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Mendeleev Communications, 2021, Volume 31, Issue 3, Pages 376–378
DOI: https://doi.org/10.1016/j.mencom.2021.04.031
(Mi mendc935)
 

This article is cited in 7 scientific papers (total in 7 papers)

Communications

Dry reforming of lignin: the effect of impregnation with iron

L. M. Kustovab, A. L. Tarasova, V. D. Nissenbauma, A. L. Kustovab

a Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
b N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Moscow, Russian Federation
Full-text PDF (527 kB) Citations (7)
Abstract: Dry reforming of lignin was carried out in the presence of a catalytic amount of iron introduced into lignin by impregnation with a solution of iron(III) nitrate. Organic products with low molecular weight have been obtained at lower temperatures, including aromatic, aliphatic and phenolic compounds.
Keywords: lignin, carbon-containing materials, carbon monoxide, dry reforming, iron catalyst.
Document Type: Article
Language: English
Supplementary materials:
Supplementary_data_1.pdf (461.1 Kb)


Citation: L. M. Kustov, A. L. Tarasov, V. D. Nissenbaum, A. L. Kustov, “Dry reforming of lignin: the effect of impregnation with iron”, Mendeleev Commun., 31:3 (2021), 376–378
Linking options:
  • https://www.mathnet.ru/eng/mendc935
  • https://www.mathnet.ru/eng/mendc/v31/i3/p376
  • This publication is cited in the following 7 articles:
    1. Artem A. Medvedev, Alexander L. Kustov, Daria A. Beldova, Svetlana B. Polikarpova, Valeriy E. Ponomarev, Elena V. Murashova, Pavel V. Sokolovskiy, Leonid M. Kustov, “A Synergistic Effect of Potassium and Transition Metal Compounds on the Catalytic Behaviour of Hydrolysis Lignin in CO2-Assisted Gasification”, Energies, 16:11 (2023), 4335  crossref
    2. Artem A. Medvedev, Alexander L. Kustov, Daria A. Beldova, Konstantin B. Kalmykov, Mikhail Yu. Mashkin, Anastasia A. Shesterkina, Sergey F. Dunaev, Leonid M. Kustov, “Influence of the Method of Fe Deposition on the Surface of Hydrolytic Lignin on the Activity in the Process of Its Conversion in the Presence of CO2”, IJMS, 24:2 (2023), 1279  crossref
    3. Artem A. Medvedev, Daria A. Beldova, Konstantin B. Kalmykov, Alexey V. Kravtsov, Marina A. Tedeeva, Leonid M. Kustov, Sergey F. Dunaev, Alexander L. Kustov, “Carbon Dioxide Assisted Conversion of Hydrolysis Lignin Catalyzed by Nickel Compounds”, Energies, 15:18 (2022), 6774  crossref
    4. L. M. Kustov, A. L. Kustov, T. Salmi, “Processing of lignocellulosic polymer wastes using microwave irradiation”, Mendeleev Commun., 32:1 (2022), 1–8  mathnet  crossref
    5. O. V. Arapova, G. N. Bondarenko, O. V. Bukhtenko, M. V. Arkhipenko, M. V. Tsodikov, A. I. Netrusov, “Chemisorption tobacco mosaic virus removal from aqueous solutions and study of virus interaction with active chemisorbent surface by infrared spectroscopy”, Mendeleev Commun., 32:6 (2022), 831–833  mathnet  crossref
    6. A. A. Medvedev, A. L. Kustov, D. A. Beldova, A. V. Kravtsov, K. B. Kalmykov, B. Sarkar, E. M. Kostyukhin, L. M. Kustov, “Gasification of hydrolysis lignin with CO2 in the presence of Fe and Co compounds”, Mendeleev Commun., 32:3 (2022), 402–404  mathnet  crossref
    7. A. A. Shesterkina, A. A. Strekalova, E. V. Shuvalova, G. I. Kapustin, O. P. Tkachenko, L. M. Kustov, “Catalytic synthesis of isoprenol from fatty acid ester over bimetallic Cu–Fe catalysts”, Mendeleev Commun., 32:5 (2022), 672–674  mathnet  crossref
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