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Erschienen in: Cellulose 18/2020

21.07.2020 | Original Research

Industrial application of orange tree nanocellulose as papermaking reinforcement agent

verfasst von: Eduardo Espinosa, Rafael Isaías Arrebola, Isabel Bascón-Villegas, Mónica Sánchez-Gutiérrez, Juan Domínguez-Robles, Alejandro Rodríguez

Erschienen in: Cellulose | Ausgabe 18/2020

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Abstract

The aim of this work was to study the feasibility of using orange tree pruning to obtain lignocellulose nanofibers (LCNFs) and their application in paperboard recycling process. The orange tree pruning was treated with an environmentally friendly process (13% NaOH on dry matter, at liquid/solid ratio of 8, 170 °C and 40 min). The cellulosic pulp obtained was used for the isolation of LCNFs by means of two different pretreatments, 2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPO)-mediated (TO-LCNFs) and mechanical refining (Mec-LCNFs), followed by high-pressure homogenization treatment. The reinforcement effect produced by the LCNF addition on paperboard recycled fiber was compared with other conventional industrial techniques such as chemical addition and mechanical beating. It was shown that TEMPO-mediated oxidation produces a greater delamination in fiber during its nanofibrillation, obtaining smaller width nanofibers with greater specific surface. The LCNF addition, especially TO-LCNFs, presents reinforcement effects comparable to those achieved by mechanical beating for the different mechanical properties, with the advantage of not modifying the fiber physically and increasing the numbers of recycling cycles. The economic analysis of both treatments shows that despite the Mec-LCNF cost is slightly higher, it is presented as an alternative to mechanical beating for use in paperboard recycling process.

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Literatur
Zurück zum Zitat Anastas PT, Warner JC (1998) Green chemistry: theory and practice. Oxford University Press, New York, p 30 Anastas PT, Warner JC (1998) Green chemistry: theory and practice. Oxford University Press, New York, p 30
Zurück zum Zitat Domínguez-Robles J, Espinosa E, Savy D, Rosal A, Rodríguez A (2016) Biorefinery process combining specel® process and selective lignin precipitation using mineral acids. BioResources 11:7061–7077CrossRef Domínguez-Robles J, Espinosa E, Savy D, Rosal A, Rodríguez A (2016) Biorefinery process combining specel® process and selective lignin precipitation using mineral acids. BioResources 11:7061–7077CrossRef
Zurück zum Zitat Fleur R, Karakashov B, Nechyporchuk O, Terrien M, Meyer V, Dufresne A, Belgacem MN, Bras J (2017) Pilot-scale twin screw extrusion and chemical pretreatment as an energy-efficient method for the production of nanofibrillated cellulose at high solid content. ACS Sustain Chem Eng 5:6524–6531. https://doi.org/10.1021/acssuschemeng.7b00630CrossRef Fleur R, Karakashov B, Nechyporchuk O, Terrien M, Meyer V, Dufresne A, Belgacem MN, Bras J (2017) Pilot-scale twin screw extrusion and chemical pretreatment as an energy-efficient method for the production of nanofibrillated cellulose at high solid content. ACS Sustain Chem Eng 5:6524–6531. https://​doi.​org/​10.​1021/​acssuschemeng.​7b00630CrossRef
Zurück zum Zitat González Z, Vargas F, Jiménez L, Rodríguez A (2013) Orange tree prunings as raw material for the cellulose production by Kraft process. Cell Chem Technol 47:603–611 González Z, Vargas F, Jiménez L, Rodríguez A (2013) Orange tree prunings as raw material for the cellulose production by Kraft process. Cell Chem Technol 47:603–611
Zurück zum Zitat Hetemäki S, Hanewinkel M, Muys B, Ollikainen M, Palahí M, Trasobares A (2017) Leading the way to a European circular bioeconomy strategy. From Science to Policy 5. European Forest Institute Hetemäki S, Hanewinkel M, Muys B, Ollikainen M, Palahí M, Trasobares A (2017) Leading the way to a European circular bioeconomy strategy. From Science to Policy 5. European Forest Institute
Zurück zum Zitat Jayme G (1994) Micro-swelling measurement in cellulosic pulp. Wochenbl Papierfabr 6:187–194 Jayme G (1994) Micro-swelling measurement in cellulosic pulp. Wochenbl Papierfabr 6:187–194
Zurück zum Zitat Lahtinen P, Liukkonen S, Pere J, Sneck A, Kangas H (2014) A comparative study of fibrillated fibers from different mechanical and chemical pulps. BioResources 9:2115–2127CrossRef Lahtinen P, Liukkonen S, Pere J, Sneck A, Kangas H (2014) A comparative study of fibrillated fibers from different mechanical and chemical pulps. BioResources 9:2115–2127CrossRef
Zurück zum Zitat Liu J, Yang R, Yang F (2015) Effect of the starch source on the performance of cationic starches having similar degree of substitution for papermaking using deinked pulp. BioResources 10:922–931 Liu J, Yang R, Yang F (2015) Effect of the starch source on the performance of cationic starches having similar degree of substitution for papermaking using deinked pulp. BioResources 10:922–931
Zurück zum Zitat Pääkkö M, Ankerfors M, Kosonen H, Nykänen A, Ahola S, Österberg M, Ruokolainen J, Laine J, Larsson PT, Ikkala O, Lindström T (2007) Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels. Biomacromolecules 8:1934–1941. https://doi.org/10.1021/bm061215pCrossRefPubMed Pääkkö M, Ankerfors M, Kosonen H, Nykänen A, Ahola S, Österberg M, Ruokolainen J, Laine J, Larsson PT, Ikkala O, Lindström T (2007) Enzymatic hydrolysis combined with mechanical shearing and high-pressure homogenization for nanoscale cellulose fibrils and strong gels. Biomacromolecules 8:1934–1941. https://​doi.​org/​10.​1021/​bm061215pCrossRefPubMed
Zurück zum Zitat Rojo E, Peresin MS, Sampson WW, Hoeger IC, Vartiainen J, Laine J, Rojas OJ (2015) Comprehensive elucidation of the effect of residual lignin on the physical, barrier, mechanical and surface properties of nanocellulose films. Green Chem 17:1853–1866. https://doi.org/10.1039/C4GC02398FCrossRef Rojo E, Peresin MS, Sampson WW, Hoeger IC, Vartiainen J, Laine J, Rojas OJ (2015) Comprehensive elucidation of the effect of residual lignin on the physical, barrier, mechanical and surface properties of nanocellulose films. Green Chem 17:1853–1866. https://​doi.​org/​10.​1039/​C4GC02398FCrossRef
Zurück zum Zitat Segal L, Creely JJ, Martin AE, Conrad CM (1959) An empirical method for estimating the degree of crystallinity of native cellulose using X-ray diffractometer. Text Res J 29:786–974CrossRef Segal L, Creely JJ, Martin AE, Conrad CM (1959) An empirical method for estimating the degree of crystallinity of native cellulose using X-ray diffractometer. Text Res J 29:786–974CrossRef
Zurück zum Zitat Vargas F, González Z, Sánchez R, Jiménez L, Rodríguez A (2012) Cellulosic pulps of cereal straws as raw material for the manufacture of ecological packaging. BioResources 7(3):4161–4170 Vargas F, González Z, Sánchez R, Jiménez L, Rodríguez A (2012) Cellulosic pulps of cereal straws as raw material for the manufacture of ecological packaging. BioResources 7(3):4161–4170
Zurück zum Zitat Weise U (1998) Hornification: mechanisms and terminology. Pap Puu-pap 80:110–115 Weise U (1998) Hornification: mechanisms and terminology. Pap Puu-pap 80:110–115
Metadaten
Titel
Industrial application of orange tree nanocellulose as papermaking reinforcement agent
verfasst von
Eduardo Espinosa
Rafael Isaías Arrebola
Isabel Bascón-Villegas
Mónica Sánchez-Gutiérrez
Juan Domínguez-Robles
Alejandro Rodríguez
Publikationsdatum
21.07.2020
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 18/2020
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-020-03353-w

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