Vestnik of Orenburg State Pedagogical University. Electronic Scientific Journal. 2023. № 4 (48). P. 78—86

 

BIOLOGICAL SCIENCES

Original article

UDC 574.24:633.853.483

DOI: https://doi.org/10.32516/2303-9922.2023.48.5

Evaluation of the phyto-remediation potential of Sinapis alba L. under conditions of Zn, Pb, Ni soil contamination

Irina S. Korotchenko, Candidate of Biological Sciences, Associate Professor
Krasnoyarsk State Agrarian University, Krasnoyarsk, Russia, kisaspi@mail.ru, https://orcid.org/0000-0002-9099-9537

Victoria A. Medvedeva, Postgraduate Student
Krasnoyarsk State Agrarian University, Krasnoyarsk, Russia, medvedeva_victoriya@mail.ru, https://orcid.org/0009-0003-5423-016X

 

Abstract

The article shows the expediency of using Sinapis alba L. of Semenovskaya variety as a phytoremediant plant for detoxification of soils from heavy metals. The study analyzed the changes in the content of gross and mobile forms of heavy metals (zinc, nickel and lead) in the soil before and after sowing sinapis as a model field experiment at the biopolygon of the Krasnoyarsk State Agrarian University (Krasnoyarsk, Krasnoyarsk Krai) in 2020 and 2021. It was found that there was a statistically significant (p < 0.05) decrease in the concentration of mobile and gross forms of lead, zinc and nickel in the soil at the end of the growing seasons of 2020 and 2021 when growing Sinapis alba L. of Semenovskaya variety. Thus, phytoremediation using Sinapis alba of Semenovskaya variety can be used on soils contaminated with lead, zinc and nickel ions at a dose of up to 10 MPC (APC), since during one growing season the concentration of mobile forms of lead, zinc and nickel decreases.

Key words

Pollution, heavy metals, phyto-remediation, Sinapis alba L., detoxification.

For citation:

Korotchenko I. S., Medvedeva V. A. Evaluation of the phyto-remediation potential of Sinapis alba L. under conditions of Zn, Pb, Ni soil contamination. Vestnik of Orenburg State Pedagogical University. Electronic Scientific Journal, 2023, no. 4 (48), pp. 78—86. DOI: https://doi.org/10.32516/2303-9922.2023.48.5.

The full text of the article PDF (Russian)

 

References

1. Andreeva I. V., Gabechaya V. V., Smelykh O. S. Otsenka effektivnosti primeneniya yarovogo rapsa v tekhnologii indutsirovannoi fitoekstraktsii nikelya v usloviyakh zagryaznennoi dernovo-podzolistoi pochvy [Evaluation of the effectiveness of the use of spring rape in the technology of induced phytoextraction of nickel in contaminated soddy-podzolic soil]. AgroEkoInfo, 2022, no. 4 (52). Available at: http://agroecoinfo.ru/STATYI/2022/4/st_417.pdf. DOI: 10.51419/202124417. (In Russian)
2. Vityaz’ S. N., Kolosova M. M., Dremova M. S., Kazakova M. A., Rot’kina E. B. Fitoremediatsionnyi potentsial tsvetkovykh rastenii po otnosheniyu k svintsu [Phytoremediation potential of flowering plants in relation to lead]. Samarskii nauchnyi vestnik — Samara Journal of Science, 2021, vol. 10, no. 1, pp. 41—46. (In Russian)
3. Voronina O. N., Lavrova O. P. Fitoremediatsionnyi potentsial rastitel’nykh soobshchestv narushennykh landshaftov [Phytoremediation potential of plant communities of degraded landscapes]. Vestnik Moskovskogo gosudarstvennogo universiteta lesa — Lesnoi vestnik — Forestry Bulletin, 2015, vol. 19, no. 5, pp. 78—82. (In Russian)
4. GOST R 58595-2019. Pochvy. Otbor prob [GOST R 58595-2019. Soils. Sample selection]. Moscow, Standartinform Publ., 2019. 6 p. (In Russian)
5. Gosudarstvennyi doklad “O sostoyanii i okhrane okruzhayushchei sredy v Krasnoyarskom krae v 2021 godu” [State report “On the state and protection of the environment in the Krasnoyarsk Territory in 2021”]. Available at: http://www.mpr.krskstate.ru/envir/page5849/0/id/57481. Accessed: 20.04.2023). (In Russian)
6. Daineko N. M., Matveenkov M. V. Effektivnost’ metoda biotestirovaniya v otsenke fitoremediatsionnogo potentsiala lyupina uzkolistnogo [Efficiency of the biotesting method in assessing the phytoremediation potential of angustifolia lupine]. Aktual’nye problemy gumanitarnykh i estestvennykh nauk, 2017, no. 8-1, pp. 116—118. (In Russian)
7. Elizar’eva E. N., Yanbaev Yu. A., Red’kina N. N., Baikov A. G. Opredelenie fitoremediatsionnogo potentsiala sel’skokhozyaistvennykh kul’tur na antropogenno-zagryaznennykh pochvakh [Determination of phytoremediation potential of agricultural crops grown on anthropogenous contaminated soils]. Vestnik Bashkirskogo gosudarstvennogo agrarnogo universiteta — Vestnik Bashkir State Agrarian University, 2017, no. 4 (44), pp. 24—29. (In Russian)
8. Zabolotskikh V. V., Vasil’ev A. V., Tankikh S. N., Karpovich E. E. Eksperimental’nye issledovaniya effektivnosti fitoremediatsii pochv, zagryaznennykh neft’yu, nefteproduktami i tyazhelymi metallami [Experimental studies of the effectiveness of phytoremediation of soils contaminated with oil, petroleum products and heavy metals]. Akademicheskii vestnik ELPIT — Academical bulletin ELPIT, 2020, vol. 5, no. 2 (12), pp. 25—47. (In Russian)
9. Zaznobina T. V., Ivanova O. V., Alkhimenko E. V. Soderzhanie tyazhelykh metallov v pochvakh prigorodnoi zony g. Krasnoyarska [Heavy metals content in the soils of suburban areas of the city of Krasnoyarsk]. Vestnik Permskogo natsional’nogo issledovatel’skogo politekhnicheskogo universiteta. Prikladnaya ekologiya. Urbanistika — Bulletin of Perm National Research Polytechnic University. Urban development, 2019, no. 2 (34), pp. 59—68. (In Russian)
10. Kireeva N. A., Grigoriadi A. S., Bagautdinov F. Ya. Fitoremediatsiya kak sposob ochishcheniya pochv, zagryaznennykh tyazhelymi metallami [Phytoremediation as a way to purificating soils contaminated with heavy metals]. Teoreticheskaya i prikladnaya ekologiya — Theoretical and Applied Ecology, 2011, no. 3, pp. 4—16. (In Russian)
11. Korotchenko I. S. Soderzhanie podvizhnykh form tyazhelykh metallov v pochve Krasnoyarska [Content of mobile forms of heavy metals in the soil of Krasnoyarsk]. Ekologicheskie chteniya-2021: XII Natsional’naya nauchno-prakticheskaya konferentsiya s mezhdunarodnym uchastiem [Ecological Readings-2021: XII National scientific and practical conference with International participation]. Omsk, Omskii gos. agrar. un-t im. P. A. Stolypina Publ., 2021, pp. 329—332. (In Russian)
12. Korotchenko I. S., Medvedeva V. A. Biodiagnostika sostoyaniya pochv Emel’yanovskogo raiona Krasnoyarskogo kraya v usloviyakh transportnoi nagruzki [Biodiagnostics of the soil condition in the Emelyanovo district of the Krasnoyarsk Territory under conditions of traffic load]. Vestnik Orenburgskogo gosudarstvennogo pedagogicheskogo universiteta. Elektronnyi nauchnyi zhurnal — Vestnik of Orenburg State Pedagogical University. Electronic Scientific Journal, 2022, no. 3 (43), pp. 18—26. Avaialble at: http://vestospu.ru/archive/2022/articles/2_43_2022.pdf. DOI: 10.32516/2303-9922.2022.43.2. (In Russian)
13. Koshkin E. I., Andreeva I. V., Belopukhov S. L. Otsenka fitoremediatsionnogo potentsiala sortov yarovogo rapsa (Brassica napus L.) v usloviyakh zagryazneniya tyazhelymi metallami dernovo-podzolistoi pochvy [Assessing the phytoremediation potential of spring rape (Brassica napus L.) cultivars grown on heavy metal-contaminated soddy-podzolic soil]. Agrokhimiya, 2014, no. 8, pp. 79—87. (In Russian)
14. Krotova L. V., Malezhik E. E. Zagryaznenie pochv tyazhelymi metallami v gorode Bryanske [Soil contamination with heavy metals in the city of Bryansk]. Nauchno-tekhnicheskii progress: aktual’nye i perspektivnye napravleniya budushchego: sb. materialov VI Mezhdunar. nauch.-prakt. konf. [Scientific and technical progress. Current and promising directions for the future. Proceed. of the VI Internat. sci.-pract. conf.]. Kemerovo, Zapadno-Sibirskii nauchnyi tsentr Publ., 2017, vol. 2, pp. 31—33. (In Russian)
15. Medvedeva V. A. Migratsiya nikelya v organakh rastenii-fitoremediantov [Migration of nickel in the organs of phytoremediant plants]. Innovatsionnye tendentsii razvitiya rossiiskoi nauki: materialy XII Mezhdunar. nauch.-prakt. konf. molodykh uchenykh [Innovative trends in the development of Russian science. Proceed. of the XII Internat. sci.-pract. conf. young scientists]. Krasnoyarsk, Krasnoyarskii gos. agrar. un-t Publ., 2019, part 1, pp. 62—66. (In Russian)
16. Mosina L. V., Kholopov Yu. A., Zhandarova Yu. A. Fitoekstraktsiya svintsa i kadmiya iz pochvogruntov poligonov otkhodov nekotorymi sel’skokhozyaistvennymi kul’turami [Phytoextraction of lead and cadmium from soils of landfills by some agricultural crops]. Teoreticheskaya i prikladnaya ekologiya — Theoretical and Applied Ecology, 2023, no. 1, pp. 154—161. DOI: 10.25750/1995-4301-2023-1-154-161. (In Russian)
17. Ostroumov S. A., Solomonova E. A. Metod opredeleniya dopustimykh nagruzok zagryaznyayushchikh veshchestv na vysshie vodnye rasteniya i perspektivy ego primeneniya [Originating a method for determining the allowable loads of pollutants on aquatic higher plants and prospects of its application]. Ekologiya promyshlennogo proizvodstva, 2012, no. 2, pp. 54—60. (In Russian)
18. SanPiN 1.2.3685-21. Gigienicheskie normativy i trebovaniya k obespecheniyu bezopasnosti i (ili) bezvrednosti dlya cheloveka faktorov sredy obitaniya (s izmeneniyami na 30 dekabrya 2022 goda). Vved. 2021-28-01. Zaregistrirovano v Minyuste Rossii 29 yanvarya 2021 g. № 62296, 2021 [SanPiN 1.2.3685-21. Hygienic standards and requirements for ensuring the safety and (or) harmlessness of environmental factors to humans (as amended as of Dec. 30, 2022). Enter. 2021-28-01. Registered with the Ministry of Justice of Russia on Jan. 29, 2021 No. 62296, 2021]. 1025 p. Available at: https://fsvps.gov.ru/sites/default/files/npa-files/2021/01/28/sanpin1.2.3685-21.pdf. (In Russian)
19. Sergeev A. A. Deistvie tyazhelykh metallov na biometricheskie pokazateli rastenii [The effect of heavy metals on the biometric parameters of plants]. Aktual’nye napravleniya innovatsionnogo razvitiya zhivotnovodstva i sovremennye tekhnologii proizvodstva produktov pitaniya: materialy mezhdunar. nauch.-prakt. konf. [Current directions of innovative development of livestock breeding and modern technologies for food production. Proceed. of the Internat. sci.-pract. conf.]. Persianovsky village, Donskoi gos. agrar. un-t Publ., 2020, pp. 567—570. (In Russian)
20. Stotskaya D. R., Fazylov I. Z., Stotskii K. S. Zagryaznenie pochvy tyazhelymi metallami i ikh vliyanie na zdorov’e cheloveka [Soil contamination with heavy metals and their impact on human health]. Nauka cherez prizmu vremeni, 2019, no. 7 (28), pp. 29—31. (In Russian)
21. Timofeeva S. S., Ul’rikh D. V., Timofeev S. S. Vozmozhnosti ispol’zovaniya fitoremediatsionnogo potentsiala i sorbtsionno-gabionnykh modulei v revitalizatsii tekhnogenno-narushennykh territorii Yuzhnogo Urala [Possibilities of using phytoremediation potential and sorption-gabion modules in the revitalization of technogenically disturbed territories of the Southern Urals]. Gornyi informatsionno-analiticheskii byulleten’ (nauchno-tekhnicheskii zhurnal) — Mining Informational and Analytical Bulletin, 2020, no. S6, pp. 17—41. (In Russian)