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Analysis of the Impact of Industrial Waste on River Water Quality Towards Using the Dynamics of Land Quality

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Natural resources are the basis of all material goods which are of special importance for the life and development of mankind. Therefore, sustainable management of natural resources is of great importance for modern society. The concentrations of heavy metals in the soil such as: (Cu, Fe, Cd, Mn, Pb, and Zn), have a negative impact on the contamination of crops. Human activity should be developed on the basis of the principles of environmental sustainability to achieve economic and social prosperity and environmental protection as well as, improve the environment polluted by human activity. Natural resources must be preserved and regenerated. Moreover, well-being, environmental management and maintaining the purity of the environment in the future enable the production of safe food. Preservation of good quality water resources creates security and maintains soil quality. Recently, there has been a marked increase in awareness of natural resources, especially the preservation of water quality, soil, and their importance to our lives. The study included various methodologies, qualitative and quantitative analyses, and statistics.
Słowa kluczowe
Rocznik
Strony
191--196
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
  • Faculty of Management in Tourism, Hospitality, and Environment, University Haxhi Zeka, Peja 30000, Kosovo
autor
  • Faculty of Management in Tourism, Hospitality, and Environment, University Haxhi Zeka, Peja 30000, Kosovo
  • Faculty of Management in Tourism, Hospitality, and Environment, University Haxhi Zeka, Peja 30000, Kosovo
  • Faculty of Management in Tourism, Hospitality, and Environment, University Haxhi Zeka, Peja 30000, Kosovo
autor
  • Faculty of Management in Tourism, Hospitality, and Environment, University Haxhi Zeka, Peja 30000, Kosovo
Bibliografia
  • 1. Ahmadpour P., Ahmadpour F., Mahmud T.M.M., Abdu A., Soleimani M., Tayefeh H.F. 2012. Phytoremediation of heavy metals: A green technology. African Journal of Biotechnology, 11, 14036–14043.
  • 2. Air quality in Europe – 2012 report, European Environment Agency, Luxembourg: Office for Official Publications of the European Union, (2012), 104. EEA, Copenhagen 2012.
  • 3. Bartkowska I. 2015. Drop in dry mass and organic substance content in the process of autothermal thermophilic aerobic digestion. Process Safety and Environmental Protection, 98, 170–175.
  • 4. Bryzzhev A.V., Rukhovich D.I., Koroleva P.V., Kalinina N.V., Vil’chevskaya E.V.,, Dolinina E.A., Rukhovich S.V. 2015. Organization of retrospective monitoring of the soil cover in Azov district of Rostov oblast. Eurasian Soil Sci., 48(10), 1029–1049.
  • 5. Chai J.B., Au P.I., Mubarak N.M., Khalid M., Ng W.P.Q., Jagadish P., Walvekar R., Abdullah E.C. 2020. Adsorption of heavy metal from industrial wastewater onto low-cost Malaysian kaolin clay– based adsorbent. Environmental Science and Pollution Research, 27(12), 13949–13962.
  • 6. Chakraborty R., Asthana A., Singh A.K., Jain B., Susan A.B.H. 2020. Adsorption of heavy metal ions by various low-cost adsorbents: a review. International Journal of Environmental Analytical Chemistry, 1–38.
  • 7. D’Alessandro N. 2014. 22 Facts about Plastic Pollution. Retrieved March 24, 2018, from https://www.ecowatch.com/22-facts-about-plastic-pollutionand10-things-we-can-do-aboutit-1881885971. html.
  • 8. Halecki W., Kruk E., Ryczek M. 2018. Estimations of nitrate nitrogen, total phosphorus flux and suspended sediment concentration (SSC) as indicators of surface-erosion processes using an ANN (Artificial Neural Network) based on geomorphological parameters in mountainous catchments. Ecological Indicators, 91(2018), 461–469.
  • 9. Jobbágy J., et al. 2017. Agricultural improvements in soil quality, drainage and irrigation. Nitra: SPU, 252. (in Slovak)
  • 10. Feng J., Cavallero S., Hsiai T., Li R. 2020. Impact of air pollution on intestinal redox lipidome and microbiome, Free Radical Biology and Medicine, 11(2).
  • 11. Kicińska A. 2018. Health risk assessment related to an effect of sample size fractions: methodological remarks. Stochastic Environmental Research and Risk Assessment, 32, 1867–1188.
  • 12. Łukowski A. 2017. Fractionation of selected heavy metals (Zn, Ni, Cu) in municipal sewage sludges from Podlasie Province. Journal of Ecological Engineering, 18(3), 133–139.
  • 13. Możdżer E., Chudecka J. 2017. Impact of the natural fertilization using PRP FIX on some soil fertility indicators. Journal of Ecological Engineering, 18(4), 137–144.
  • 14. Pashkevich M.A., Petrova T.A. 2016. Creation of a system for industrial environmental monitoring in hydrocarbon production and transporting companies of Western Siberia. Journal of Mining Institute, 221, 737–741.
  • 15. Rameshwaran P., Tepe A., Yazar A., Ragab R. 2015. The effect of saline irrigation water on the yield of pepper: experimental and modelling study. Irrig Drain, 64, 41–49.
  • 16. Stefanowicz A.M., Woch M.W., Kapusta P. 2014. Inconspicuous waste heaps left by historical ZnPb mining are hot spots of soil contmaination. Geoderma, 235–236, 1–8.
  • 17. Sheoran V., Sheoran A., Poonia P. 2011. Role of hyperaccumulators in phytoextraction of metals from contaminated mining sites: a review. Crit. Rev. Environ. Sci. Technol., 41, 168–214.
  • 18. Moraru P.I., Rusu T. 2012. Effect of tillage systems on soil moisture, soil temperature, soil respiration and production of wheat, maize and soybean crops. J. of Food, Agricult. and Environ., 10(2), 445–448.
  • 19. Taszakowski J., Janus J., Mika M., Leń P. 2016. Cadastral land consolidations in the process of modernization of real estate cadastre in Poland. Infrastructure and Ecology of Rural Areas. Polish Science Academy, Kraków, 1(2), 375–394.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3d9f1f43-9b00-406d-b31b-390af08e2feb
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