INVESTIGATION OF MODIFIED CEDAR NUT SHELL-BASED SORBENTS

UDC 676.166.3 544.723.2

  • Marija Evgen'evna Safonova Ural State Forest Engineering University Email: safonovame@m.usfeu.ru
  • Irina Andreevna Klepalova Ural State Forest Engineering University Email: klepalovaia@m.usfeu.ru
  • Tat'jana Ivanovna Maslakova Ural State Forest Engineering University Email: maslakovati@m.usfeu.ru
  • Inna Gennad'evna Pervova Ural State Forest Engineering University Email: pervovaig@m.usfeu.ru
Keywords: plant waste, cedar nut shells, thermal modification, chemical modification, sorbents

Abstract

The investigation was carried out to establish influences of thermal, chemical and thermochemical modifications on compositions of functional groups of the sorbents based on nut shells of the Siberian cedar (Pinus sibirica) and their physical and chemical properties. Samples of natural cedar nut shells (CNS) were thermally-modified at T=300 °С and analyzed by the methods of potentiometric titration and Fourier-transform infrared spectroscopy. It has been established that thermally-modified CNS possess 1.5–1.7 and 2.3–4.3 times as many hydroxyl and carboxyl groups in the constitution of sorbents grading 0.1–0.5 and 0.55–0.75 mm, respectively, as natural CNS. Chemical modification was carried out in nitric acid solutions with various concentrations (0.5–5n). It has been shown that being treated with 5n HNO3, the samples grading 0.55–0.75 mm possess 3.5 times as many carboxyl groups as natural CNS, while the samples grading 0.1–0.5 possess an increased number of hydroxyl groups only. Thermochemical modification was carried out in 2 stages: first, firing at a temperature of 300 °С, then chemical modification in HNO3 solutions with various concentrations. It has been revealed that this modification results to increasing predominantly hydroxyl groups in the constitution of carbon sorbents. The isotherm of sorption of copper (II) ions by the samples of modified CNS describes microporous solids with a relatively small outer surface, whereas the sorption isotherm of zinc (II) ions describes polymolecular adsorption onto both porous and macroporous adsorbents. The investigation has revealed that the sorbents being chemically and thermochemically modified with 5n nitric acid are most effective to extract copper ions.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Author Biographies

Marija Evgen'evna Safonova, Ural State Forest Engineering University

студент

Irina Andreevna Klepalova, Ural State Forest Engineering University

старший преподаватель  кафедры физико-химической технологии защиты биосферы

Tat'jana Ivanovna Maslakova, Ural State Forest Engineering University

кандидат химических наук, доцент, доцент кафедры физико-химической технологии защиты биосферы

Inna Gennad'evna Pervova, Ural State Forest Engineering University

доктор химических наук, доцент, директор химико-технологического института

References

Denisova M.N., Kadulina L.N. Polzunovskiy vestnik, 2016, no. 2, pp. 155–158. (in Russ.).

Zemnukhova L.A., Budaeva V.V., Fedorishcheva G.A. Khimiya Rastitel'nogo Syr'ya, 2009, no. 1, pp. 147–152. (in Russ.).

Yegorov Ye.Yu. Mitrofanov R.Yu., Lebedeva A.A. Polzunovskiy vestnik, 2007, no. 3, p. 35. (in Russ.).

Bayklz N., Segal L. Tsellyuloza i yeye proizvodnyye. [Cellulose and its derivatives]. Moscow, 1974, 504 p. (in Russ.).

Offan K.B., Petrov V.S., Yefremov A.A. Khimiya Rastitel'nogo Syr'ya, 1999, no. 2, pp. 61–64. (in Russ.).

Odintsova M.V. Fiziko-khimicheskiye kharakteristiki bifunktsional'nogo sorbenta iz skorlupy kedrovykh orekhov: avtoref. … dis. kand. khim. nauk. [Physico-chemical characteristics of a bifunctional sorbent from pine nut shells: avtoref. … dis. cand. chem. sciences]. Tyumen, 2010, 19 p. (in Russ.).

Vezentsev A.I., Nguyen Hoai Thiau, Gabruk N.G., Sokolovskiy P.V., Shuteyeva T.A., Kharitonova M.N. Aktual'nyye problemy teorii adsorbtsii, poristosti i adsorbtsionnoy selektivnosti. Materialy Vserossiyskogo simpoziuma s uchastiyem inostrannykh uchenykh. [Actual problems of the theory of adsorption, porosity and adsorption selectivity. Proceedings of the All-Russian Symposium with the participation of foreign scientists]. Moscow; Klyazma, 2013, p. 89. (in Russ.).

Patent 2404996 (RU). 2010. (in Russ.).

Patent 2467760 (RU). 2012. (in Russ.).

Patent 2565194 (RU). 2015. (in Russ.).

Gabruk N.G., Shuteyeva T.A. Sorbenty kak faktor kachestva zhizni i zdorov'ya: materialy IV Mezhdunarodnoy konfer-entsii. [Sorbents as a factor in the quality of life and health: materials of the IV International Conference]. Belgorod, 2012, pp. 57–62.

Nikiforova T.Ye., Kozlov V.A. Zhurnal prikladnoy khimii, 2008, vol. 81, no. 8, pp. 428–433. (in Russ.).

Pukhov I.G., Smirnova D.N., Il'in A.P., Smirnov N.N. Izvestiya vuzov. Khimiya i khim. tekhnologiya, 2012, no. 12, pp. 117–122. (in Russ.).

Boehm H.P. Carbon, 1994, vol. 32, no. 5, pp. 759–769. DOI: 10.1016/0008-6223(94)90031-0.

Lurie Yu.Yu. Spravochnik po analiticheskoy khimii. [Handbook of Analytical Chemistry]. Moscow, 1971, 456 p. (in Russ.).

Grishin I.S., Smirnov N.N., Smirnova D.N. Zhurnal prikladnoy khimii, 2020, vol. 93, no. 11, pp. 1560–1566. DOI: 10.31857/S0044461820110055. (in Russ.).

Malygin A.A. Sorosovskiy obrazovatel'nyy zhurnal, 2004, vol. 8, no. 1, pp. 32–37. (in Russ.).

Kambarova G.B. Nauka i novyye tekhnologii, 2011, no. 4, pp. 159–161. (in Russ.).

Obolenskaya A.V., Yel'nitskaya Z.P., Leonovich A.A. Laboratornyye raboty po khimii drevesiny i tsellyulozy. [Labora-tory work on the chemistry of wood and cellulose]. Moscow, 1991, 320 p. (in Russ.).

Bogayev A.N., Gorelova O.M., Kurochkin E.S. Polzunovskiy vestnik, 2014, no. 3, pp. 217–220. (in Russ.).

Bazarnova N.G. Metody issledovaniya drevesiny i yeye proizvodnykh: ucheb. posobiye. [Methods for the study of wood and its derivatives: a tutorial]. Barnaul, 2002, 160 p. (in Russ.).

Azarov V.I., Burov A.V., Obolenskaya A.V. Khimiya drevesiny i sinteticheskikh polimerov. [Chemistry of wood and synthetic polymers]. St. Petersburg, 2021, 624 p. (in Russ.).

Khokhotva A.P. Khimiya i tekhnologiya vody, 2010, vol. 32(6), pp. 604–612. (in Russ.).

Adsorbtsiya iz rastvorov na poverkhnosti tverdykh tel. [Adsorption from solutions on the surface of solid], ed. G. Parfit, L. Rochester. Moscow, 1986, 488 p. (in Russ.).

Yershov Yu.A. Kolloidnaya khimiya. [Colloid chemistry]. Moscow, 2014, 352 p. (in Russ.).

Zimon A.D., Pavlov A.N. Kolloidnaya khimiya nanochastits. [Colloidal chemistry of nanoparticles]. Moscow, 2012, 224 p. (in Russ.).

Stepanova S.V., Shaykhiyev T.I., Fridland S.V. Vestnik Kazanskogo tekhnologicheskogo universiteta, 2013, vol. 16, no. 15, pp. 318–321. (in Russ.).

Yermolenko I.N., Savrikov Ye.V., Nazarova T.L., Frumkin L.Ye., Shabanova N.V. Zhurnal prikladnoy khimii, 1987, vol. 60, no. 9, pp. 2053–2057. (in Russ.).

Fu L., Liu F., Ma Y., Tao X., Ling Ch., Li A., Shuang Ch., Li. Y. Chemical Engineering Journal, 2015, vol. 263, pp. 83–91. DOI: 10.1016/j.cej.2014.11.041.

El-Hendawy A.N.A. J. Hazard. Mater., 2009, vol. 167(1-3), pp. 260–267. DOI: 10.1016/j.jhazmat.2008.12.118.

Arapova O.V., Bondarenko G.N., Tsodikov M.V. Zhurnal fizicheskoy khimii, 2019, vol. 93, no. 7, pp. 1060–1070. DOI: 10.1134/S0044453719070021. (in Russ.).

Published
2023-03-13
How to Cite
1. Safonova M. E., Klepalova I. A., Maslakova T. I., Pervova I. G. INVESTIGATION OF MODIFIED CEDAR NUT SHELL-BASED SORBENTS // chemistry of plant raw material, 2023. № 1. P. 375-383. URL: http://journal.asu.ru/cw/article/view/11687.
Section
Application