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Erschienen in: Cellulose 1/2017

17.11.2016 | Original Paper

Influence of TEMPO-oxidised cellulose nanofibrils on the properties of filler-containing papers

verfasst von: Ana F. Lourenço, José A. F. Gamelas, Tiago Nunes, José Amaral, Peré Mutjé, Paulo J. Ferreira

Erschienen in: Cellulose | Ausgabe 1/2017

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Abstract

In this work, cellulose nanofibrils (CNF) were produced from a Eucalyptus globulus bleached kraft pulp by TEMPO-mediated oxidation and mechanical homogenisation, and their effects in papermaking, namely filler flocculation and retention, dry and wet-web strength and structural properties, were studied in detail. Cellulose nanofibrils possessing 0.6 mmol/g carboxyl groups and a degree of polymerisation (DP) of ca. 550 were found to promote filler flocculation and retention in the fibre mat, whereas the same amount (3 wt%) of CNF having 1.5 mmol/g of carboxyl groups, a DP of ca. 200 and a similar mean diameter exhibited the opposite effect. These results were interpreted with the help of flocculation studies of precipitated calcium carbonate (PCC) in the presence of CNF carried out by laser diffraction spectrometry. In addition, the mechanical and structural properties of the handsheets were analysed, revealing that the less charged CNF led to more closed matrices and, even increasing the filler retention, had a positive role on the tensile strength. A bonding mechanism among eucalypt fibres, PCC, CNF and a linear cationic polyacrylamide is proposed, consistent with the flocculation, retention and paper strength and structural property results. It is concluded that, to be used in papermaking, the CNF must not have a high charge (or a small length) to be able to flocculate the filler particles and, at the same time, to increase the filler-to-cellulosic fibres bonding. A complementary study on the wet-web resistance of handsheets produced with the less charged CNF was conducted for moisture contents between 10 and 70%, showing that these CNF can significantly improve the handsheet wet tensile strength (nearly 100%) even for water contents above 50%. The use of CNF in the paper machine may thus contribute, through the higher wet-web tensile resistance, to reducing breaks and increasing the operating speeds and, through the higher filler retention, to important fibre and cost savings.

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Literatur
Zurück zum Zitat Ämmälä A, Liimatainen H, Burmeister C, Niinimäki J (2013) Effect of tempo and periodate-chlorite oxidized nanofibrils on ground calcium carbonate flocculation and retention in sheet forming and on the physical properties of sheets. Cellulose 20:2451–2460CrossRef Ämmälä A, Liimatainen H, Burmeister C, Niinimäki J (2013) Effect of tempo and periodate-chlorite oxidized nanofibrils on ground calcium carbonate flocculation and retention in sheet forming and on the physical properties of sheets. Cellulose 20:2451–2460CrossRef
Zurück zum Zitat Besbes I, Alila S, Boufi S (2011) Nanofibrillated cellulose from TEMPO-oxidized eucalyptus fibres: effect of the carboxyl content. Carbohydr Polym 84:975–983CrossRef Besbes I, Alila S, Boufi S (2011) Nanofibrillated cellulose from TEMPO-oxidized eucalyptus fibres: effect of the carboxyl content. Carbohydr Polym 84:975–983CrossRef
Zurück zum Zitat Brodin FW, Gregersen OW, Syverud K (2014) Cellulose nanofibrils: challenges and possibilities as a paper additive or coating material—a review. Nord Pulp Paper Res J 29(1):156–166CrossRef Brodin FW, Gregersen OW, Syverud K (2014) Cellulose nanofibrils: challenges and possibilities as a paper additive or coating material—a review. Nord Pulp Paper Res J 29(1):156–166CrossRef
Zurück zum Zitat Chinga-Carrasco G, Tobjörk D, Österbacka R (2012) Inkjet-printed silver-nanoparticles on nano-engineered cellulose films for electrically conducting structures and organic transistors—concept and challenges. J Nanoparticle Res 14:1213CrossRef Chinga-Carrasco G, Tobjörk D, Österbacka R (2012) Inkjet-printed silver-nanoparticles on nano-engineered cellulose films for electrically conducting structures and organic transistors—concept and challenges. J Nanoparticle Res 14:1213CrossRef
Zurück zum Zitat Eichorn S, Dufresne A, Aranguren M, Marcovich NE, Capadona JR, Rowan SJ, Weder C, Thielemans W, Roman M, Renneckar S, Gindl W, Veigel S, Keckes J, Yano H, Abe K, Nogi M, Nakagaito AN, Mangalam A, Simonsen J, Benight AS, Bismarck A, Berglund LA, Peijs T (2010) Review: current international research into cellulose nanofibres and nanocomposites. J Mater Sci 45:1–33CrossRef Eichorn S, Dufresne A, Aranguren M, Marcovich NE, Capadona JR, Rowan SJ, Weder C, Thielemans W, Roman M, Renneckar S, Gindl W, Veigel S, Keckes J, Yano H, Abe K, Nogi M, Nakagaito AN, Mangalam A, Simonsen J, Benight AS, Bismarck A, Berglund LA, Peijs T (2010) Review: current international research into cellulose nanofibres and nanocomposites. J Mater Sci 45:1–33CrossRef
Zurück zum Zitat Espinosa E, Tarrés Q, Delgado-Aguilar M, González I, Mutjé P, Rodríguez A (2016) Suitability of wheat straw mechanical pulp for the fabrication of lignocellulosic nanofibres and their application to papermaking slurries. Cellulose 23:837–852CrossRef Espinosa E, Tarrés Q, Delgado-Aguilar M, González I, Mutjé P, Rodríguez A (2016) Suitability of wheat straw mechanical pulp for the fabrication of lignocellulosic nanofibres and their application to papermaking slurries. Cellulose 23:837–852CrossRef
Zurück zum Zitat Fukuzumi H, Saito T, Iwata T, Kumamoto Y, Isogai A (2009) Transparent and highgas barrier films of cellulose nanofibers prepared by TEMPO-mediated oxidation. Biomacromolecules 10:162–165CrossRef Fukuzumi H, Saito T, Iwata T, Kumamoto Y, Isogai A (2009) Transparent and highgas barrier films of cellulose nanofibers prepared by TEMPO-mediated oxidation. Biomacromolecules 10:162–165CrossRef
Zurück zum Zitat Gamelas JAF, Pedrosa J, Lourenço AF, Mutjé P, Chinga-Carrasco G, Singh G, Ferreira PJT (2015a) On the morphology of cellulose nanofibrils obtained by TEMPO-mediated oxidation and mechanical treatment. Micron 72:28–33CrossRef Gamelas JAF, Pedrosa J, Lourenço AF, Mutjé P, Chinga-Carrasco G, Singh G, Ferreira PJT (2015a) On the morphology of cellulose nanofibrils obtained by TEMPO-mediated oxidation and mechanical treatment. Micron 72:28–33CrossRef
Zurück zum Zitat Gamelas JAF, Pedrosa J, Lourenço AF, Ferreira PJ (2015b) Surface properties of distinct nanofibrillated celluloses assessed by inverse gas chromatography. Colloids Surf A 469:36–41CrossRef Gamelas JAF, Pedrosa J, Lourenço AF, Ferreira PJ (2015b) Surface properties of distinct nanofibrillated celluloses assessed by inverse gas chromatography. Colloids Surf A 469:36–41CrossRef
Zurück zum Zitat González I, Boufi S, Pèlach M, Alcalà M, Vilaseca F, Mutjé P (2012) Nanofibrillated cellulose as a paper additive in eucalyptus pulps. BioResources 7(4):5167–5180CrossRef González I, Boufi S, Pèlach M, Alcalà M, Vilaseca F, Mutjé P (2012) Nanofibrillated cellulose as a paper additive in eucalyptus pulps. BioResources 7(4):5167–5180CrossRef
Zurück zum Zitat González I, Alcalà M, Chinga-Carrasco G, Vilaseca F, Boufi S, Mutjé P (2014) From paper to nanopaper: evolution of mechanical and physical properties. Cellulose 21:2599–2609CrossRef González I, Alcalà M, Chinga-Carrasco G, Vilaseca F, Boufi S, Mutjé P (2014) From paper to nanopaper: evolution of mechanical and physical properties. Cellulose 21:2599–2609CrossRef
Zurück zum Zitat Hänninen T, Orelma H, Laine J (2015) TEMPO oxidized cellulose thin films analysed by QCM-D and AFM. Cellulose 22:165–171CrossRef Hänninen T, Orelma H, Laine J (2015) TEMPO oxidized cellulose thin films analysed by QCM-D and AFM. Cellulose 22:165–171CrossRef
Zurück zum Zitat He M, Cho B-U, Won JM (2016) Effect of precipitated calcium carbonate—cellulose nanofibrils composite filler on paper properties. Carbohydr Polym 136:820–825CrossRef He M, Cho B-U, Won JM (2016) Effect of precipitated calcium carbonate—cellulose nanofibrils composite filler on paper properties. Carbohydr Polym 136:820–825CrossRef
Zurück zum Zitat Henriksson M, Berglund L, Isaksson P, Lindström T, Nishino T (2008) Cellulose nanopaper structures of high toughness. Biomacromolecules 9:1579–1585CrossRef Henriksson M, Berglund L, Isaksson P, Lindström T, Nishino T (2008) Cellulose nanopaper structures of high toughness. Biomacromolecules 9:1579–1585CrossRef
Zurück zum Zitat Hii C, Gregersen ØW, Chinga-Carrasco G, Eriksen Ø (2012) The effect of MFC on the pressability and paper properties of TMP and GCC based sheets. Nord Pulp Pap Res J 27(2):388–396CrossRef Hii C, Gregersen ØW, Chinga-Carrasco G, Eriksen Ø (2012) The effect of MFC on the pressability and paper properties of TMP and GCC based sheets. Nord Pulp Pap Res J 27(2):388–396CrossRef
Zurück zum Zitat Hubbe MA (2014) Prospects for maintaining strength of paper and paperboard products while using less forest resources: a review. BioResources 9(1):1634–1763 Hubbe MA (2014) Prospects for maintaining strength of paper and paperboard products while using less forest resources: a review. BioResources 9(1):1634–1763
Zurück zum Zitat Ioelovich M, Figovsky O (2010) Structure and properties of nanoparticles used in paper compositions. Mech Compos Mater 46(4):435–442CrossRef Ioelovich M, Figovsky O (2010) Structure and properties of nanoparticles used in paper compositions. Mech Compos Mater 46(4):435–442CrossRef
Zurück zum Zitat Isogai A, Saito T, Fukuzumi H (2011) TEMPO-oxidized celulose nanofibers. Nanoscale 3:71–85CrossRef Isogai A, Saito T, Fukuzumi H (2011) TEMPO-oxidized celulose nanofibers. Nanoscale 3:71–85CrossRef
Zurück zum Zitat Kangas H, Lahtinen P, Sneck A, Saariaho A-M, Laitinen O, Hellén E (2014) Characterization of fibrillated celluloses a short review and evaluation of characteristics with a combination of methods. Nordic Pulp Pap Res J 29(1):129–143CrossRef Kangas H, Lahtinen P, Sneck A, Saariaho A-M, Laitinen O, Hellén E (2014) Characterization of fibrillated celluloses a short review and evaluation of characteristics with a combination of methods. Nordic Pulp Pap Res J 29(1):129–143CrossRef
Zurück zum Zitat Kekäläinen K, Liimatainen H, Illikainen M, Maloney TC, Niinimaki J (2014) The role of the hornification in the disintegration behaviour of TEMPO-oxidized bleached hardwood fibres in a high-shear homogenizer. Cellulose 21:1163–1174CrossRef Kekäläinen K, Liimatainen H, Illikainen M, Maloney TC, Niinimaki J (2014) The role of the hornification in the disintegration behaviour of TEMPO-oxidized bleached hardwood fibres in a high-shear homogenizer. Cellulose 21:1163–1174CrossRef
Zurück zum Zitat Khalil H, Davoudpour Y, Islam M, Mustapha A, Sudesh K, Dungani R, Jawaid M (2014) Production and modification of nanofibrillated cellulose using various mechanical processes: a review. Carbohydr Polym 99:649–665CrossRef Khalil H, Davoudpour Y, Islam M, Mustapha A, Sudesh K, Dungani R, Jawaid M (2014) Production and modification of nanofibrillated cellulose using various mechanical processes: a review. Carbohydr Polym 99:649–665CrossRef
Zurück zum Zitat Klemm D, Kramer F, Moritz S, Lindström T, Ankerfors M, Gray D, Dorris A (2011) Nanocelluloses: a new family of nature-based materials. Angew Chem Int Ed 50:5438–5466CrossRef Klemm D, Kramer F, Moritz S, Lindström T, Ankerfors M, Gray D, Dorris A (2011) Nanocelluloses: a new family of nature-based materials. Angew Chem Int Ed 50:5438–5466CrossRef
Zurück zum Zitat Kobayashi Y, Gondo T, Yamamoto M, Saito T, Isogai A (2016) Fundamental properties of handsheets containing TEMPO-oxidized pulp in various weight ratios. Nordic Pulp Paper Res J 31(2):248–254CrossRef Kobayashi Y, Gondo T, Yamamoto M, Saito T, Isogai A (2016) Fundamental properties of handsheets containing TEMPO-oxidized pulp in various weight ratios. Nordic Pulp Paper Res J 31(2):248–254CrossRef
Zurück zum Zitat Korhonen MHJ, Laine J (2014) Flocculation and retention of fillers with nanoceluloses. Nordic Pulp Paper Res J 29(1):119–128CrossRef Korhonen MHJ, Laine J (2014) Flocculation and retention of fillers with nanoceluloses. Nordic Pulp Paper Res J 29(1):119–128CrossRef
Zurück zum Zitat Lavoine N, Desloges I, Dufresne A, Bras J (2012) Microfibrillated celulose—its barrier properties and applications in cellulosic materials: a review. CarbohydrPolym 90:735–764 Lavoine N, Desloges I, Dufresne A, Bras J (2012) Microfibrillated celulose—its barrier properties and applications in cellulosic materials: a review. CarbohydrPolym 90:735–764
Zurück zum Zitat Lourenço AF, Gamelas JA, Ferreira PJ (2014) Increase of the filler content in papermaking by using a silica-coated PCC filler. Nordic Pulp Pap Res J 29(2):240–245CrossRef Lourenço AF, Gamelas JA, Ferreira PJ (2014) Increase of the filler content in papermaking by using a silica-coated PCC filler. Nordic Pulp Pap Res J 29(2):240–245CrossRef
Zurück zum Zitat Petroudy SRD, Syverud K, Chinga-Carrrasco G, Ghasemain A, Resalati H (2014) Effects of bagasse microfibrillated celulose and cationic polyacrylamide on key properties of bagasse paper. Carbohydr Polym 99:311–318CrossRef Petroudy SRD, Syverud K, Chinga-Carrrasco G, Ghasemain A, Resalati H (2014) Effects of bagasse microfibrillated celulose and cationic polyacrylamide on key properties of bagasse paper. Carbohydr Polym 99:311–318CrossRef
Zurück zum Zitat Rasteiro MG, Garcia FAP, Ferreira P, Blanco A, Negro C, Antunes E (2008) Evaluation of flocks resistance and reflocculation capacity using the LDS technique. Powder Technol 183:231–238CrossRef Rasteiro MG, Garcia FAP, Ferreira P, Blanco A, Negro C, Antunes E (2008) Evaluation of flocks resistance and reflocculation capacity using the LDS technique. Powder Technol 183:231–238CrossRef
Zurück zum Zitat Raymond L, Turcotte R, Gratton R (2004) The challenges of increasing filler in fine paper. Paper Technol 45(6):34–40 Raymond L, Turcotte R, Gratton R (2004) The challenges of increasing filler in fine paper. Paper Technol 45(6):34–40
Zurück zum Zitat Saito T, Isogai A (2004) TEMPO-Mediated Oxidation of Native Cellulose The Effect of Oxidation Conditions on Chemical and Crystal Structures of the Water-Insoluble Fractions. Biomacromolecules 5:1983–1989CrossRef Saito T, Isogai A (2004) TEMPO-Mediated Oxidation of Native Cellulose The Effect of Oxidation Conditions on Chemical and Crystal Structures of the Water-Insoluble Fractions. Biomacromolecules 5:1983–1989CrossRef
Zurück zum Zitat Saito T, Isogai A (2006) Introduction of aldehyde groups on surfaces of native cellulose fibers by TEMPO-mediated oxidation. Colloids Surf A Physicochem Eng Aspects 289:219–225CrossRef Saito T, Isogai A (2006) Introduction of aldehyde groups on surfaces of native cellulose fibers by TEMPO-mediated oxidation. Colloids Surf A Physicochem Eng Aspects 289:219–225CrossRef
Zurück zum Zitat Saito T, Isogai A (2007) Wet strength improvement of TEMPO-oxidized cellulose sheets prepared with cationic polymers. Ind Eng Chem Res 46:773–780CrossRef Saito T, Isogai A (2007) Wet strength improvement of TEMPO-oxidized cellulose sheets prepared with cationic polymers. Ind Eng Chem Res 46:773–780CrossRef
Zurück zum Zitat Saito T, Kimura S, Nishiyama Y, Isogai A (2007) Cellulose nanofibres prepared by TEMPO-mediated oxidation of native cellulose. Biomacromolecules 8:2485–2491CrossRef Saito T, Kimura S, Nishiyama Y, Isogai A (2007) Cellulose nanofibres prepared by TEMPO-mediated oxidation of native cellulose. Biomacromolecules 8:2485–2491CrossRef
Zurück zum Zitat Saito T, Hirota M, Tamura N, Kimura S, Fukuzumi H, Heux L, Isogai A (2009) Individualization of nano-sized plant cellulose fibrils by direct surface carboxylation Using TEMPO catalyst under neutral conditions. Biomacromolecules 10:1992–1996CrossRef Saito T, Hirota M, Tamura N, Kimura S, Fukuzumi H, Heux L, Isogai A (2009) Individualization of nano-sized plant cellulose fibrils by direct surface carboxylation Using TEMPO catalyst under neutral conditions. Biomacromolecules 10:1992–1996CrossRef
Zurück zum Zitat Saraiva MS, Gamelas JAF, de Sousa APM, Reis BM, Amaral JL, Ferreira PJ (2010) A new approach for the modification of paper surface properties using polyoxometalates. Materials 3:201–215CrossRef Saraiva MS, Gamelas JAF, de Sousa APM, Reis BM, Amaral JL, Ferreira PJ (2010) A new approach for the modification of paper surface properties using polyoxometalates. Materials 3:201–215CrossRef
Zurück zum Zitat Syverud K, Stenius P (2009) Strength and barrier properties of MFC films. Cellulose 16:75–85CrossRef Syverud K, Stenius P (2009) Strength and barrier properties of MFC films. Cellulose 16:75–85CrossRef
Zurück zum Zitat Taipale T, Österberg M, Nykänen A, Ruokolainen J, Laine J (2010) Effect of microfibrillated cellulose and fines on the drainage of kraft pulp suspension and paper strength. Cellulose 17:1005–1020CrossRef Taipale T, Österberg M, Nykänen A, Ruokolainen J, Laine J (2010) Effect of microfibrillated cellulose and fines on the drainage of kraft pulp suspension and paper strength. Cellulose 17:1005–1020CrossRef
Zurück zum Zitat Torvinen K, Sievänen J, Hjelt T, Hellén E (2012) Smooth and flexible filler- nanocellulose composite structure for printed electronics applications. Cellulose 19:821–829CrossRef Torvinen K, Sievänen J, Hjelt T, Hellén E (2012) Smooth and flexible filler- nanocellulose composite structure for printed electronics applications. Cellulose 19:821–829CrossRef
Metadaten
Titel
Influence of TEMPO-oxidised cellulose nanofibrils on the properties of filler-containing papers
verfasst von
Ana F. Lourenço
José A. F. Gamelas
Tiago Nunes
José Amaral
Peré Mutjé
Paulo J. Ferreira
Publikationsdatum
17.11.2016
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 1/2017
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-016-1121-9

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