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The Level of Soil Pollution in the Aksu River Basin as a Result of Anthropogenic Impact

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
As the main purpose of this article, the authors consider the level of soil pollution in the Aksu River basin as a result of anthropogenic impact, in which factors of anthropogenic transformation of soils in different zones play an important role, as well as processes occurring in soils as a result of their impact. This article highlights the research of the main analyses carried out, which showed that the anthropogenic transformation of soils within the surveyed territory is multifactorial and complex. As an assumed result, the validity of which is analyzed in this article, it can be considered that the degree and forms of manifestation of anthropogenic transformation of foothill soils depend on their use, as one criterion of which is considered the use of such soil for arable land, including irrigated arable land, in which the degradation of mountain soils is mainly associated with pasture loads during a certain period. As a research question, it remains to be considered whether this is really the case or whether the present territory is subject to a different anthropological impact.
Rocznik
Strony
225--234
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
  • Department of UNESCO on Sustainable Development, Al-Farabi Kazakh National University, Almaty, Kazakhstan
  • Department of UNESCO on Sustainable Development, Al-Farabi Kazakh National University, Almaty, Kazakhstan
  • Department of UNESCO on Sustainable Development, Al-Farabi Kazakh National University, Almaty, Kazakhstan
  • Department of UNESCO on Sustainable Development, Al-Farabi Kazakh National University, Almaty, Kazakhstan
  • Akhmet Yassawi International Kazakh-Turkish University, Тurkestan, Kazakhstan
  • K. Zhubanov Aktobe Regional University, Aktobe, Kazakhstan
Bibliografia
  • 1. Abdul Rehman, Guijian Liu, Balal Yousaf, Muhammad Zia-ur-Rehman, Zeeshan Javed. 2020. Characterizing pollution indices and children health risk assessment of potentially toxic metal(oid)s in school dust of Lahore, Pakistan, Ecotoxicology and Environmental Safety, 1901, Article 110059.
  • 2. Bitemirov, K., Shalkharov, Y., Berdibaev, N. 2019. Protection of honor dignity and business reputation in the system of modern civil law. Res. Journal of Legal, Ethical and Regulatory Issues, 22 (4), 01–12.
  • 3. Bitemirov, K., Shalkharov, Y., Kalmyrzaev, B. 2019. Legal nature of religious extremism from the position of contemporary Kazakhstan legislation. Res. Journal of Legal, Ethical and Regulatory Issues, 22 (4), 01–12.
  • 4. Bitemirov, K., Shalkharov, Y., Kalmyrzaev, B. 2019. Problems and prospect of countering religious extremism in the Kazakhstan Republic. Res. Journal of Legal, Ethical and Regulatory Issues, 22(4), 01–12.
  • 5. Bitemirov, K., Shalkharov, Y., Kozhambekov, D. 2019. Main principles and features of consideration legal characteristics of secular state. Res. Journal of Legal, Ethical and Regulatory Issues, 22(4), 01–12.
  • 6. Bitemirov, K., Shalkharov, Y., Nartai, A. 2019. Legal genomics: some aspects of modern jurisprudence and conflictology. Res. Journal of Legal, Ethical and Regulatory Issues, 22(4), 01–12.
  • 7. Bitemirov, K., Shalkharov, Y., Shukenova, Z. 2019. Problems and prospects of the formation and reform of the judicial system and the justice system in the Republic of Kazakhstan. Res. Journal of Legal, Ethical and Regulatory Issues, 22(4), 01–12.
  • 8. Bitemirov, K., Shalkharov, Y., Zhaltyrbayeva, R. 2019. The legal status of the designation of artificial intelligence in the system of modern law. Res. Journal of Legal, Ethical and Regulatory Issues, 22(4), 01–12.
  • 9. Bui Ta Long. 2020. Inverse algorithm for Streeter-Phelps equation in water pollution control problem, Mathematics and Computers in Simulation, 171, 119–126.
  • 10. Godall Rohi, O’tega Ejofodomi, Godswill Ofualagba. 2020. Autonomous monitoring, analysis, and countering of air pollution using environmental drones, Heliyon, 6(1), Article e03252.
  • 11. He Li, Juan Lu, Bin Li. 2020. Does pollution-intensive industrial agglomeration increase residents’ health expenditure? Sustainable Cities and Society, 56, Article 102092.
  • 12. Huan Huan, Litang Hu, Yu Yang, Yongfeng Jia, Beidou Xi. 2020. Groundwater nitrate pollution risk assessment of the groundwater source field based on the integrated numerical simulations in the unsaturated zone and saturated aquifer, Environment International, 137, Article 105532.
  • 13. Huan Huan, Xiang Li, Jun Zhou, Weijiang Liu, Yonghai Jiang. 2020. Groundwater pollution early warning based on QTR model for regional risk management: A case study in Luoyang city, China, Environmental Pollution, 259, Article 113900.
  • 14. Juan Feng, Susana Cavallero, Tzung Hsiai, Rongsong Li. 2020. Impact of air pollution on intestinal redox lipidome and microbiome, Free Radical Biology and Medicine, 11(2).
  • 15. Juvelikyan H.A., Shcheglov D.I., Gorbunova N.S. 2009. Methods of control and regulation of soil pollution. Educational and methodological guide for universities. Voronezh: Publishing and Printing Center of Voronezh State University. 14(2), 88–94.
  • 16. Kruzhilin, S., Baranova, T., Mishenina, M., & Zaitseva, M. 2020. Regional specificity creation of protective afforestations along highways. World Ecology Journal, 8(2), 22–32. https://doi.org/https://doi.org/10.25726/NM.2018.2.2.003.
  • 17. M. Choël, N. Visez. 2019. Altérations du grain de pollen par la pollution atmosphérique, Revue Française d’Allergologie, 59(8), 555–562.
  • 18. Miguel A. Meléndez-Jiménez, Arnold Polanski. 2020. Dirty neighbors – Pollution in an interlinked world, Energy Economics, 6, Article 104636.
  • 19. Mingge Li, Lili Wang, Jingda Liu, Wenkang Gao, Yuesi Wang. 2020. Exploring the regional pollution characteristics and meteorological formation mechanism of PM2.5 in North China during 2013–2017, Environment International, 134(6), Article 105283.
  • 20. Qi Wang, Dongmei Hao, Fangbai Li, Xiaoying Guan, Pengcheng Chen. 2020. Development of a new framework to identify pathways from socioeconomic development to environmental pollution. Journal of Cleaner Production, 25320, Article 119962.
  • 21. Qian Zhou, Xiaoling Zhang, Jie Chen, Yanyan Zhang. 2020. Do double-edged swords cut both ways? Housing inequality and haze pollution in Chinese cities, Science of The Total Environment, 7191, Article 137404.
  • 22. Sadar Aslam, Malik Wajid Hussain Chan, Ghazala Siddiqui, Grzegorz Boczkaj, Mohib Reza Kazmi. 2020. A comprehensive assessment of environmental pollution by means of heavy metal analysis for oysters’ reefs at Hab River Delta, Balochistan, Pakistan, Marine Pollution Bulletin, 15(3), Article 110970.
  • 23. Shamsutdinova et al. 2011. Assessment of the risk level of soil pollution on the example of the territory of Ufakhimprom, JSC. Ecology of industrial production, 3, 19–22.
  • 24. Siyu Chen, Teng Li. 2020. The effect of air pollution on criminal activities: Evidence from the NOx Budget Trading Program, Regional Science and Urban Economics, In press, Article 103528.
  • 25. Sufeng Wang, Ling Xu, Shijian Ge, Jianling Jiao, Ying Shu. 2020. Driving force heterogeneity of urban PM2.5 pollution: Evidence from the Yangtze River Delta, China, Ecological Indicators, 11, Article 106210.
  • 26. Tamara Schikowski, Hicran Altug. 2020. The role of air pollution in cognitive impairment and decline, Neurochemistry International, In press, Article 104708.
  • 27. Uwah, E.I., Gimba, M.S., Gwaski, P.A. 2012. Determination of Zn, Mn, Fe and Cu in Spinach and Lettuce Cultivated in Potiskum, Yobe State, Nigeria. J. Agri. Econo. Develo. 1(4), 69–74.
  • 28. Wenyong Wu, Renkuan Liao, Yaqi Hu, Hao Wang, Shiyang Yin. 2020. Quantitative assessment of groundwater pollution risk in reclaimed water irrigation areas of northern China, Environmental Pollution, 261, Article 114173.
  • 29. Xiaotian Liu, Runqi Tu, Dou Qiao, Miaomiao Niu, Chongjian Wang. 2020. Association between longterm exposure to ambient air pollution and obesity in a Chinese rural population: The Henan Rural Cohort Study, Environmental Pollution, 260, Article 114077.
  • 30. Xipeng Jin, Xuhui Cai, Mingyuan Yu, Yu Song, Hongsheng Zhang. 2020. Diagnostic analysis of wintertime PM2.5 pollution in the North China Plain: The impacts of regional transport and atmospheric boundary layer variation, Atmospheric Environment, 2241, Article 117346.
  • 31. You Zheng, Jiachao Peng, Jianzhong Xiao, Panda Su, Siyao Li. 2020. Industrial structure transformation and provincial heterogeneity characteristics evolution of air pollution: Evidence of a threshold effect from China., Atmospheric Pollution Research, 11(3), 598–609.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2e251e99-4a3d-479f-99c8-837a10e814ce
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