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Erschienen in: Cellulose 3/2016

01.06.2016 | Original Paper

SEC–MALLS analysis of ethylenediamine-pretreated native celluloses in LiCl/N,N-dimethylacetamide: softwood kraft pulp and highly crystalline bacterial, tunicate, and algal celluloses

verfasst von: Yuko Ono, Reina Tanaka, Ryunosuke Funahashi, Miyuki Takeuchi, Tsuguyuki Saito, Akira Isogai

Erschienen in: Cellulose | Ausgabe 3/2016

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Abstract

Softwood and hardwood bleached kraft pulps (SBKP and HBKP, respectively) and highly crystalline native celluloses such as algal, tunicate, bacterial and cotton lint celluloses were dissolved in 8 % (w/v) LiCl/N,N-dimethylacetamide (DMAc) after ethylenediamine (EDA) pretreatment. Complete dissolution of SBKP and other highly crystalline native celluloses in 8 % LiCl/DMAc was achieved after solvent exchange from EDA to DMAc through methanol. Neutral sugar composition analysis showed no significant differences between the original and EDA-treated pulps. A combination of size-exclusion chromatography and multi-angle laser light scattering (SEC–MALLS) was used to analyze the cellulose solutions after dilution to 1 % (w/v) LiCl/DMAc. The 0.05 % (w/v) solutions of highly crystalline cellulose in 1 % (w/v) LiCl/DMAc contained entangled molecules, and therefore 0.025 % (w/v) cellulose solutions in 1 % (w/v) LiCl/DMAc were used in the SEC–MALLS analysis to obtain reliable conformation plots (or double-logarithmic plots of molecular mass vs. root-mean-square radius). All the cellulose samples except SBKP gave conformation plots with slope values of 0.56–0.57, showing that these cellulose molecules had random-coil conformations. In contrast, SBKP gave a slope value of 0.35, indicating that some branched structures were present in the high-molecular-mass fraction. Double-logarithmic plots of the reduced viscosities of the cellulose solutions in 1 % (w/v) LiCl/DMAc versus the molecular mass were linear, except for SBKP, also suggesting the presence of anomalous cellulose structures in SBKP.

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Literatur
Zurück zum Zitat Berggren R, Berthold F, Sjöholm E, Lindström M (2003) Improved methods for evaluating the molar mass distributions of cellulose in kraft pulp. J Appl Polym Sci 88:1170–1179CrossRef Berggren R, Berthold F, Sjöholm E, Lindström M (2003) Improved methods for evaluating the molar mass distributions of cellulose in kraft pulp. J Appl Polym Sci 88:1170–1179CrossRef
Zurück zum Zitat Dupont A, Harrison G (2004) Conformation and dn/dc determination of cellulose in N,N-dimethylacetamide containing lithium chloride. Carbohydr Polym 58:233–243CrossRef Dupont A, Harrison G (2004) Conformation and dn/dc determination of cellulose in N,N-dimethylacetamide containing lithium chloride. Carbohydr Polym 58:233–243CrossRef
Zurück zum Zitat Kuramae R, Saito T, Isogai A (2014) TEMPO-oxidized cellulose nanofibrils prepared from various plant holocelluloses. React Funct Polym 85:126–133CrossRef Kuramae R, Saito T, Isogai A (2014) TEMPO-oxidized cellulose nanofibrils prepared from various plant holocelluloses. React Funct Polym 85:126–133CrossRef
Zurück zum Zitat Larsson PT, Hult EL, Wickholm K, Pettersson E, Tommy I (1999) CP/MAS 13C-NMR spectroscopy applied to structure and interaction studies on cellulose I. Solid State Nucl Magn Reson 15:31–40CrossRef Larsson PT, Hult EL, Wickholm K, Pettersson E, Tommy I (1999) CP/MAS 13C-NMR spectroscopy applied to structure and interaction studies on cellulose I. Solid State Nucl Magn Reson 15:31–40CrossRef
Zurück zum Zitat Okita Y, Saito T, Isogai A (2010) Entire surface oxidation of various cellulose microfibrils by TEMPO-mediated oxidation. Biomacromolecules 22:1696–1700CrossRef Okita Y, Saito T, Isogai A (2010) Entire surface oxidation of various cellulose microfibrils by TEMPO-mediated oxidation. Biomacromolecules 22:1696–1700CrossRef
Zurück zum Zitat Ono Y, Hiraoki R, Fujisawa S, Saito T, Isogai A (2015) SEC–MALLS analysis of wood holocelluloses dissolved in 8% LiCl/1,3-dimethyl-2-imidazolidinone: challenges and suitable analytical conditions. Cellulose 22:3347–3357CrossRef Ono Y, Hiraoki R, Fujisawa S, Saito T, Isogai A (2015) SEC–MALLS analysis of wood holocelluloses dissolved in 8% LiCl/1,3-dimethyl-2-imidazolidinone: challenges and suitable analytical conditions. Cellulose 22:3347–3357CrossRef
Zurück zum Zitat Ono Y, Ishida T, Soeta H, Saito T, Isogai A (2016) Reliable dn/dc values of cellulose, chitin, and cellulose triacetate dissolved in LiCl/N,N-dimethylacetamide for molecular mass analysis. Biomacromolecules 17:192–199CrossRef Ono Y, Ishida T, Soeta H, Saito T, Isogai A (2016) Reliable dn/dc values of cellulose, chitin, and cellulose triacetate dissolved in LiCl/N,N-dimethylacetamide for molecular mass analysis. Biomacromolecules 17:192–199CrossRef
Zurück zum Zitat Potthast A, Radosta S, Saake B, Lebioda S, Heinze T, Henniges U, Isogai A, Koschella A, Kosma P, Rosenau T, Schiehser S, Sixta H, Strlić M, Strobin G, Vorwerg W, Wetzel H (2015) Comparison testing of methods for gel permeation chromatography of cellulose: coming closer to a standard protocol. Cellulose 22:1591–1613CrossRef Potthast A, Radosta S, Saake B, Lebioda S, Heinze T, Henniges U, Isogai A, Koschella A, Kosma P, Rosenau T, Schiehser S, Sixta H, Strlić M, Strobin G, Vorwerg W, Wetzel H (2015) Comparison testing of methods for gel permeation chromatography of cellulose: coming closer to a standard protocol. Cellulose 22:1591–1613CrossRef
Zurück zum Zitat Schult T, Hjerde T, Optun OI, Kleppe PJ, Moe S (2002) Characterization of cellulose by SEC-MALLS. Cellulose 9:149–158CrossRef Schult T, Hjerde T, Optun OI, Kleppe PJ, Moe S (2002) Characterization of cellulose by SEC-MALLS. Cellulose 9:149–158CrossRef
Zurück zum Zitat Siller M, Ahn K, Pircher N, Rosenau T, Potthast A (2014) Dissolution of rayon fibers for size exclusion chromatography: a challenge. Cellulose 21:3291–3301CrossRef Siller M, Ahn K, Pircher N, Rosenau T, Potthast A (2014) Dissolution of rayon fibers for size exclusion chromatography: a challenge. Cellulose 21:3291–3301CrossRef
Zurück zum Zitat Tanaka R, Saito T, Ishii D, Isogai A (2014) Determination of nanocellulose fibril length by shear viscosity measurement. Cellulose 21:1581–1589CrossRef Tanaka R, Saito T, Ishii D, Isogai A (2014) Determination of nanocellulose fibril length by shear viscosity measurement. Cellulose 21:1581–1589CrossRef
Zurück zum Zitat Tanaka R, Saito T, Hondo H, Isogai A (2015) Influence of flexibility and dimensions of nanocelluloses on the flow properties of their aqueous dispersions. Biomacromolecules 16:2127–2131CrossRef Tanaka R, Saito T, Hondo H, Isogai A (2015) Influence of flexibility and dimensions of nanocelluloses on the flow properties of their aqueous dispersions. Biomacromolecules 16:2127–2131CrossRef
Zurück zum Zitat Wada M, Kwon GJ, Nishiyama Y (2008) Structure and thermal behavior of a cellulose I-ethylenediamine complex. Biomacromolecules 9:2898–2904CrossRef Wada M, Kwon GJ, Nishiyama Y (2008) Structure and thermal behavior of a cellulose I-ethylenediamine complex. Biomacromolecules 9:2898–2904CrossRef
Zurück zum Zitat Wada M, Heux L, Nishiyama Y, Langan P (2009) The structure of the complex of cellulose I with ethylenediamine by X-ray crystallography and cross-polarization/magic angle spinning 13C nuclear magnetic resonance. Cellulose 16:943–957CrossRef Wada M, Heux L, Nishiyama Y, Langan P (2009) The structure of the complex of cellulose I with ethylenediamine by X-ray crystallography and cross-polarization/magic angle spinning 13C nuclear magnetic resonance. Cellulose 16:943–957CrossRef
Zurück zum Zitat Wise LE, Murphy M, D’Addieco AA (1946) A chlorite holocellulose, its fractionation and bearing on summative wood analysis and studies on the hemicellulose. Paper Trade J 122:35–43 Wise LE, Murphy M, D’Addieco AA (1946) A chlorite holocellulose, its fractionation and bearing on summative wood analysis and studies on the hemicellulose. Paper Trade J 122:35–43
Zurück zum Zitat Yamamoto M, Kuramae R, Yanagisawa M, Ishii D, Isogai A (2011) Light-scattering analysis of native wood holocelluloses totally dissolved in LiCl–DMI solutions: high probability of branched structures in inherent cellulose. Biomacromolecules 12:3982–3988CrossRef Yamamoto M, Kuramae R, Yanagisawa M, Ishii D, Isogai A (2011) Light-scattering analysis of native wood holocelluloses totally dissolved in LiCl–DMI solutions: high probability of branched structures in inherent cellulose. Biomacromolecules 12:3982–3988CrossRef
Zurück zum Zitat Yanagisawa M, Isogai A (2007) Size exclusion chromatographic and UV-VIS absorption analyses of unbleached and bleached softwood kraft pulps using LiCl/1,3-dimethyl-2-imidazolidinone as a solvent. Holzforschung 61:236–241CrossRef Yanagisawa M, Isogai A (2007) Size exclusion chromatographic and UV-VIS absorption analyses of unbleached and bleached softwood kraft pulps using LiCl/1,3-dimethyl-2-imidazolidinone as a solvent. Holzforschung 61:236–241CrossRef
Zurück zum Zitat Yanagisawa M, Shibata I, Isogai A (2005) SEC-MALLS analysis of softwood kraft pulp using LiCl/1,3-dimethyl-2-imidazolidinone as an eluent. Cellulose 12:151–158CrossRef Yanagisawa M, Shibata I, Isogai A (2005) SEC-MALLS analysis of softwood kraft pulp using LiCl/1,3-dimethyl-2-imidazolidinone as an eluent. Cellulose 12:151–158CrossRef
Metadaten
Titel
SEC–MALLS analysis of ethylenediamine-pretreated native celluloses in LiCl/N,N-dimethylacetamide: softwood kraft pulp and highly crystalline bacterial, tunicate, and algal celluloses
verfasst von
Yuko Ono
Reina Tanaka
Ryunosuke Funahashi
Miyuki Takeuchi
Tsuguyuki Saito
Akira Isogai
Publikationsdatum
01.06.2016
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 3/2016
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-016-0948-4

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