PHYSICO-CHEMICAL PROPERTIES OF A COMPOSITE MATERIAL BASED ON CALCIUM HYDROPHOSPHATE AND A SUBSTRATE FROM ASPEN BARK

UDC 662.638

  • Mikhail Yur'yevich Belash Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: belash_mikhail@mail.ru
  • Irina Vladimirovna Korol'kova Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: ir-spectroscopy@yandex.ru
  • Yevgeniya Vladimirovna Veprikova Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: veprikova2@mail.ru
  • Galina Nikolayevna Bondarenko Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: gal@ksc.krasn.ru
  • Irina Vladimirovna Korol'kova Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: ir-spectroscopy@yandex.ru
  • Ol'ga Yur'yevna Fetisova Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: fou1978@mail.ru
  • Nikolay Vasil'yevich Chesnokov Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS” Email: cnv@icct.ru
Keywords: aspen bark, substrate, composite material, potassium dihydrophosphate, calcium chloride, calcium hydrophosphate, water resistance

Abstract

The physicochemical properties of the composite material obtained by sequentially impregnating the substrate from aspen bark with water solutions of KH2PO4 and CaCl2 under certain conditions were studied. Using the method of X-ray phase analysis, it was found that the main products of the interaction of KH2PO4 and CaCl2, which flows from the aspen bark on the substrate surface, are CaHPO4 and KCl. In this case, calcium chloride is present in the obtained composite material in the form of a complex compound CaCl2·Ca(OH)2·H2O. Using IR-spectral analysis, it was revealed that there is no interaction between the functional groups of the aspen bark substrate and mineral compounds during the preparation of the composite material. Based on thermal analysis data, the catalytic effect of the mineral components that make up the developed composite material on the decomposition of hemicellulose, cellulose and lignin that make up the substrate from aspen bark is revealed. It was found that the composite material modified with CaHPO4 is characterized by increased water resistance and after treatment with water at room temperature for 24 hours, 9.85% of phosphates are removed from it (from their initial content). This allows one to use the resulting composite material based on aspen bark as a delayed-action fertilizer.

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Author Biographies

Mikhail Yur'yevich Belash, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

аспирант, ведущий технолог

Irina Vladimirovna Korol'kova, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

младший научный сотрудник

Yevgeniya Vladimirovna Veprikova, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

кандидат технических наук, старший научный сотрудник

Galina Nikolayevna Bondarenko, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

кандидат химических наук, научный сотрудник

Irina Vladimirovna Korol'kova, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

младший научный сотрудник

Ol'ga Yur'yevna Fetisova, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

кандидат химических наук, научный сотрудник

Nikolay Vasil'yevich Chesnokov, Institute of Chemistry and Chemical Technology SB RAS, Federal Research Center “Krasnoyarsk Scientific Center SB RAS”

доктор химических наук,  заместитель директора по научной работе, главный научный сотрудник

References

Kuznetsov B.N., Levdanskiy V.A., Kuznetsova S.A. Khimicheskiye produkty iz drevesnoy kory: monografiya. [Wood Bark Chemicals: Monograph]. Krasnoyarsk, 2012, 260 p. (in Russ.).

Patent 2016296583 (US). 2016.

Safin R.G., Ziatdinova L.F., Arslanova G.R. Lesnoy vestnik, 2017, vol. 21, no. 2, pp. 65-69. DOI: 10.18698/2542-1468-2017-65-69. (in Russ.).

Soboleva S.V., Litovka Yu.A. Khimiya Rastitel'nogo Syr'ya, 2011, no. 2, pp. 83–86. (in Russ.).

Mikova N.M., Fetisova O.Yu., Ivanov I.P., Pavlenko N.M., Chesnokov N.V. Khimiya Rastitel'nogo Syr'ya, 2017, no. 4, pp. 53–64. DOI: 10.14258/jcprm2017042018. (in Russ.).

Veprikova Ye.V., Chesnokov N.V. Khimiya v interesakh ustoychivogo razvitiya, 2018, vol. 26, no. 4, pp. 379–386. DOI: 10.15372/KhUR20180404. (in Russ.).

Amalraj A., Pius A. Applied Water Science, 2017, vol. 7, no. 6, pp. 2653–2665. DOI: 10.1007/s13201-016-0479-z.

Dhobl R.M., Maddigapu P.R., Bhale A.G., Rayalu S. Environmental Science and Pollution Research, 2018, vol. 25, no. 20, pp. 19657–19674. DOI: 10.107/s11356-018-1792-x.

Alenkina T.V., Ovchinnikova M.V., Kireyev M.N., Nikiforov A.K. Problemy osobo opasnykh infektsiy, 2013, no. 2, pp. 66–69. (in Russ.).

Ottosen L.M., Block T., Nymark M., Christensen I.V. Wood Science Technology, 2011, vol. 45, no. 2, pp. 289–302. DOI: 10.1007/s00226-010-0325-7.

Ahmed S.A., Kim J.I., Park K.M., Chun S.K. J. Wood Science, 2011, vol. 57, pp. 295–301. DOI: 10.1007/s10086-011-1178-x.

Kuznetsov B.N., Chesnokov N.V., Ivanov I.P., Veprikova Ye.V., Ivanchenko N.M. Zhurnal sibirskogo federal'nogo universiteta. Khimiya, 2015, vol. 8, no. 2, pp. 232–255. DOI: 10.17516/1998-2836-2015-8-2-232-255. (in Russ.).

Ikanina Ye.V., Markov V.F., Kalyayeva M.I. Butlerovskiye soobshcheniya, 2016, vol. 48, no. 11, pp. 101–113. (in Russ.).

Veprikova Ye.V., Korol'kova I.V., Chesnokov N.V., Kuznetsov B.N. Zhurnal sibirskogo federal'nogo universiteta. Khimiya, 2017, vol. 10, no. 4, pp. 501–513. DOI: 10.17516/1998-2836-0044(in Russ.).

Veprikova Ye.V., Belash M.Yu., Chesnokov N.V., Kuznetsov B.N. Zhurnal sibirskogo federal'nogo universiteta. Khimiya, 2018, vol. 11, no. 3, pp. 377–389. DOI: 10.17516/1998-2836-0084. (in Russ.).

Patent 106748192 A (CN). 2017.

Veprikova Ye.V., Korol'kova I.V., Kuznetsov B.N., Chesnokov N.V. Khimiya Rastitel'nogo Syr'ya, 2018, no. 4, pp. 299–308. DOI: 10.14258/jcprm.2018043847. (in Russ.).

Socrates G. Infrared and Raman characteristic group frequencies: Tables and charts. John Wiley- Sons, 2004, 347 p.

Belyy V.A., Udoratina Ye.V., Kuchin A.V. Kinetika i kataliz, 2015, vol. 56, no. 5, pp. 672–678. DOI: 10.7868/S0453881115050020. (in Russ.).

Patwardhan P.R., Shanks B.H., Satrio J.A., Brown R.C. Bioresource Technology, 2010, vol. 101, no. 12, pp. 4646–4655. DOI: 10.1016/j.biortech.2010.01.112.

Lugovoy Yu.V., Chalov K.V., Stepacheva A.A., Sul'man E.M. Byulleten' nauki i praktiki, 2017, no. 12, pp. 76–83. DOI: 10.5281/zenodo.1101163. (in Russ.).

Published
2020-06-10
How to Cite
1. Belash M. Y., Korol’kova I. V., Veprikova Y. V., Bondarenko G. N., Korol’kova I. V., Fetisova O. Y., Chesnokov N. V. PHYSICO-CHEMICAL PROPERTIES OF A COMPOSITE MATERIAL BASED ON CALCIUM HYDROPHOSPHATE AND A SUBSTRATE FROM ASPEN BARK // chemistry of plant raw material, 2020. № 2. P. 357-364. URL: http://journal.asu.ru/cw/article/view/6543.
Section
Technology