saar BG et al (2010) Label-free, real-time monitoring of biomass processing with stimulated Raman scattering microscopy. Angew Chem Int Ed 49(32):5476–5479, S5476/5471-S5476/5475
Zurück zum Zitat Sarossy Z et al (2012) Carbohydrate analysis of hemicelluloses by gas chromatography-mass spectrometry of acetylated methyl glycosides. Anal Bioanal Chem 403(7):1923–1930 Sarossy Z et al (2012) Carbohydrate analysis of hemicelluloses by gas chromatography-mass spectrometry of acetylated methyl glycosides. Anal Bioanal Chem 403(7):1923–1930
Zurück zum Zitat Scheller HV, Ulvskov P (2010) Hemicelluloses. Annu Rev Plant Biol 61:263–289 Scheller HV, Ulvskov P (2010) Hemicelluloses. Annu Rev Plant Biol 61:263–289
Zurück zum Zitat Schenzel K et al (2009) Quantitative analysis of the transformation process of cellulose I → cellulose II using NIR FT Raman spectroscopy and chemometric methods. Cellulose (Dordrecht Neth) 16(3):407–415 Schenzel K et al (2009) Quantitative analysis of the transformation process of cellulose I → cellulose II using NIR FT Raman spectroscopy and chemometric methods. Cellulose (Dordrecht Neth) 16(3):407–415
Zurück zum Zitat Schenzel K, Fischer S (2001) NIR FT Raman spectroscopy – a rapid analytical tool for detecting the transformation of cellulose polymorphs. Cellulose (Dordrecht Neth) 8(1):49–57 Schenzel K, Fischer S (2001) NIR FT Raman spectroscopy – a rapid analytical tool for detecting the transformation of cellulose polymorphs. Cellulose (Dordrecht Neth) 8(1):49–57
Zurück zum Zitat Schenzel K et al (2005) New method for determining the degree of cellulose I crystallinity by means of FT Raman spectroscopy. Cellulose (Dordrecht Neth) 12(3):223–231 Schenzel K et al (2005) New method for determining the degree of cellulose I crystallinity by means of FT Raman spectroscopy. Cellulose (Dordrecht Neth) 12(3):223–231
Zurück zum Zitat Schmidt JA (2010) Electronic spectroscopy of lignins. In: Heitner C, Dimmel DR, Schmidt JA (eds) Lignin and lignans: advances in chemistry. CRC Press, Boca Raton, pp 49–102 Schmidt JA (2010) Electronic spectroscopy of lignins. In: Heitner C, Dimmel DR, Schmidt JA (eds) Lignin and lignans: advances in chemistry. CRC Press, Boca Raton, pp 49–102
Zurück zum Zitat Schwanninger M et al (2011) A review of band assignments in near infrared spectra of wood and wood components. J Near Infrared Spectrosc 19(5):287–308 Schwanninger M et al (2011) A review of band assignments in near infrared spectra of wood and wood components. J Near Infrared Spectrosc 19(5):287–308
Zurück zum Zitat Segal L et al (1959) An empirical method for estimating the degree of crystallinity of native cellulose using the x-ray diffractometer. Text Res J 29:786–794 Segal L et al (1959) An empirical method for estimating the degree of crystallinity of native cellulose using the x-ray diffractometer. Text Res J 29:786–794
Zurück zum Zitat Selig MJ et al (2011) High throughput determination of glucan and xylan fractions in lignocelluloses. Biotechnol Lett 33(5):961–967 Selig MJ et al (2011) High throughput determination of glucan and xylan fractions in lignocelluloses. Biotechnol Lett 33(5):961–967
Zurück zum Zitat Serapiglia MJ et al (2008) High-resolution thermogravimetric analysis for rapid characterization of biomass composition and selection of shrub willow varieties. Appl Biochem Biotechnol 145(1–3):3–11 Serapiglia MJ et al (2008) High-resolution thermogravimetric analysis for rapid characterization of biomass composition and selection of shrub willow varieties. Appl Biochem Biotechnol 145(1–3):3–11
Zurück zum Zitat Shenk JS et al (2008) Application of NIR spectroscopy to agricultural products. In: Burns DA, Ciurczak EW (eds) CRC Press, Boca Raton FL. Pract Spectrosc 35:347–386, Handbook of Near-Infrared Analysis (3rd Edition) Shenk JS et al (2008) Application of NIR spectroscopy to agricultural products. In: Burns DA, Ciurczak EW (eds) CRC Press, Boca Raton FL. Pract Spectrosc 35:347–386, Handbook of Near-Infrared Analysis (3rd Edition)
Zurück zum Zitat Shih C-J et al (2011) Raman spectroscopy measurements of glucose and xylose in hydrolysate: role of corn stover pretreatment and enzyme composition. Bioresour Technol 102(8):5169–5176 Shih C-J et al (2011) Raman spectroscopy measurements of glucose and xylose in hydrolysate: role of corn stover pretreatment and enzyme composition. Bioresour Technol 102(8):5169–5176
Zurück zum Zitat Sills DL, Gossett JM (2012) Using FTIR to predict saccharification from enzymatic hydrolysis of alkali-pretreated biomasses. Biotechnol Bioeng 109(2):353–362 Sills DL, Gossett JM (2012) Using FTIR to predict saccharification from enzymatic hydrolysis of alkali-pretreated biomasses. Biotechnol Bioeng 109(2):353–362
Zurück zum Zitat Singh K et al (2009a) Determination of composition of cellulose and lignin mixtures using thermo gravimetric analysis. J Energy Resour Technol 131(2):022201/022201-022201/022206 Singh K et al (2009a) Determination of composition of cellulose and lignin mixtures using thermo gravimetric analysis. J Energy Resour Technol 131(2):022201/022201-022201/022206
Zurück zum Zitat Singh S et al (2009b) Visualization of biomass solubilization and cellulose regeneration during ionic liquid pretreatment of switchgrass. Biotechnol Bioeng 104(1):68–75 Singh S et al (2009b) Visualization of biomass solubilization and cellulose regeneration during ionic liquid pretreatment of switchgrass. Biotechnol Bioeng 104(1):68–75
Zurück zum Zitat Siroky J et al (2010) Attenuated total reflectance Fourier-transform Infrared spectroscopy analysis of crystallinity changes in lyocell following continuous treatment with sodium hydroxide. Cellulose (Dordrecht Neth) 17(1):103–115 Siroky J et al (2010) Attenuated total reflectance Fourier-transform Infrared spectroscopy analysis of crystallinity changes in lyocell following continuous treatment with sodium hydroxide. Cellulose (Dordrecht Neth) 17(1):103–115
Zurück zum Zitat Sluiter Justin B et al (2010) Compositional analysis of lignocellulosic feedstocks. 1. Review and description of methods. J Agric Food Chem 58(16):9043–9053 Sluiter Justin B et al (2010) Compositional analysis of lignocellulosic feedstocks. 1. Review and description of methods. J Agric Food Chem 58(16):9043–9053
Zurück zum Zitat Smith-Moritz AM et al (2011) Combining multivariate analysis and monosaccharide composition modeling to identify plant cell wall variations by Fourier transform near infrared spectroscopy. Plant Methods 7:26 Smith-Moritz AM et al (2011) Combining multivariate analysis and monosaccharide composition modeling to identify plant cell wall variations by Fourier transform near infrared spectroscopy. Plant Methods 7:26
Zurück zum Zitat Smith W, Dent G (2005) Modern Raman spectroscopy. Wiley, Chichester Smith W, Dent G (2005) Modern Raman spectroscopy. Wiley, Chichester
Zurück zum Zitat Stenius P, Kolijonen K (2008) Surface characterization of mechanical pulp fibers by contact angle measurement, polyelectrolyte adsorption, XPS, and AFM. Charact Lignocellul Mater, Blackwell Publishing Ltd., Oxford, UK, 36–59 doi:10.1002/9781444305425 Stenius P, Kolijonen K (2008) Surface characterization of mechanical pulp fibers by contact angle measurement, polyelectrolyte adsorption, XPS, and AFM. Charact Lignocellul Mater, Blackwell Publishing Ltd., Oxford, UK, 36–59 doi:10.1002/9781444305425
Zurück zum Zitat Sun L et al (2013) Unveiling high-resolution, tissue specific dynamic changes in corn stover during ionic liquid pretreatment. RSC Adv 3(6):2017–2027 Sun L et al (2013) Unveiling high-resolution, tissue specific dynamic changes in corn stover during ionic liquid pretreatment. RSC Adv 3(6):2017–2027
Zurück zum Zitat Sun L et al (2010) Understanding tissue specific compositions of bioenergy feedstocks through hyperspectral Raman imaging. Biotechnol Bioeng 108(2):286–295 Sun L et al (2010) Understanding tissue specific compositions of bioenergy feedstocks through hyperspectral Raman imaging. Biotechnol Bioeng 108(2):286–295
Zurück zum Zitat Suzuki S, Honda S (2003) Miniaturization in carbohydrate analysis. Electrophoresis 24(21):3577–3582 Suzuki S, Honda S (2003) Miniaturization in carbohydrate analysis. Electrophoresis 24(21):3577–3582
Zurück zum Zitat TAPPI (2009) Carbohydrate composition of extractive-free wood and wood pulp by gas-liquid chromatography (Reaffirmation of T 249 cm-00). Peachtree Corners, Georgia TAPPI (2009) Carbohydrate composition of extractive-free wood and wood pulp by gas-liquid chromatography (Reaffirmation of T 249 cm-00). Peachtree Corners, Georgia
Zurück zum Zitat Templeton DW et al (2009) Assessing corn stover composition and sources of variability via NIRS. Cellulose (Dordrecht Neth) 16(4):621–639 Templeton DW et al (2009) Assessing corn stover composition and sources of variability via NIRS. Cellulose (Dordrecht Neth) 16(4):621–639
Zurück zum Zitat Thygesen A et al (2005) On the determination of crystallinity and cellulose content in plant fibres. Cellulose (Dordrecht Neth) 12(6):563–576 Thygesen A et al (2005) On the determination of crystallinity and cellulose content in plant fibres. Cellulose (Dordrecht Neth) 12(6):563–576
Zurück zum Zitat Tokareva EN et al (2007) Imaging of wood tissue by ToF-SIMS: critical evaluation and development of sample preparation techniques. Appl Surf Sci 253(18):7569–7577 Tokareva EN et al (2007) Imaging of wood tissue by ToF-SIMS: critical evaluation and development of sample preparation techniques. Appl Surf Sci 253(18):7569–7577
Zurück zum Zitat Tsuchikawa S, Siesler HW (2003) Near-infrared spectroscopic monitoring of the diffusion process of deuterium-labeled molecules in wood. Part I: softwood. Appl Spectrosc 57(6):667–674 Tsuchikawa S, Siesler HW (2003) Near-infrared spectroscopic monitoring of the diffusion process of deuterium-labeled molecules in wood. Part I: softwood. Appl Spectrosc 57(6):667–674
Zurück zum Zitat Tsuchikawa S et al (2005) Near-infrared spectroscopic observation of the ageing process in archaeological wood using a deuterium exchange method. Analyst (Cambridge UK) 130(3):379–384 Tsuchikawa S et al (2005) Near-infrared spectroscopic observation of the ageing process in archaeological wood using a deuterium exchange method. Analyst (Cambridge UK) 130(3):379–384
Zurück zum Zitat Tyson JA et al (2010) Comparison of sample preparation methods for NIR analysis of carbohydrate content of unbleached eucalyptus pulps. J Wood Chem Technol 30(3):283–298 Tyson JA et al (2010) Comparison of sample preparation methods for NIR analysis of carbohydrate content of unbleached eucalyptus pulps. J Wood Chem Technol 30(3):283–298
Zurück zum Zitat Updegraff DM (1969) Semimicro determination of cellulose in biological materials. Anal Biochem 32(3):420–424 Updegraff DM (1969) Semimicro determination of cellulose in biological materials. Anal Biochem 32(3):420–424
Zurück zum Zitat Van Soest PJ (1963) Use of detergents in analysis of fibrous feeds. II. A rapid method for the determination of fiber and lignin. J Assoc Off Agric Chem 46(5):829–835 Van Soest PJ (1963) Use of detergents in analysis of fibrous feeds. II. A rapid method for the determination of fiber and lignin. J Assoc Off Agric Chem 46(5):829–835
Zurück zum Zitat Van Soest PJ et al (1991) Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J Dairy Sci 74(10):3583–3597 Van Soest PJ et al (1991) Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J Dairy Sci 74(10):3583–3597
Zurück zum Zitat Van Soest PJ, Wine RH (1968) Determination of lignin and cellulose in acid-detergent fiber with permanganate. J Assoc Off Anal Chem 51(4):780–785 Van Soest PJ, Wine RH (1968) Determination of lignin and cellulose in acid-detergent fiber with permanganate. J Assoc Off Anal Chem 51(4):780–785
Zurück zum Zitat Wang L et al (2010) A novel FRET approach for in situ investigation of cellulase-cellulose interaction. Anal Bioanal Chem 398(3):1257–1262 Wang L et al (2010) A novel FRET approach for in situ investigation of cellulase-cellulose interaction. Anal Bioanal Chem 398(3):1257–1262
Zurück zum Zitat Wang L et al (2012) Determination of cellulase colocalization on cellulose fiber with quantitative FRET measured by acceptor photobleaching and spectrally unmixing fluorescence microscopy. Analyst (Cambridge UK) 137(6):1319–1324 Wang L et al (2012) Determination of cellulase colocalization on cellulose fiber with quantitative FRET measured by acceptor photobleaching and spectrally unmixing fluorescence microscopy. Analyst (Cambridge UK) 137(6):1319–1324
Zurück zum Zitat Watanabe A et al (2006) Temperature-dependent structural changes in hydrogen bonds in microcrystalline cellulose studied by infrared and near-infrared spectroscopy with perturbation-correlation moving-window two-dimensional correlation analysis. Appl Spectrosc 60(6):611–618 Watanabe A et al (2006) Temperature-dependent structural changes in hydrogen bonds in microcrystalline cellulose studied by infrared and near-infrared spectroscopy with perturbation-correlation moving-window two-dimensional correlation analysis. Appl Spectrosc 60(6):611–618
Zurück zum Zitat White DR Jr (1999) Applications of gel permeation chromatography with multi-angle light scattering to the characterization of polysaccharides. ACS Symp Ser 737:299–316, Polysaccharide Applications White DR Jr (1999) Applications of gel permeation chromatography with multi-angle light scattering to the characterization of polysaccharides. ACS Symp Ser 737:299–316, Polysaccharide Applications
Zurück zum Zitat Wiley JH, Atalla RH (1987a) Band assignments in the Raman spectra of celluloses. Carbohydr Res 160:113–129 Wiley JH, Atalla RH (1987a) Band assignments in the Raman spectra of celluloses. Carbohydr Res 160:113–129
Zurück zum Zitat Wiley JH, Atalla RH (1987b) Raman spectra of celluloses. ACS Symp Ser 340:151–168, Struct. Cellul Wiley JH, Atalla RH (1987b) Raman spectra of celluloses. ACS Symp Ser 340:151–168, Struct. Cellul
Zurück zum Zitat Willfoer S et al (2009) Carbohydrate analysis of plant materials with uronic acid-containing polysaccharides-A comparison between different hydrolysis and subsequent chromatographic analytical techniques. Ind Crop Prod 29(2–3):571–580 Willfoer S et al (2009) Carbohydrate analysis of plant materials with uronic acid-containing polysaccharides-A comparison between different hydrolysis and subsequent chromatographic analytical techniques. Ind Crop Prod 29(2–3):571–580
Zurück zum Zitat Wolfrum EJ, Sluiter AD (2009) Improved multivariate calibration models for corn stover feedstock and dilute-acid pretreated corn stover. Cellulose (Dordrecht Neth) 16(4):567–576 Wolfrum EJ, Sluiter AD (2009) Improved multivariate calibration models for corn stover feedstock and dilute-acid pretreated corn stover. Cellulose (Dordrecht Neth) 16(4):567–576
Zurück zum Zitat Workman J Jr et al (2007) Practical guide to interpretive near-infrared spectroscopy. CRC Press, Boca Raton Workman J Jr et al (2007) Practical guide to interpretive near-infrared spectroscopy. CRC Press, Boca Raton
Zurück zum Zitat Workman JJ Jr (1996) Interpretive spectroscopy for near infrared. Appl Spectrosc Rev 31(3):251–320 Workman JJ Jr (1996) Interpretive spectroscopy for near infrared. Appl Spectrosc Rev 31(3):251–320
Zurück zum Zitat Workman JJ Jr (2001) Infrared and Raman spectroscopy in paper and pulp analysis. Appl Spectrosc Rev 36(2 & 3):139–168 Workman JJ Jr (2001) Infrared and Raman spectroscopy in paper and pulp analysis. Appl Spectrosc Rev 36(2 & 3):139–168
Zurück zum Zitat Wust E, Rudzik L (1996) Infrarotspektroskopie. In: Gunzler AMBH, Borsdorf R, Danzer K (eds) Highlight aus dem Analytiker-Taschenbuch. Springer, Berlin, p 221 Wust E, Rudzik L (1996) Infrarotspektroskopie. In: Gunzler AMBH, Borsdorf R, Danzer K (eds) Highlight aus dem Analytiker-Taschenbuch. Springer, Berlin, p 221
Zurück zum Zitat Xu F et al (2013) Qualitative and quantitative analysis of lignocellulosic biomass using infrared techniques: a mini-review. Appl Energy 104:801–809 Xu F et al (2013) Qualitative and quantitative analysis of lignocellulosic biomass using infrared techniques: a mini-review. Appl Energy 104:801–809
Zurück zum Zitat Ye XP et al (2008) Fast classification and compositional analysis of cornstover fractions using Fourier transform near-infrared techniques. Bioresour Technol 99(15):7323–7332 Ye XP et al (2008) Fast classification and compositional analysis of cornstover fractions using Fourier transform near-infrared techniques. Bioresour Technol 99(15):7323–7332
Zurück zum Zitat Yelle DJ et al (2008) Characterization of nonderivatized plant cell walls using high-resolution solution-state NMR spectroscopy. Magn Reson Chem 46(6):508–517 Yelle DJ et al (2008) Characterization of nonderivatized plant cell walls using high-resolution solution-state NMR spectroscopy. Magn Reson Chem 46(6):508–517
Zurück zum Zitat Yonenobu H, Tsuchikawa S (2003) Near-infrared spectroscopic comparison of antique and modern wood. Appl Spectrosc 57(11):1451–1453 Yonenobu H, Tsuchikawa S (2003) Near-infrared spectroscopic comparison of antique and modern wood. Appl Spectrosc 57(11):1451–1453
Zurück zum Zitat Yuan T-Q et al (2011) Characterization of lignin structures and Lignin-Carbohydrate Complex (LCC) linkages by quantitative 13C and 2D HSQC NMR spectroscopy. J Agric Food Chem 59(19):10604–10614 Yuan T-Q et al (2011) Characterization of lignin structures and Lignin-Carbohydrate Complex (LCC) linkages by quantitative 13C and 2D HSQC NMR spectroscopy. J Agric Food Chem 59(19):10604–10614
Zurück zum Zitat Zeng Y et al (2012) Coherent Raman microscopy analysis of plant cell walls. Methods Mol Biol (NY NY US) 908:49–60, Biomass Conversion Zeng Y et al (2012) Coherent Raman microscopy analysis of plant cell walls. Methods Mol Biol (NY NY US) 908:49–60, Biomass Conversion
Zurück zum Zitat Zhang Y-HP, Lynd LR (2004) Toward an aggregated understanding of enzymatic hydrolysis of cellulose: noncomplexed cellulase systems. Biotechnol Bioeng 88(7):797–824 Zhang Y-HP, Lynd LR (2004) Toward an aggregated understanding of enzymatic hydrolysis of cellulose: noncomplexed cellulase systems. Biotechnol Bioeng 88(7):797–824
Metadaten
Titel
Analytical Methods for Lignocellulosic Biomass Structural Polysaccharides
verfasst von
Jason S. Lupoi
Copyright-Jahr
2015
DOI
https://doi.org/10.1007/978-3-319-16298-0_30

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