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Cellulose (London), ISSN 0969-0239, 6/2019, Volume 26, Issue 9, pp. 5483 - 5496
Nanocellulose | Rheology | Sustainable Development | Bioorganic Chemistry | Polymer Sciences | TEMPO-mediated oxidation | Chemistry | Physical Chemistry | Ionic strength | Food additives | Cellulose nanofibrils (CNFs) | Ceramics, Glass, Composites, Natural Materials | Organic Chemistry | Physical Sciences | Materials Science, Textiles | Materials Science | Technology | Polymer Science | Science & Technology | Materials Science, Paper & Wood | Usage | Cellulose fibers | Materials | Properties | Observations | Viscosity | Chemical industry | Storage modulus | Cellulose | Xanthan | Agglomeration | Dispersions | Flocculation | Dependence | Electrolytes | Rheological properties
Journal Article
Cellulose (London), ISSN 0969-0239, 12/2013, Volume 20, Issue 6, pp. 2825 - 2838
Polymer Sciences | Absorbent | Chemistry | Birch | Foam | Physical Chemistry | Kraft pulp | TEMPO | MFC | Bioorganic Chemistry | Organic Chemistry | Physical Sciences | Materials Science, Textiles | Materials Science | Technology | Polymer Science | Science & Technology | Materials Science, Paper & Wood | Disintegration | Raw materials | Saline solutions | Retention | Pulp & paper mills | Fibers | Foams | Pore size | External pressure | Oxidation | Porosity | Pulp & paper industry | strength | Textil-, gummi- och polymermaterial | Paper, Pulp and Fiber Technology | Pappers-, massa- och fiberteknik | norway spruce | xylan | microfibrils | acid | depolymerization | cellulose | dispersions | mediated oxidation | Textile, Rubber and Polymeric Materials | eucalyptus pulps
Journal Article
Fuel processing technology, ISSN 0378-3820, 08/2017, Volume 163, pp. 60 - 66
Homogenization | Pyrolysis oil | Alcohol blends | Phase separation | Forest residue | Engineering | Physical Sciences | Engineering, Chemical | Chemistry | Technology | Chemistry, Applied | Energy & Fuels | Science & Technology | Pyrolysis | Fossil fuels | Energy minerals | Analysis | Biomass energy | Alcohols | Residues | Forests | Wood | Alcohol | Stability analysis | Biomass | Blending | Microscopy | Storage stability | Moisture content | Butanol | Content analysis
Journal Article
Bioresources, ISSN 1930-2126, 2012, Volume 7, Issue 2, pp. 1666 - 1686
Journal Article
Nordic pulp & paper research, ISSN 0283-2631, 01/2014, Volume 29, Issue 1, pp. 156 - 166
Journal Article
Cellulose (London), ISSN 0969-0239, 08/2012, Volume 19, Issue 4, pp. 1413 - 1423
MFC | TEMPO | Composite | Foam | Liquid retention | CTMP fibres | Physical Sciences | Materials Science, Textiles | Materials Science | Technology | Polymer Science | Science & Technology | Materials Science, Paper & Wood | Composition | Absorbents | Cellulose | Chemical properties | Chemical processes | Research | Identification and classification | Production processes | Freeze drying | Polymer matrix composites | Stability | Cellulose fibers | Disintegration | Superabsorbent polymers | Pulp & paper mills | Renewable resources | Absorption | Composite materials | Pore size distribution | Kraft pulp | Stiffness | Oxidation | Porosity | Materials Engineering | native cellulose | Kemiteknik | aerogels | Materialteknik | Chemical Engineering
Journal Article
Nanomaterials (Basel, Switzerland), ISSN 2079-4991, 02/2019, Volume 9, Issue 2, p. 259
Enzymatical treatment | Nanocelluloses | Emulsion stability | O/w emulsions | Cellulose nanofibrils (CNFs) | TEMPO-oxidation | Science & Technology - Other Topics | Materials Science | Nanoscience & Nanotechnology | Technology | Materials Science, Multidisciplinary | Science & Technology | emulsion stability | w emulsions | enzymatical treatment | cellulose nanofibrils (CNFs) | nanocelluloses | o | o/w emulsions
Journal Article
Nordic pulp & paper research, ISSN 0283-2631, 08/2015, Volume 30, Issue 3, pp. 443 - 451
Journal Article
Bioresources, ISSN 1930-2126, 2013, Volume 8, Issue 2, pp. 2099 - 2117
TEMPO oxidation | Free swelling capacity | Morphology | Absorbent foam | Laboratory scale | Centrifuge retention capacity | Microfibrillated cellulose | Scale-up | Materials Science | Technology | Science & Technology | Materials Science, Paper & Wood | Paper, Pulp and Fiber Technology | Pappers-, massa- och fiberteknik
Journal Article
Nordic pulp & paper research, ISSN 0283-2631, 08/2013, Volume 28, Issue 3, pp. 366 - 376
sodium | TEMPO oxidation | water retention value | softwood kraft pulp | Displacement washing | Sodium | Softwood kraft pulp | Water retention value | Materials Science | Technology | Science & Technology | Materials Science, Paper & Wood | Paper, Pulp and Fiber Technology | Pappers-, massa- och fiberteknik
Journal Article
Bioresources, ISSN 1930-2126, 2013, Volume 8, Issue 4, pp. 5925 - 5946
Journal Article
TAPPI International Conference on Nanotechnology for Renewable Materials 2016, 2016, Volume 1, pp. 206 - 215
Conference Proceeding
2019, Volume 26, Issue 9
Viscosity | Nanocellulose | Gel-forming ability | Rheology | Cellulose | Elasticity | Rheological measurements | Dispersions | TEMPO-mediated oxidation | Rheological property | Oxidized cellulose | Naturvetenskap | Ionic strength | Food additives | Cellulose nanofibrils (CNFs) | Electrolytes | Oxidation | Natural Sciences | Nanofibers | Aqueous dispersions | Fibril aggregations
Publication
2015, Volume 30, Issue 3
Lignin | Additives | Homogenisation | Thermomechanical pulp | Cellulose | Teknik och teknologier | Mechanical pulp | Pulp materials | Pulp | Pre-Treatment | Film preparation | Paper properties | Pretreatment methods | Lignocellulose microfibrils | Homogenization method | Sulfonation | Mechanical Pulps | Continuous films | Raw Materials | Thermomechanical pulping process | Homogenization | Cellulose microfibrils | Chemical pulp | Tensile strength | Cellulose films | Paper strengths | Engineering and Technology | Carboxymethylation | Cellulose Derivatives | Paper | Micro-fibrils
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2019, Volume 9, Issue 2
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2016, Volume 163
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2013, Issue 3
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