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Валеология: Здоровье, Болезнь, Выздоровление. 2020; : 38-45

ХИМИЧЕСКИЙ СОСТАВ МИКРОЭЛЕМЕНТОВ В ПОЧВЕ ПРОМЫШЛЕННОГО ГОРОДА

КИБАТАЕВ. К. М., БЕРДЕШЕВА Г. А., УРГУШБАЕВА Г. М., АБДИКАДИРОВА И. Т., КАНДЫГУЛОВА Г. Ж., ТАЖГАРИНА К. Б.

Аннотация

   По источникам литературы, геохимические картирования проводились в РФ, европейских странах для улучшения здоровья населения, а также экономики страны. На территории Казахстана были изучены содержание микроэлементов, но геохимические картирования не разрабатывались. Достижение профилактики заболеваний населения и рост экономики страны, а также создание единой базы для мониторинга по микроэлементам и разработки  геохимического картирования в виде атласа на территории Республики Казахстан сегодня очень актуальны.

Список литературы

1. Бахтиярова К. З. Связь рассеянного склероза с микроэлементами и окружающей средой / К. З. Бахтиярова, Л. А. Фархутдинова, Р. В. Магжанов. – М.: Вестник новых медицинских технологий, 2007. – С. 105-107.

2. Бельмер С. В. Микроэлементы и микроэлементозы и их значение в детском возрасте / С. В. Бельмер, Т. В. Гасилина. – М.: Российский государственный медицинский университет. – 2008. – С. 91-96.

3. Yadav, K. K., Gupta, N., Kumar, A., Reece, L. M., Singh, N., Rezania, S., Khan, S. A., 2018. Mechanistic understanding and holistic approach of phytoremediation: a review on application and future prospects. Ecol. Eng. 120. P. 274–298.

4. Gupta, D. K., Chatterjee, S., Datta, S., Veer, V., Walther, C., 2014. Role of phosphate fertilizers in heavy metal uptake and detoxification of toxic metals. Chemosphere 108. P. 134-144.

5. Soetan, K. O., Olaiya, C. O., Oyewole, O. E., 2010. The importance of mineral elements for humans, domestic animals and plants: a review. Afr. J. Food Sci. 4. P. 200–222.

6. Pan, X. D., Wu, P. G., Jiang, X. G., 2016. Levels and potential health risk of heavy metals in marketed vegetables in Zhejiang, China. Sci. Rep. 6. P. 20317.

7. Jiao, X., Teng, Y., Zhan, Y.,Wu, J., Lin, X., 2015. Soil heavy metal pollution and risk assessmentin Shenyang industrial district, Northeast China. PLoS One 10. P. 1–9.

8. Wu, S., Zhou, S., Li, X., 2011. Determining the anthropogenic contribution of heavy metal accumulations around a typical industrial town: Xushe, China. J. Geochem. Explor. 110. P. 92–97.

9. Gabarron, M., Faz, A., Acosta, J. A., 2017. Effect of different industrial activities on heavy metal concentrations and chemical distribution in topsoil and road dust. Environ. Earth Sci. 76. P. 129.

10. Ogunkunle, C. O., Fatoba, P. O., 2014. Contamination and spatial distribution of heavy metals in topsoil surrounding a mega cement factory. Atmos. Pollut. Res. 5. P. 270–282.

11. Jan, F. A., Ishaq, M., Ihsanullah, I., Asim, S. M., 2010. Multivariate statistical analysis of heavy metals pollution in industrial area and its comparison with relatively less polluted area: a case study from the City of Peshawar and district Dir Lower. J. Hazard.Mater. 176. P. 609–616.

12. Duong Trang, T. T., Byeong-Kyu, L., 2009. Partitioning and mobility behavior of metals in road dusts from national-scale industrial areas in Korea. Atmos. Environ. 43. P. 3502–3509.

13. Sun, C. Y., Liu, J. S., Wang, Y., Sun, L. Q., Yu, H. W., 2013. Multivariate and geostatistical analyses of the spatial distribution and sources of heavy metals in agricultural soil in Dehui, Northeast China. Chemosphere 92. P. 517–523.

14. Naser, H. M., Shil, N. C., Mahmud, N. U., Rashid, M. H., Hossain, K. M., 2009. Lead, cadmium, and nickel contents of vegetables grown in industrially polluted non-polluted areas of Bangladesh. Bangladesh J. Agric. Res. 34 (4). P. 545–554.

15. Pulles, T., Denier van der Gon, H., Appelman, W., Verheul, M., 2012. Emission factors for heavy metals from diesel and petrol used in European vehicles. Atmos. Environ. 61. P. 641–651.

16. Zhang, F., Yan, X., Zeng, C., Zhang, M., Shrestha, S., Devkota, L. P., Yao, T., 2012. Influence of traffic activity on heavy metal concentrations of roadside farmland soil in mountainous areas. Int. J. Environ. Res. Public Health 9. P. 1715–1731.

17. Aktaruzzaman, M., Fakhruddin, A. N. M., Chowdhury, M. A. Z., Fardous, Z., Alam, M. K., 2013. Accumulation of heavy metals in soil and their transfer to leafy vegetables in the region of Dhaka Aricha highway, Savar, Bangladesh. Pak. J. Biol. Sci. 16 (7). P. 332–338.

18. Папа С. Микробная активность и содержание микроэлементов в городской почве / С. Папа [и др.]. – 12 мая 2009.

19. Oliva S. R. Espinosa, A. J. F. 2007. Monitoring of heavy metals in topsoils, atmospheric particles and plant leaves to identify possible contamination sources. Microchem.J.86.P. 131-139.

20. Zimmermann M. B. Iodine deficiency // Endocrine Reviews. – 2009. – № 30. Р. 376–408.

21. Brent G. A. Environmental exposures and autoimmune thyroid disease // Thyroid. – 2010. – № 20 (7). Р. 755–761.

22. Герасимов Г. А. Как достичь цели устранения йододефицитных заболеваний в России: проблемы и решения: обзор / Г. А. Герасимов. – М., 2008. – С. 8–23.

23. Дедов И. И. Дефицит йода – угроза здоровью и развитию детей России: пути решения проблемы: нац. докл. / И. И. Дедов [и др.]. – М., 2006. – С. 1–52.

24. Торнтон И. Региональное геохимическое картирование и здоровье в Соединенном Королевстве / И. Торнтон, Дж. Плант // Журнал Геологического общества. – 137. – С. 575-586. – 1 сентября 1980 года. (doi.org: 10.1144/gsjgs.137.5.0575).

25. Национальный доклад о состоянии окружающей среды и об использовании природных ресурсов Республики Казахстан за 2016 год. – С. 131-132.

26. Национальный доклад о состоянии окружающей среды и об использовании природных ресурсов Республики Казахстан за 2018 год. – С. 129.

27. Информационный бюллетень "О состоянии окружающей среды Республики Казахстан" / Министерство экологии, геологии и природных ресурсов РК, Департамент экологического мониторинга РГП "Казгидромет". – Выпуск № 1 (27). – Первое полугодие 2019. – С. 331.

28. Kibatayeva K. M., Iztleuova M. K., Tazhigulovaba B. M., Sabyrakhmetova V. M., Urgushbayeva G. M., Kaldybayeva A. T., Turganbayeva A. U., Zhakana A. K., Madikhana Zh. Sh., Manukova V. G., Rabayeva F. A., Alpysbayeva G. K. The Content of Heavy Metals in the Soil in Aktobe City. International journal of environmental & science education. 2016, vol. 11, No. 18, p. 11405-11414

29. Kasimov N. S. & Vlasov D. V. (2015). Clarks of chemical elements as standards of comparison in the eco-geokhimiya. Theory and methodology. Moscow University bulletin. 5 (2), P. 8-11.

30. Alekseenko, V. A. & Lavrov, N. P. (2012). Clarks of chemical elements of soils in residential landscapes. The methodology of research. Problems of biogeochemisty and geochemical ecology. 3, p. 120-125.

Valeology: Health - Illnes - recovery. 2020; : 38-45

THE CHEMICAL COMPOSITION OF TRACE ELEMENTS IN THE SOIL OF AN INDUSTRIAL CITY

KIBATAYEV K. M., BERDESHEVA. G. A., URGUSHBAYEVA G. M., ABDIKADIROVA I. T., KANDYGULOVA G. J., TAZHGARINA K. B.

Abstract

   According to literature sources, geochemical mapping was carried out by the Russian Federation, European countries to improve public health, as well as the country's economy. In Kazakhstan, the content of trace elements was studied, but geochemical mapping was not developed. To achieve the prevention of diseases of the population and for the growth of the country's economy, as well as to create a single base for monitoring on microelements and to develop geochemical mapping in the form of an atlas on the territory of the Republic of Kazakhstan, it is relevant.

References

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4. Gupta, D. K., Chatterjee, S., Datta, S., Veer, V., Walther, C., 2014. Role of phosphate fertilizers in heavy metal uptake and detoxification of toxic metals. Chemosphere 108. P. 134-144.

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6. Pan, X. D., Wu, P. G., Jiang, X. G., 2016. Levels and potential health risk of heavy metals in marketed vegetables in Zhejiang, China. Sci. Rep. 6. P. 20317.

7. Jiao, X., Teng, Y., Zhan, Y.,Wu, J., Lin, X., 2015. Soil heavy metal pollution and risk assessmentin Shenyang industrial district, Northeast China. PLoS One 10. P. 1–9.

8. Wu, S., Zhou, S., Li, X., 2011. Determining the anthropogenic contribution of heavy metal accumulations around a typical industrial town: Xushe, China. J. Geochem. Explor. 110. P. 92–97.

9. Gabarron, M., Faz, A., Acosta, J. A., 2017. Effect of different industrial activities on heavy metal concentrations and chemical distribution in topsoil and road dust. Environ. Earth Sci. 76. P. 129.

10. Ogunkunle, C. O., Fatoba, P. O., 2014. Contamination and spatial distribution of heavy metals in topsoil surrounding a mega cement factory. Atmos. Pollut. Res. 5. P. 270–282.

11. Jan, F. A., Ishaq, M., Ihsanullah, I., Asim, S. M., 2010. Multivariate statistical analysis of heavy metals pollution in industrial area and its comparison with relatively less polluted area: a case study from the City of Peshawar and district Dir Lower. J. Hazard.Mater. 176. P. 609–616.

12. Duong Trang, T. T., Byeong-Kyu, L., 2009. Partitioning and mobility behavior of metals in road dusts from national-scale industrial areas in Korea. Atmos. Environ. 43. P. 3502–3509.

13. Sun, C. Y., Liu, J. S., Wang, Y., Sun, L. Q., Yu, H. W., 2013. Multivariate and geostatistical analyses of the spatial distribution and sources of heavy metals in agricultural soil in Dehui, Northeast China. Chemosphere 92. P. 517–523.

14. Naser, H. M., Shil, N. C., Mahmud, N. U., Rashid, M. H., Hossain, K. M., 2009. Lead, cadmium, and nickel contents of vegetables grown in industrially polluted non-polluted areas of Bangladesh. Bangladesh J. Agric. Res. 34 (4). P. 545–554.

15. Pulles, T., Denier van der Gon, H., Appelman, W., Verheul, M., 2012. Emission factors for heavy metals from diesel and petrol used in European vehicles. Atmos. Environ. 61. P. 641–651.

16. Zhang, F., Yan, X., Zeng, C., Zhang, M., Shrestha, S., Devkota, L. P., Yao, T., 2012. Influence of traffic activity on heavy metal concentrations of roadside farmland soil in mountainous areas. Int. J. Environ. Res. Public Health 9. P. 1715–1731.

17. Aktaruzzaman, M., Fakhruddin, A. N. M., Chowdhury, M. A. Z., Fardous, Z., Alam, M. K., 2013. Accumulation of heavy metals in soil and their transfer to leafy vegetables in the region of Dhaka Aricha highway, Savar, Bangladesh. Pak. J. Biol. Sci. 16 (7). P. 332–338.

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28. Kibatayeva K. M., Iztleuova M. K., Tazhigulovaba B. M., Sabyrakhmetova V. M., Urgushbayeva G. M., Kaldybayeva A. T., Turganbayeva A. U., Zhakana A. K., Madikhana Zh. Sh., Manukova V. G., Rabayeva F. A., Alpysbayeva G. K. The Content of Heavy Metals in the Soil in Aktobe City. International journal of environmental & science education. 2016, vol. 11, No. 18, p. 11405-11414

29. Kasimov N. S. & Vlasov D. V. (2015). Clarks of chemical elements as standards of comparison in the eco-geokhimiya. Theory and methodology. Moscow University bulletin. 5 (2), P. 8-11.

30. Alekseenko, V. A. & Lavrov, N. P. (2012). Clarks of chemical elements of soils in residential landscapes. The methodology of research. Problems of biogeochemisty and geochemical ecology. 3, p. 120-125.