Influence of forest belts on the total content of Pb and Cd and their exchange compounds in leached chernozems
Rubrics: ECOLOGY
Abstract and keywords
Abstract (English):
The creation of artificial forest belts is an effective method of land reclamation. Forest belts have a positive impact on prevention of erosion processes, formation of heat and moisture regimes, reduction of turbulent exchange in the surface air layer and reduction of carbon dioxide share in the atmosphere. An important feature of forest plantations is the prevention of soil contamination with heavy metals (HM). It occurs due to profile redistribution of HM and partial remediation of soils. The obtained data confirm this position. Reliable transformation of leached chernozems under the influence of different-age forest belts in comparison with arable soils on the territory of All-Russian Research Institute of Sugar Beet and Sugar named after A.L. Mazlumov was revealed. Forest vegetation type contributes to more sustainable ecosystems due to stabilization of humus content and its uniform distribution throughout the soil profile. Correlation analysis revealed a close relationship between content of humus, soil solution pH and the gross content, as well as the exchangeable compounds of HM. An increase in the concentration of HM in the upper layer of arable chernozem was revealed; it was caused by active emissions of exhaust gases from agricultural machinery and the application of mineral fertilizers. The design of forest belts in order to restore contaminated soils is planned in the territory of Sichuan Province (southwest China). This project needs additional research, which is planned to be carried out in the future.

Keywords:
heavy metals, lead, cadmium, gross content, exchange compounds, forest belts of different ages, arable land, leached chernozems
Text
Publication text (PDF): Read Download
References

1. Gorbunova N. S., Gromovik A. I., Cherepuhina I. V., Vladimirov D. R., Fedotov S. V., Czyaolun E., Hunmey Ch., Hun Yu., Chan'hua Ma. Sorbcionnaya sposobnost' organicheskogo veschestva k tyazhelym metallam i ee primenenie pri vosstanovlenii zagryaznennyh pochv. AgroEkoInfo: Elektronnyy nauchno-proizvodstvennyy zhurnal. 2022;6(54).Rezhim dostupa: DOI: https://doi.org/10.51419/202126620. :

2. Gorbunova N. S., Gromovik A. I., Cherepuhina I. V., Terent'eva Yu. Yu. Sorbcionnye processy v pochvah. Voprosy izucheniya i sovremennoe sostoyanie problemy. Sorbcionnye i hromatograficheskie processy. 2021;21(2):265-275.Rezhim dostupa: DOI: https://doi.org/10.17308/sorpchrom.2021.21/3360.

3. Klimenko O. E., Klimenko N. I. Izmenenie svoystv agrochernozemov segregacionnyh Kryma pod vliyaniem razlichnyh lesonasazhdeniy. Pochvovedenie. 2021;5:606-619. Rezhim dostupa: DOI: https://doi.org/10.31857/S0032180X21050129.

4. Kramareva T. N., Gorbunova N. S., Kulikova E. V. Migracionnye osobennosti tyazhelyh metallov v lesnyh landshaftah. Lesotehnicheskiy zhurnal. 2021;11.4(44):68-78. Rezhim dostupa: DOI: https://doi.org/10.34220/issn.2222-7962/2021.4/6

5. Mamonov D. N., Morkovina S. S., Matveev S. M., Sheshnican S. S. Sravnitel'naya ocenka metodov ucheta deponirovaniya ugleroda sosnovo-berezovymi lesnymi nasazhdeniyami Voronezhskoy oblasti. Lesotehnicheskiy zhurnal. 2022;12.3(47):4-15. Rezhim dostupa: DOI: https://doi.org/10.34220/issn.2222-7962/2022.3/1.

6. Plehanova I. O., Zolotareva O. A. Ekologicheskoe normirovanie sostoyaniya pochv, zagryaznennyh tyazhelymi metallami. Agrohimiya. 2020;10:79-88. Rezhim dostupa: DOI: https://doi.org/10.31857/S0002188120100099.

7. Rusakova I. V. Sravnitel'naya ocenka vliyaniya tradicionnoy i biologizirovannoy sistem zemledeliya na agrohimicheskie, biologicheskie svoystva i biologicheskoe kachestvo organicheskogo veschestva seroy lesnoy pochvy Vladimirskogo opol'ya. Agrohimiya. 2021;12:15-22. Rezhim dostupa: DOI: https://doi.org/10.31857/S0002188121120127.

8. Scheglov D. I., Gromovik A. I, Gorbunova N. S. Osnovy himicheskogo analiza pochv. 2019:332. Rezhim dostupa: https://www.elibrary.ru/wiyzef.

9. Chendev Y. G., Gennadiev A. N., Smirnova M. A. et al. Early Stages of the Evolution of Chernozems under Forest Vegetation (Belgorod Oblast). Eurasian Soil Sc. 2022;55:387-403. Rezhim dostupa: https://doi.org/10.1134/S1064229322040068.

10. Chernov T. I., Zhelezova A. D. The Dynamics of Soil Microbial Communities on Different Timescales. Eurasian Soil Science. 2020;5:643-652. Rezhimdostupa: DOI: https://doi.org/10.1134/S106422932005004X.

11. Chernova O. V., Bezuglova O. S. Use of background concentrations of heavy metals for regional monitoring of soil contamination by the example of Rostov oblast. Eurasian Soil Sci.2019;52(8):1007. DOI: https://doi.org/10.1134/S1064229319080040.

12. Ebabu K., Tsunekawa A., Tsubo M. Global Analysis of cover management and support practice factors that control soil erosion and conservation. International Soil and Water Conservation Research. 2022;10.2:161-176. DOI: https://doi.org/10.1016/j.iswcr.2021.12.002.

13. Kalinitchenko V. P., Glinushkin A. P., Swidsinski A. V., Minkina T. M., Andreev A. G., Mandzhieva S. S., Sushkova S. N., Makarenkov D. A., Ilyina L. P., Chernenko V. V., Zamulina I. V., Larin G. S., Zavalin A. A., Gudkov S. V. Thermodynamic mathematical model of the kastanozem complex and new principles of sustainable semiarid protective silviculture management.Environmental Research. 2021;194:110605. DOI: https://doi.org/10.1016/j.envres.2020.110605.

14. Mikhin V. I., Taniykevich V. V., MikhinaE. A. Growth and ameliorative roleof protective plantation in conditions of forest-steppe zone IOP Conference Series: Earth and Environmental Science. International Forestry Forum "Forest ecosystems as global resource of the biosphere: calls, threats, solutions".2020;595:012045. DOI: https://doi.org/10.1088/1755-1315/595/1/012045.

15. Minkina T. M., Mandzhieva S. S., Burachevskaya M. V., Bauer T. V., Sushkova S. N. Method of determining loosely bound compounds of heavy metals in the soil. MethodsX. 2018; 5:217-226. DOI: https://doi.org/10.1016/j.mex.2018.02.007.

16. Mitra S., Chakraborty A. J., Tareq A. M., Emran T. B., Nainu E., Khusro A., Abubakr M. I., Khandaker M. U., Osman H., Alhumaydhi F. A., Simal-Gandara J. Impact of heavy metals on the environment and human health: Novel therapeutic insights to counter the toxicity Journal of King Saud University - Science. 2022:101865. DOI: https://doi.org/10.1016/j.jksus.2022.101865.

17. Neaman A., Robinson B., Minkina T. M., Vidal K., Mench M., Krutyakov Y. A., Shapoval O. A.Feasibility of metal(loid) phytoextraction from polluted soils: the need for greater scrutiny. Environmental Toxicology and Chemistry. 2020;39(8):1469. Rezhim dostupa: DOI: https://doi.org/10.1002/etc.4787.

18. Olson K. R., Gennadiev A. N.Dynamics of soil organic carbon storage and erosion due to land use change (Illinois, USA) Eurasian Soil Sci.2020;53(4);436. DOI: https://doi.org/10.1134/S1064229320040122.

19. Plekhanova I. O., Zolotareva O. A., Tarasenko I. D., Yakovlev A. S. Assessment of ecotoxicity of soils contaminated by heavy metals.Eurasian Soil Sci. 2019;52(10):1274. DOI: https://doi.org/10.1134/S1064229319100089.

20. Rajput V. D., Minkina T. M., Kumari A., Shende S. S., Ranjan A., Barakhov A. V., Rajput P., Sushkova S. N., Faizan M., Singh A., Khabirov I., Gromovik A., Gorbunova N., Nazarenko O., Kızılkaya R. A review on nanobioremediation approaches for restoration of contaminated soil. Eurasian Journal of Soil Science. 2022;11(1):12020. DOI: https://doi.org/10.18393/EJSS.990605.

21. Tang Y., Shao Q., Shi T. et al. Spatiotemporal dynamics of forest ecosystem carbon budget in Guizhou: customisation and application of the CBM-CFS3 model for China. Carbon Balance Manage. 2022;17:10. DOI: https://doi.org/10.1186/s13021-022-00210-0.

22. Vodyanitskii Y., Minkina T., Bauer T.Method for calculation the selectivity of reagents extracting heavy metals mobile compounds from soil.Applied Geochemistry. 2020;116:104570. Rezhimdostupa: DOI: https://doi.org/10.1016/j.apgeochem.2020.104570.

23. Bryndina, L. Restoration of soil microbiological activity after herbicide stress / L. Bryndina, I. Svistova, O. Baklanova. Forestry Engineering Journal. 2022; 12 (46):43-55. DOI: https://doi.org/10.34220/issn.2222-7962/2022.2/4.


Login or Create
* Forgot password?