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Original Articles

Quantitative Phosphorus-31 NMR Analysis of Six Soluble Lignins

Pages 65-82 | Published online: 20 Aug 2006

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Roberta Dagher, Véronic Landry & Tatjana Stevanovic. (2020) Contribution to understanding the color development on wood surfaces treated with iron salts by a combination of analytical methods. Journal of Wood Chemistry and Technology 40:4, pages 223-234.
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Tor Sewring, Julie Durruty, Lynn Schneider, Helen Schneider, Tuve Mattsson & Hans Theliander. (2019) Acid Precipitation of Kraft Lignin from Aqueous Solutions: The Influence of pH, Temperature, and Xylan. Journal of Wood Chemistry and Technology 39:1, pages 1-13.
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Mikhail Balakshin & Ewellyn Capanema. (2015) On the Quantification of Lignin Hydroxyl Groups With 31P and 13C NMR Spectroscopy. Journal of Wood Chemistry and Technology 35:3, pages 220-237.
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Yuan-Zong Lai & Yoshito Ohtani. (2003) On the Determination of β-Aryl Ether Units in Wood Lignin by an Ozonation Method. Journal of Wood Chemistry and Technology 23:3-4, pages 293-303.
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Denilson da Silva Perez, ManuelG. H. Terrones, Stéphane Grelier, Aziz Nourmamode, Alain Castellan, Reinaldo Ruggiero & AntônioE. H. Machado. (1998) Peroxyformic Acid Pulping of Eucalyptus Grandis Wood Chips and Sugar Cane Bagasse in one Stage and Characterization of the Isolated Lignins. Journal of Wood Chemistry and Technology 18:3, pages 333-365.
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Peter M. Froass, Arthur J. Ragauskas & Jian-er Jiang. (1996) Chemical Structure of Residual Lignin from Kraft Pulp. Journal of Wood Chemistry and Technology 16:4, pages 347-365.
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Articles from other publishers (63)

Xiaojuan Chen, Huchen Yang, Lidan Zhang, Zhongli Li, Yunna Xue, Rongfeng Wang, Xiaolin Fan & Shaolong Sun. (2023) Green construction and release mechanism of lignin-based double-layer coated urea. Biotechnology for Biofuels and Bioproducts 16:1.
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Haonan Zhang, Qi Liu, Yanchen Zhu, Zhang Feng, Hao Ren & Huamin Zhai. (2023) Structural comparison of different isolated eucalyptus lignins and analysis of their interaction mechanism with bovine serum albumin solution under QCM-D. Holzforschung 0:0.
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Chaofeng Zhang & Feng Wang. 2022. Lignin Conversion Catalysis. Lignin Conversion Catalysis 39 78 .
Qi Liu, Yanru Xu, Fangong Kong, Hao Ren & Huamin Zhai. (2022) Synthesis of phenolic resins by substituting phenol with modified spruce kraft lignin. Wood Science and Technology 56:5, pages 1527-1549.
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Qi Liu, Haonan Zhang, Hao Ren & Huamin Zhai. (2022) Structural analysis of light-colored separated lignin (lignocresol) and its antioxidant properties. International Journal of Biological Macromolecules 197, pages 169-178.
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Iuliana Ribca, Marcus E. Jawerth, Calvin J. Brett, Martin Lawoko, Matthias Schwartzkopf, Andrei Chumakov, Stephan V. Roth & Mats Johansson. (2021) Exploring the Effects of Different Cross-Linkers on Lignin-Based Thermoset Properties and Morphologies. ACS Sustainable Chemistry & Engineering 9:4, pages 1692-1702.
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Anna V. Faleva, Artem V. Belesov, Aleksandr Yu. Kozhevnikov, Danil I. Falev, Dmitry G. Chukhchin & Evgeniy V. Novozhilov. (2021) Analysis of the functional group composition of the spruce and birch phloem lignin. International Journal of Biological Macromolecules 166, pages 913-922.
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Adam Ekielski & Pawan Kumar Mishra. (2020) Lignin for Bioeconomy: The Present and Future Role of Technical Lignin. International Journal of Molecular Sciences 22:1, pages 63.
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Bin Luo, Zhuan Jia, Hongrui Jiang, Shuangfei Wang & Douyong Min. (2020) Improving the Reactivity of Sugarcane Bagasse Kraft Lignin by a Combination of Fractionation and Phenolation for Phenol–Formaldehyde Adhesive Applications. Polymers 12:8, pages 1825.
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Esakkiammal Sudha Esakkimuthu, Nathalie Marlin, Marie-Christine Brochier-Salon & Gérard Mortha. (2020) Study of the Reactivity of Lignin Model Compounds to Fluorobenzylation Using 13C and 19F NMR: Application to Lignin Phenolic Hydroxyl Group Quantification by 19F NMR. Molecules 25:14, pages 3211.
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Anna V. Faleva, Aleksandr Yu. Kozhevnikov, Sergey A. Pokryshkin, Artem V. Belesov & Ilya I. Pikovskoi. (2020) Structural characterization of the lignin from Saxifraga (Saxifraga oppositifolia L.) stems. International Journal of Biological Macromolecules 155, pages 656-665.
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Xiaolin Luo & Li Shuai. 2020. Green Adhesives. Green Adhesives 25 56 .
Shichao Wang, Mugaanire Tendo Innocent, Qianqian Wang, Hengxue Xiang, Jianguo Tang & Meifang Zhu. (2020) Kraft lignin-based piezoresistive sensors: Effect of chemical structure on the microstructure of ultrathin carbon fibers. International Journal of Biological Macromolecules 151, pages 730-739.
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Yong-Chao Lu, Yao Lu & Xing Fan. 2020. Lignin. Lignin 17 75 .
Xianzhi Meng, Claudia Crestini, Haoxi Ben, Naijia Hao, Yunqiao Pu, Arthur J. Ragauskas & Dimitris S. Argyropoulos. (2019) Determination of hydroxyl groups in biorefinery resources via quantitative 31P NMR spectroscopy. Nature Protocols 14:9, pages 2627-2647.
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Mona Alinejad, Christián Henry, Saeid Nikafshar, Akash Gondaliya, Sajad Bagheri, Nusheng Chen, Sandip Singh, David Hodge & Mojgan Nejad. (2019) Lignin-Based Polyurethanes: Opportunities for Bio-Based Foams, Elastomers, Coatings and Adhesives. Polymers 11:7, pages 1202.
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Tor Sewring, Weizhen Zhu, Maria Sedin & Hans Theliander. (2019) Predictions of Pair Interaction Potentials between Kraft Lignin Macromolecules in Black Liquors by Utilization of a Modified Poisson–Boltzmann Approach. Industrial & Engineering Chemistry Research 58:8, pages 3427-3439.
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Emmanuel Isaac Akpan. 2019. Sustainable Lignin for Carbon Fibers: Principles, Techniques, and Applications. Sustainable Lignin for Carbon Fibers: Principles, Techniques, and Applications 65 150 .
Yanqin Huang, Huacai Liu, Hongyou Yuan, Xiuzheng Zhuang, Song Yuan, Xiuli Yin & Chuangzhi Wu. (2018) Association of chemical structure and thermal degradation of lignins from crop straw and softwood. Journal of Analytical and Applied Pyrolysis 134, pages 25-34.
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Hélène Curmi, Christine Chirat, Marie-Christine Brochier Salon & Dominique Lachenal. (2018) Effect of autohydrolysis on alkaline delignification of mixed hardwood chips and on lignin structure. Holzforschung 72:8, pages 631-636.
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Christopher S. Lancefield, Hans L. J. Wienk, Rolf Boelens, Bert M. Weckhuysen & Pieter C. A. Bruijnincx. (2018) Identification of a diagnostic structural motif reveals a new reaction intermediate and condensation pathway in kraft lignin formation. Chemical Science 9:30, pages 6348-6360.
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Lars Passauer, Katrin Salzwedel, Marlene Struch, Nadine Herold & Jörn Appelt. (2016) Quantitative Analysis of the Etherification Degree of Phenolic Hydroxyl Groups in Oxyethylated Lignins: Correlation of Selective Aminolysis with FTIR Spectroscopy. ACS Sustainable Chemistry & Engineering 4:12, pages 6629-6637.
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Omid Hosseinaei, David P. Harper, Joseph J. Bozell & Timothy G. Rials. (2016) Role of Physicochemical Structure of Organosolv Hardwood and Herbaceous Lignins on Carbon Fiber Performance. ACS Sustainable Chemistry & Engineering 4:10, pages 5785-5798.
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Simone Strasser, Katrin Niegelhell, Manuel Kaschowitz, Sabina Markus, Rupert Kargl, Karin Stana-Kleinschek, Christian Slugovc, Tamilselvan Mohan & Stefan Spirk. (2016) Exploring Nonspecific Protein Adsorption on Lignocellulosic Amphiphilic Bicomponent Films. Biomacromolecules 17:3, pages 1083-1092.
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Stephanie Laurichesse & Luc Avérous. 2016. Biodegradable and Biobased Polymers for Environmental and Biomedical Applications. Biodegradable and Biobased Polymers for Environmental and Biomedical Applications 385 436 .
Wei Zhang, Noppadon Sathitsuksanoh, Blake A. Simmons, Charles E. Frazier, Justin R. Barone & Scott Renneckar. (2016) Revealing the thermal sensitivity of lignin during glycerol thermal processing through structural analysis. RSC Advances 6:36, pages 30234-30246.
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Tazien Rashid, Chong Fai Kait & Thanabalan Murugesan. (2016) Effect of Temperature on Molecular Weight Distribution of Pyridinium Acetate Treated Kraft Lignin. Procedia Engineering 148, pages 1363-1368.
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Nikhil D. Patil, Nicolas R. Tanguy & Ning Yan. 2016. Lignin in Polymer Composites. Lignin in Polymer Composites 27 47 .
Hendrik Mainka, Liane Hilfert, Sabine Busse, Frank Edelmann, Edgar Haak & Axel S. Herrmann. (2015) Characterization of the major reactions during conversion of lignin to carbon fiber. Journal of Materials Research and Technology 4:4, pages 377-391.
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Iulian Andrei Gilca, Roxana Elena Ghitescu, Adrian Catalin Puitel & Valentin I. Popa. (2014) Preparation of lignin nanoparticles by chemical modification. Iranian Polymer Journal 23:5, pages 355-363.
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Hoyong Chung & Newell R. Washburn. (2013) Chemistry of lignin-based materials. Green Materials 1:3, pages 137-160.
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Jae-Young Kim, Shinyoung Oh, Hyewon Hwang, Ung-Jin Kim & Joon Weon Choi. (2013) Structural features and thermal degradation properties of various lignin macromolecules obtained from poplar wood (Populus albaglandulosa). Polymer Degradation and Stability 98:9, pages 1671-1678.
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Christian J. Richard, Bhavish Patel, David Chadwick & Klaus Hellgardt. (2013) Hydrothermal deoxygenation of pyrolysis oil from Norwegian spruce: Picea abies. Biomass and Bioenergy 56, pages 446-455.
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C.G. da Silva, S. Grelier, F. Pichavant, E. Frollini & A. Castellan. (2013) Adding value to lignins isolated from sugarcane bagasse and Miscanthus. Industrial Crops and Products 42, pages 87-95.
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Geoffrey Moxley, Armindo Ribeiro Gaspar, Don Higgins & Hui Xu. (2012) Structural changes of corn stover lignin during acid pretreatment. Journal of Industrial Microbiology and Biotechnology 39:9, pages 1289-1299.
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Jackson D. MegiattoJrJr, Emmanuel Cazeils, Frédérique Ham-Pichavant, Stéphane Grelier, Christian Gardrat & Alain Castellan. (2012) Styrene-Spaced Copolymers Including Anthraquinone and β-O-4 Lignin Model Units: Synthesis, Characterization and Reactivity Under Alkaline Pulping Conditions. Biomacromolecules 13:5, pages 1652-1662.
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