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Publikationer av Olena Sevastyanova

Refereegranskade

Artiklar

[4]
H. Li et al., "Enhancing the Strength and Flexibility of Microfibrillated Cellulose Films from Lignin-Rich Kraft Pulp," ACS Sustainable Chemistry and Engineering, vol. 11, no. 47, s. 16793-16805, 2023.
[5]
I. Ribca et al., "Impact of lignin source on the performance of thermoset resins," European Polymer Journal, vol. 194, s. 112141-112141, 2023.
[6]
S. Mkrtchyan et al., "Mechanochemical Defluorinative Arylation of Trifluoroacetamides : An Entry to Aromatic Amides," Journal of Organic Chemistry, vol. 88, no. 2, s. 863-870, 2023.
[8]
B. Podkoscielna et al., "Degradation and flammability of bioplastics based on PLA and lignin," Polymer testing, vol. 111, 2022.
[9]
V. L. Vegunta et al., "High calcium content of Eucalyptus dunnii wood affects delignification and polysaccharide degradation in kraft pulping," Nordic Pulp & Paper Research Journal, vol. 37, no. 2, s. 338-348, 2022.
[11]
O. Gordobil et al., "Surface chemistry and bioactivity of colloidal particles from industrial kraft lignins," International Journal of Biological Macromolecules, vol. 220, s. 1444-1453, 2022.
[12]
C. Esteves et al., "The effects of high alkali impregnation and oxygen delignification of softwood kraft pulps on the yield and mechanical properties," Nordic Pulp & Paper Research Journal, vol. 37, no. 2, s. 223-231, 2022.
[13]
C. V. G. Esteves et al., "The impact of bleaching on the yield of softwood kraft pulps obtained by high alkali impregnation," Nordic Pulp & Paper Research Journal, vol. 0, no. 0, 2022.
[15]
S. Starrsjö et al., "Assessment of Q(OP)D(PO) bleachability of softwood kraft pulp," Nordic Pulp & Paper Research Journal, vol. 36, no. 4, s. 582-593, 2021.
[18]
L. Nosach et al., "Gas-phase crosslinking of the lignin on the nanoscale fumed silica surface," PHYSICS AND CHEMISTRY OF SOLID STATE, vol. 22, no. 4, s. 724-728, 2021.
[23]
C. S. V. G. Esteves et al., "Evaluating the Potential to Modify Pulp and Paper Properties through Oxygen Delignification," ACS Omega, vol. 5, no. 23, s. 13703-13711, 2020.
[24]
D. M. de Carvalho et al., "Impact of birch xylan composition and structure on film formation and properties," Holzforschung, vol. 74, no. 2, s. 184-196, 2020.
[25]
C. Gioia et al., "Lignin-Based Epoxy Resins : Unravelling the Relationship between Structure and Material Properties," Biomacromolecules, vol. 21, no. 5, s. 1920-1928, 2020.
[26]
T. M. Budnyak et al., "Membrane-Filtered Kraft Lignin-Silica Hybrids as Bio-Based Sorbents for Cobalt(II) Ion Recycling," ACS Omega, vol. 5, no. 19, s. 10847-10856, 2020.
[27]
L. Cederholm et al., "Microwave processing of lignin in green solvents : A high-yield process to narrow-dispersity oligomers," Industrial crops and products (Print), vol. 145, 2020.
[28]
I. V. Pylypchuk et al., "New Insight into the Surface Structure of Lignin Nanoparticles Revealed by H-1 Liquid-State NMR Spectroscopy," ACS Sustainable Chemistry and Engineering, vol. 8, no. 36, s. 13805-13812, 2020.
[29]
N. Giummarella et al., "New Structures in Eucalyptus Kraft Lignin with Complex Mechanistic Implications," ACS Sustainable Chemistry and Engineering, vol. 8, no. 29, s. 10983-10994, 2020.
[33]
T. M. Budnyak et al., "Tailored Hydrophobic/Hydrophilic Lignin Coatings on Mesoporous Silica for Sustainable Cobalt(II) Recycling," ACS Sustainable Chemistry and Engineering, vol. 8, no. 43, s. 16262-16273, 2020.
[35]
V. Halysh et al., "Effect of oxidative treatment on composition and properties of sorbents prepared from sugarcane residues," Industrial crops and products (Print), vol. 139, 2019.
[37]
D. M. de Carvalho et al., "Impact of the chemical composition of cellulosic materials on the nanofibrillation process and nanopaper properties," Industrial crops and products (Print), vol. 127, s. 203-211, 2019.
[38]
D. M. de Carvalho et al., "Improving the thermal stability of different types of xylan by acetylation," Carbohydrate Polymers, vol. 220, s. 132-140, 2019.
[39]
M. Goliszek et al., "Investigation of accelerated aging of lignin-containing polymer materials," International Journal of Biological Macromolecules, vol. 123, s. 910-922, 2019.
[44]
A. M. Puziy, O. I. Poddubnaya och O. Sevastyanova, "Carbon Materials from Technical Lignins : Recent Advances," Topics in Current Chemistry, vol. 376, no. 4, 2018.
[45]
S. Aminzadeh et al., "Membrane filtration of kraft lignin : Structural charactristics and antioxidant activity of the low-molecular-weight fraction," Industrial crops and products (Print), vol. 112, s. 200-209, 2018.
[46]
T. M. Budnyak et al., "Methylene Blue dye sorption by hybrid materials from technical lignins," Journal of Environmental Chemical Engineering, vol. 6, no. 4, s. 4997-5007, 2018.
[48]
M. Goliszek et al., "Synthesis and structure characterization of polymeric nanoporous microspheres with lignin," Cellulose, vol. 25, no. 10, s. 5843-5862, 2018.
[49]
V. Halysh et al., "Walnut shells as a potential low-cost lignocellulosic sorbent for dyes and metal ions," Cellulose, vol. 25, no. 8, s. 4729-4742, 2018.
[50]
M. Lauberts et al., "Fractionation of technical lignin with ionic liquids as a method for improving purity and antioxidant activity," INDUSTRIAL CROPS AND PRODUCTS, vol. 95, s. 512-520, 2017.
[51]
V. Galysh et al., "Impact of ferrocyanide salts on the thermo-oxidative degradation of lignocellulosic sorbents," Journal of thermal analysis and calorimetry (Print), vol. 128, no. 2, s. 1019-1025, 2017.
[52]
D. Morais de Carvalho et al., "Isolation and characterization of acetylated glucuronoarabinoxylan from sugarcane bagasse and straw," Carbohydrate Polymers, vol. 156, s. 223-234, 2017.
[53]
B. Podkościelna, M. Goliszek och O. Sevastyanova, "New approach in the application of lignin for the synthesis of hybrid materials," Pure and Applied Chemistry, vol. 89, no. 1, s. 161-171, 2017.
[55]
T. Mattsson et al., "The Development of a Wood-based Materials-biorefinery," BioResources, vol. 12, no. 4, s. 9152-9182, 2017.
[56]
M. Sobiesiak, B. Podkoscielna och O. Sevastyanova, "Thermal degradation behavior of lignin-modified porous styrene-divinylbenzene and styrene-bisphenol A glycerolate diacrylate copolymer microspheres," Journal of Analytical and Applied Pyrolysis, vol. 123, s. 364-375, 2017.
[59]
M. L. Rabinovich et al., "Carbon adsorbents from industrial hydrolysis lignin : The USSR/Eastern European experience and its importance for modern biorefineries," Renewable & sustainable energy reviews, vol. 57, s. 1008-1024, 2016.
[60]
D. M. de Carvalho et al., "Cold alkaline extraction as a pretreatment for bioethanol production from eucalyptus, sugarcane bagasse and sugarcane straw," Energy Conversion and Management, vol. 124, s. 315-324, 2016.
[61]
H. Lange et al., "Fractional Precipitation of Wheat Straw Organosolv Lignin : Macroscopic Properties and Structural Insights," ACS Sustainable Chemistry and Engineering, vol. 4, no. 10, s. 5136-5151, 2016.
[62]
[65]
O. Sevasyanova et al., "Tailoring the Molecular and Thermo-Mechanical Properties of Kraft Lignin by Ultrafiltration," Journal of Applied Polymer Science, vol. 131, no. 18, s. 9505-9515, 2014.
[66]
H. Wedin et al., "Impact of extended-impregnation cooking on the xylan structure in Eucalyptus urograndis kraft pulps," Nordic Pulp & Paper Research Journal, vol. 28, no. 4, s. 498-505, 2013.
[68]
D. Li, O. Sevastyanova och M. Ek, "Pretreatment of softwood dissolving pulp with ionic liquids," Holzforschung, vol. 66, no. 8, s. 935-943, 2012.
[69]
O. Sevastyanova, W. Qin och J. Kadla, "Effect of nanofillers as reinforcement agents for lignin composite fibers," Journal of Applied Polymer Science, vol. 117, no. 5, s. 2877-2881, 2010.
[70]
O. Sevastyanova, J. Li och G. Gellerstedt, "On the reaction mechanism of the thermal yellowing of bleached chemical pulps," Nordic Pulp & Paper Research Journal, vol. 21, no. 2, s. 188-192, 2006.
[71]
O. Sevastyanova, J. Li och G. Gellerstedt, "The influence of various oxidizable structures on the brightness stability of the bleached chemical pulps," Nordic Pulp & Paper Research Journal, vol. 21, no. 1, s. 49-53, 2006.
[72]
J. Li, O. Sevastyanova och G. Gellerstedt, "The distribution of oxidizable structures in ECF- and TCF- bleached kraft pulps," Nordic Pulp & Paper Research Journal, vol. 17, no. 4, s. 415-419, 2002.
[73]
J. Li, O. Sevastyanova och G. Gellerstedt, "The relationship between kappa number and oxidizable structures in bleached kraft pulps," Journal of Pulp and Paper Science (JPPS), vol. 28, no. 8, s. 262-266, 2002.

Konferensbidrag

[74]
A. Starrsjö et al., "Chlorine dioxide stage at near-neutral pH for AOX reduction," i NWBC 2018 - Proceedings of the 8th Nordic Wood Biorefinery Conference, 2018.
[75]
T. Mattsson et al., "Towards a wood based material biorefinery - A demonstrator," i 6th Nordic Wood Biorefinery Conference, NWBC 2015, 2015, s. 92-101.
[76]
[77]
D. Li, O. Sevastyanova och M. Ek, "Ionic Liquids pretreatment of cellulose fiber materials for improvement of reactivity and value added applications," i 16th International Symposium on Wood, Fiber and Pulping Chemistry - Proceedings, ISWFPC , 2011, s. 503-510.
[78]
O. Sevastyanova, D. Li och M. Ek, "Evaluation of Ionic Liquids as direct solvents for the manufacturing of novel products from cellulose," i 239th American Chemical Society (ACS) National Meeting. San Francisco, USA. March 21-25 2010, 2010.
[79]
O. B. Sevastyanova, J. Li och G. L. F. Gellerstedt, "On the reaction mechanism of thermal yellowing of chemical pulp," i Appita Annu. Conf., 2005, s. 517-523.
[80]
O. Sevastyanova, M. E. Lindström och G. Gellerstedt, "The influence of a bleaching sequence on the brightness stability of eucalyptus kraft pulp," i Appita Annual Conference, 2005, s. 251-255.
[81]
O. Sevastyanova, G. Gellerstedt och J. Li, "Extractability and chemical structure of residual and false lignin in kraft pulps," i Proc. of the 11th International Symposium on Wood and Pulping Chemistry (ISWPC), Nice, France, 2001.

Icke refereegranskade

Artiklar

[83]
B. Gawdzik och O. Sevastyanova, "Special Issue : "Environmentally Friendly Polymeric Blends from Renewable Sources"," Materials, vol. 14, no. 17, 2021.
[84]
D. M. de Carvalho et al., "Chemical and structural characterization of xylans from sugarcane bagasse and sugarcane straw," Abstracts of Papers of the American Chemical Society, vol. 251, 2016.
[85]
H. Lange, O. Sevastyanova och C. Crestini, "Correlating structural features of lignin with physical properties : Toward a descriptive-predictive database," Abstracts of Papers of the American Chemical Society, vol. 249, 2015.

Konferensbidrag

[87]
O. Sevastyanova et al., "Impact of bleaching sequence on the efficiency of final chlorine dioxide stage in ECF-type bleaching of eucalyptus kraft pulps," i 5th International Colloquium on Eucalyptus Pulp, ICEP, Porto Seguro, BA Brazil, 9.-12.5.2011, 2011.
[88]
O. Sevastyanova et al., "The final bleaching of eucalyptus kraft pulp with chlorine dioxide : what factors affecting its efficiency?," i International Pulp Bleaching Conference 2011 (IPBC), Portland, USA, October 4-5 2011, 2011.
[89]
H. Wedin et al., "The effect of extended impregnation kraft cooking and oxygen delignification on xylan structure," i 11th European Workshop on Lignocelluloses and Pulp (EWLP), 2010, s. 113-117.
[90]
O. Sevastyanova och M. Ek, "Use of Ionic Liquids for the pretreatment of cellulose fibre materials for improved rectivity and value added applications," i 4th Workshop on Cellulose, Regenerated Cellulose and Cellulose Derivatives. Karlstad, Sweden. November 17-18, 2009, 2009.
[91]
O. Sevastyanova, M. Lindström och G. Gellerstedt, "Influence of the bleaching sequence on the brightness stability of eucalyptus kraft pulp," i 3rd International Colloquium on Eucalyptus Pulp (ICEP). Belo Horizonte, Brazil. 4–7 March 2007, 2007.

Avhandlingar

[92]
O. Sevastyanova, "On the importance of oxidizable structures in bleached kraft pulps," Doktorsavhandling Stockholm : KTH, Trita-FPT-Report, 2005:39, 2005.
Senaste synkning med DiVA:
2024-11-21 01:08:05