Skip to main content
Log in

Lignin utilization options and methods

  • Published:
Russian Journal of General Chemistry Aims and scope Submit manuscript

Abstract

Trends in use were explored for lignins which rank among the most abundant renewable organic resources and attract much interest due to their complex structure and suitability for diversified applications as determined by natural origin. A lignin production and processing technology was described.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Rodionov, A.I., Klushin, V.N., and Sister, V.G., Tekhnologicheskie protsessy ekologicheskoi bezopasnosti (Technological Processes in Environmental Safety), Kaluga: Izd. Bochkarevoi, 2000.

    Google Scholar 

  2. Yagodin, G.A., Tarasova, N.P., and Purtova, E.E., Ekologiya i ustoichivoe razvitie (Ecology and Sustainable Development), Moscow: Mezhdunar. Univ. v Moskve, 2005.

    Google Scholar 

  3. Simitris, J. and Sturakis, J., J. Anal. Appl. Pyrol., 1993, vol. 26, no. 1, p. 3752.

    Google Scholar 

  4. Alvarez-Tallacla, P., et al., Carbon’94, Granada, July 3–8, 1994: Extended Abstracts and Program, p. 288.

  5. Rodriguez-Mirasd, J. and Cordero T., Carbon’94, Granada, July 3–8, 1994: Extended Abstracts and Programne, Granada, 1994, p. 444

  6. Ismailova, M.G. and Ismailova, P.L., Materialy XI Vserossiiskogo simpoziuma “Aktual’nye problemy teorii adsorbtsii, poristosti i adsorbtsionnoi selektivnosti” (Proc. XI Russian Sym. “Topical Issues of the Theory of Adsorption, Porosity, and Adsorption Selectivity”), Moscow, 2007, p. 48.

  7. Kiselev, V.P., Vestn. Krasnoyarsk. Gos. Univ., 2006, no. 2, p. 52.

  8. Ivanova, N.V., Ivanchenko, A.A., and Goroshova, V.G., Dokl. Akad. Nauk SSSR, 1995, vol. 343, no. 4, p. 486.

    CAS  Google Scholar 

  9. Rupp, E., Zhong, Q., and Zuman, P., Electroanalysis, 1992, vol. 4, no. 1, p. 11.

    Article  CAS  Google Scholar 

  10. Nevzorov, A.L., Kozmin, D.D., Severova, G.V., and Koptyaev, V.V., Izv. Vyssh. Uchebn. Zaved., Lesn. Zh., 1995, no. 1, p. 86.

  11. Bogdanovich, I.I. et al., in Mezhdunarodnaya konf. “Teoriya i praktika adsorbtsionnykh protsessov” (Int. Conf. “Theory and Practice of Adsorption Processes”), Moscow: 1996.

  12. Khitrin, S.V., Fuks, S.L., and Devyaterikova, S.V., Mir Nefteprod., 2005, no. 2, p. 34.

  13. Nakano, J., Kami Pa Gikyoshy, 1995, vol. 49, no. 12, p. 1878.

    CAS  Google Scholar 

  14. JPN Patent Application no. 466536, 1996.

  15. Drozdov, V.A., Efremov, D.K., and Gulyaeva, T.I., in X Mezhdunarodnaya konf. “Teoreticheskie problemy khimii poverkhnosti, adsorbtsii i khromatografii” (X Int. Conf. “Theoretical Problems of Surface Chemistry, Adsorption, and Chromatography”), Moscow: Granitsa, 2006, p. 108.

    Google Scholar 

  16. RF Patent Application no. 2005118620/15, 2006.

  17. Veprikova, E.V. et al., Khim. Rast. Syr’ya, 2005, no. 1, p. 65.

  18. Manskaya, S.M. and Kadina, L.A., Geokhimiya lignina (Lignin Geochemistry), Moscow: Nauka, 1975.

    Google Scholar 

  19. Popova, O.V. et al., in Mezhdunarodnaya konf. “Kompozit-2007” (Int. Conf. “Composite-2007”), Saratov: Saratov. Gos. Tekh. Univ, 2007, p. 299.

    Google Scholar 

  20. Rachkova, N.G., Vestn. Inst. Biol. Komi Nauchn. Tsentra Ural. Otd. Ross. Akad. Nauk, 2005, no. 8, p. 71.

  21. Ergozhin, E.E., Chopabaeva, N.N., and Tasmagambet, A.T., Vodoochistka. Vodopodgotovka. Vodosnabzhenie, 2008, no. 4, p. 22.

  22. Strakhov, V.M. and Okladnikov, V.P., Koks Khim., 2006, no. 8, p. 19.

  23. Parajuli, D. et al., Ind. Eng. Chem. Res., 2006, vol. 45, no. 1, p. 8.

    Article  CAS  Google Scholar 

  24. Parajuli, D. et al., React. Funct. Polym., 2005, vol. 62, no. 2, p. 129.

    Article  CAS  Google Scholar 

  25. Liu, Ming-Hua and Huang, Jian-Hui, J. Appl. Polym. Sci., 2006, vol. 101, no. 4, p. 2284.

    Article  CAS  Google Scholar 

  26. Betancur, M. et al., Bioresour. Technol., 2009, vol. 100, no. 3, p. 1130.

    Article  CAS  Google Scholar 

  27. Demirbas, A., Energy Sources, 2006, vol. 27, no. 15, p. 1449.

    Article  Google Scholar 

  28. Demirbas, A., Energy Sources A, 2007, vol. 29, no. 2, p. 117.

    Article  CAS  Google Scholar 

  29. Chopabaeva, N.N., Ergozhin, E.E., Tasmagambet, A.T., and Nikitina, A.I., Khim. Tverd. Topl., 2009, no. 2, p. 43.

  30. Wang, X., Yang, K., Tao, S., and Xing, B., Environ. Sci. Technol., 2007, vol. 41, no. 1, p. 185.

    Article  CAS  Google Scholar 

  31. Kuznetsov, P.N. et al., Khim. Tekhnol., 2008, no. 10, p. 526.

  32. Shchipko, M.L., Eremina, A.O., and Golovina, V.V., Zh. Sib. Fed. Univ., Ser. Khim., 2008, vol. 1, no. 2, p. 166.

    Google Scholar 

  33. Nikolaichuk, A.A. et al., Sorbts. Khromatogr. Prots., 2007, vol. 7, no. 5, p. 835.

    Google Scholar 

  34. US Patent 7192536, 2007.

  35. Bittencourt, P.R. et al., J. Therm. Anal. Calorim., 2005, vol. 79, no. 2, p. 371.

    Article  CAS  Google Scholar 

  36. Jin, F. et al., J. North-East Forest. Univ., 2007, vol. 35, no. 9, p. 73.

    Google Scholar 

  37. Mishra, S.B. et al., J. Mater. Process. Technol., 2007, vol. 183, nos. 2–3, p. 273.

    Article  CAS  Google Scholar 

  38. Liu, Q. et al., J. Fuzhou Univ. Natur. Sci. Ed., 2007, vol. 35, p. 152.

    CAS  Google Scholar 

  39. Yang, L. and Liu, M., J. Petrochem. Univ., 2007, vol. 20, no. 2, p. 9.

    Google Scholar 

  40. Beletskaya, V.V., in Mezhdunarodnaya konf. “Sovremennye naukoemkie innovatsionnye tekhnologii razvitiya promyshlennosti regiona” (Int. Conf. “Modern High-Tech Innovative Technologies of Regional Industrial Development”), Kostroma: Kostrom. Gos. Tekhnol. Univ., 2006, p. 128.

    Google Scholar 

  41. Nelyubina, N.A. and Shibaeva, G.N., Izv. Vyssh. Uchebn. Zaved., Stroit-vo, 2006, no. 2, p. 40.

  42. Peng, Y., Zeng, X., and Lu, H., Contemp. Chem. Ind., 2006, vol. 35, no. 6, p. 377.

    CAS  Google Scholar 

  43. Liu, G., Qiu, X., and Xing, D., Fine Chem., 2007, vol. 24, no. 2, p. 190.

    CAS  Google Scholar 

  44. Kamel, S., Int. J. Polym. Mater., 2006, vol. 55, no. 4, p. 283.

    Article  CAS  Google Scholar 

  45. Graupner, N., J. Mater. Sci., 2008, vol. 43, no. 15, p. 5222.

    Article  CAS  Google Scholar 

  46. Popova, O.V., Doctoral (Tech.) Dissertation, Saratov, 2006.

  47. FRG Patent Application no. 102004031078, 2006.

  48. FRG Patent Application no. 102006014099, 2007.

  49. RF Patent 2318013, 2008.

  50. Siegle, S., Gummi, Fasern, Kunstst., 2007, vol. 60, no. 1, p. 38.

    CAS  Google Scholar 

  51. Khitrin, S.V. et al., Vserossiiskaya konf. “Nauka-proizvodstvo-tekhnologiya-ekologiya” (Russian Conf. “ScienceProduction-Technology-Ecology”), Kirov: Vyat. Gos. Univ., 2004, vol. 3, p. 131.

    Google Scholar 

  52. Khitrin, S.V. et al., in Mezhdunarodnaya konf. (Int. Conf.) “PROTEK”, Moscow: Stankin, 2005, vol. 2, no. 8, p. 230.

    Google Scholar 

  53. Reztsova, V.V., Vopr. Onkol., 2007, vol. 53, no. 5, p. 505.

    CAS  Google Scholar 

  54. Tejado, A. et al., J. Appl. Polym. Sci., 2007, vol. 106, no. 4, p. 2313.

    Article  CAS  Google Scholar 

  55. Tejado, A. et al., J. Appl. Polym. Sci., 2008, vol. 107, no. 1, p. 159.

    Article  CAS  Google Scholar 

  56. Chaudhari, A. et al., Int. J. Polym. Anal. Charact., 2006, vol. 11, no. 3, p. 197.

    Article  CAS  Google Scholar 

  57. Hatakeyama, H. et al., Composites: A, 2005, vol. 36, no. 5, p. 698.

    Article  Google Scholar 

  58. Gregorova, A. et al., Polym. Degrad. Stab., 2006, vol. 91, no. 2, p. 229.

    Article  CAS  Google Scholar 

  59. Kosikova, B. et al., J. Appl. Polym. Sci., 2007, vol. 103, no. 2, p. 1226.

    Article  CAS  Google Scholar 

  60. Wu, G., Cheng, X., and Yang, X., Fine Chem., 2006, vol. 23, no. 2, p. 165.

    CAS  Google Scholar 

  61. Alalykin, A.A., Cand. (Chem.) Dissertation, Moscow, 2002.

  62. Khitrin, K.S., Cand. (Chem.) Dissertation, Moscow, 2007.

  63. Khitrin, K.S. et al., IRC’04, Moscow, 2004, p. 243.

  64. Khitrin, K.S. et al., Plast. Massy, 2006, no. 4, p. 28.

  65. Kireev, V.V., Khitrin, K.S., and Alalykin, A.A., Plast. Massy, 2006, no. 4, p. 37.

  66. Pereverzeva, E.R. et al., in X Mezhdunarodnyi s″ezd “Aktual’nye problemy sozdaniya novykh lekarstvennykh preparatov prirodnogo proiskhozhdeniya” (X Int. Congress “Topical Problems of Development of New Drugs of Natural Origin”), St. Petersburg: Nauchn.-Issled. Inst. Khim., Sankt-Petersb. Gos. Univ., 2006, p. 250.

    Google Scholar 

  67. Berkovich, A.M., Materialy simpoziuma “Sintez guminopodobnykh substantsii i razrabotka na ikh osnove lekarstvennykh preparatov shirokogo spektra deistviya” (Proc., Symposium “Synthesis of Humic-Like Substances and Development of Broad Action Spectrum Drugs Thereof”), Tyumen: Slovo, 2008, p. 21.

    Google Scholar 

  68. Karmanov, A.P. et al., VII Mezhdunarodnaya konf. “Bioantioksidant” (VII Int. Conf. “Bioantioxidant”), Moscow: Ross. Univ. Druzhby Narod., 2006, p. 49.

    Google Scholar 

  69. Brudin, S. et al., J. Chromatogr. A, 2008, vol. 1201, no. 2, p. 196.

    Article  CAS  Google Scholar 

  70. Demina, A.V., V Mire Nauchn. Otkr., 2009, no. 1, p. 63.

  71. FRG Patent Application no. 102006017672, 2007.

  72. US Patent 7056970, 2006.

  73. Kozlowski, R. et al., Przem. Chem., 2008, vol. 87, no. 12, p. 1178.

    CAS  Google Scholar 

  74. US Patent 7056970, 2006.

  75. RF Patent 2292896, 2007.

  76. RF Patent 2325807, 2008.

  77. Fernandez-Perez, M., J. Environ. Sci. Health: B, 2007, vol. 42, no. 7, p. 857.

    Article  CAS  Google Scholar 

  78. Baranova, A.V. and Shibaeva, G.N., in II Vserossiiskaya konf. “Razvitie dorozhno-transportnogo kompleksa i stroitel’noi infrastruktury na osnove ratsional’nogo prirodopol’zovaniya” (II Russian Conf. “Development of Road-Transport Complex and Building Infrastructure on the Basis of Rational Use of Natural Resources”), Omsk, 2007, vol. 2, p. 79.

    Google Scholar 

  79. Kiselev, V.P. et al., Khim. Rast. Syr’ya, 2008, no. 2, p. 119.

  80. RF Patent 2294357, 2007.

  81. RF Patent 2290378, 2006.

  82. Siegle, S., Gummi, Fasern, Kunstst., 2007, vol. 60, no. 1, p. 38.

    CAS  Google Scholar 

  83. Pang, Y. et al., Chem. Ind. Forest Prod., 2008, vol. 28, no. 2, p. 67.

    CAS  Google Scholar 

  84. Larsen, J. et al., Chem. Eng. Technol., 2008, vol. 31, no. 5, p. 765.

    Article  CAS  Google Scholar 

  85. Myasoedova, V.V., in II Mezhdunarodnaya konf. “Fizikokhimiya lignina” (II Int. Conf. “Physical Chemistry of Lignin”), Arkhangel’k: Arkhangel’sk. Gos. Tekhnol. Univ., 2007, p. 34.

    Google Scholar 

  86. Nenkova, S., Vasileva, T., and Stanulov, K., Khim. Prirod. Soed., 2008, no. 2, p. 144.

  87. Wahyudiono, Sasaki, M. and Goto, M., Chem. Eng. Process., 2008, vol. 47, nos. 9–10, p. 1609.

    CAS  Google Scholar 

  88. Yang, H. and Xie, Y., Chem. Ind. Forest Prod., 2008, vol. 28, no. 1, p. 1.

    Google Scholar 

  89. Zabkova, M. et al., Separ. Purif. Technol., 2007, vol. 55, no. 1, p. 56.

    Article  CAS  Google Scholar 

  90. Ozhogin, V.V. et al., Stal’, 2007, no. 1, p. 96.

  91. Strakhov, V.M., Koks Khim., 2009, no. 1, p. 20.

  92. Vorob’ev, V.P., Golunov, A.D., and Ignat’ev, A.V., Stal’, 2008, no. 8, p. 67.

  93. Verendyakina, N.A., in 6 Respublikanskaya konf. “Nauka i innovatsii v Respublike Mordoviya” (6 Rep. Conf. “Science and Innovations in the Republic of Mordovia”), Saransk: Nauchno-Issled. Inst. Gumanit. Nauk, 2007, p. 570.

    Google Scholar 

  94. Afanas’ev, N.I., Selyanina, S.B., and Selivanova, N.V., Zh. Prikl. Khim., 2008, vol. 81, no. 10, p. 1731.

    Google Scholar 

  95. Zhou, M. et al., Fuel Proces. Technol., 2007, vol. 88, no. 4, p. 375.

    Article  CAS  Google Scholar 

  96. Tiranov, P.P. and Sokolov, O.M., in Mezhdunarodnaya konf. “Povyshenie kachestva stroitel’stva skvazhin” (Int. Conf. “Improving the Quality of Well Construction”), Ufa: Monografiya, 2005, p. 208.

    Google Scholar 

  97. Ul’yanov, B.A., Shcherbin, S.A., Chernetskaya, N.V., in XVII Mezhdunarodnaya konf. “Matematicheskie metody v tekhnike i tekhnologiyakh” (XVII Int. Conf. “Mathematical Methods in Engineering and Technology”), Kostroma: Kostrom. Gos. Tekhnol. Univ., 2004, vol. 9, no. 11, p. 115.

    Google Scholar 

  98. Shalyminova, D.P. et al., Khim. Vys. Energ., 2008, vol. 42, no. 5, p. 388.

    Google Scholar 

  99. Andreikov, E.I. et al., Khim. Inter. Ust. Razv., 2008, vol. 16, no. 5, p. 507.

    CAS  Google Scholar 

  100. Glazatov, A.N. et al., Stal’, 2008, no. 8, p. 68.

  101. RF Patent 2277020, 2006.

  102. US Patent 7282636, 2007.

  103. Aoyagi, M. and Funaoka, M.A., XXI IUPAC Symp. on Photochemistry, Tokyo: ICOS, 2006, p. 491.

    Google Scholar 

  104. Li, P., Yang, D., Lou, H., and Qiu, X., J. Fuel Chem. Technol., 2008, vol. 36, no. 5, p. 524.

    Article  CAS  Google Scholar 

  105. Mohr, B.J. et al., Cem. Concr. Res., 2006, vol. 36, no. 7, p. 1240.

    Article  CAS  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to K. S. Khitrin.

Additional information

Original Russian Text © K.S. Khitrin, S.L. Fuks, S.V. Khitrin, S.A. Kazienkov, D.S. Meteleva, 2011, published in Rossiiskii Khimicheskii Zhurnal, 2011, Vol. 55, No. 1, pp. 38–44.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Khitrin, K.S., Fuks, S.L., Khitrin, S.V. et al. Lignin utilization options and methods. Russ J Gen Chem 82, 977–984 (2012). https://doi.org/10.1134/S1070363212050313

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1134/S1070363212050313

Keywords

Navigation