FORMATION OF THE HYDROCHEMICAL REGIME AND INTER-IONIC CORRELATION DEPENDENCIES IN ARTIFICIAL WATER BODIES FED BY GROUNDWATER

Authors

  • Abdinazarov Khasanboy Kholiknazarovich Associate Professor, Department of Biology, Kokand State University, PhD in Biological Sciences. abdinazarov.xasanboy@mail.ru Author

Keywords:

Keywords: Artificial lakes, drainage canal (collector), groundwater, buffer, sulfates, chlorine ions.

Abstract

Abstract: This study examines the variations in mineralization states within several artificial lakes fed by a common drainage canal. Regardless of the chemical and hydrochemical composition of the wastewater supplied by the drainage channels – the primary water source for these artificial bodies – the research focuses on the impact of groundwater seepage. Specifically, it analyzes how groundwater percolates through the soil into the artificial lakes and subsequently interacts and mixes with the existing surface water, thereby altering the overall hydrochemical regime.

References

1.Bhanu Pratap, Saroj Kumar, Sampurna Nand, Iqbal Azad, Ram Naresh Bharagava, Luiz Fernando Romanholo Ferreira, Venkatesh Dutta. Wastewater generation and treatment by various eco-friendly technologies: Possible health hazards and further reuse for environmental safety. Chemosphere, Volume 313, 2023, 137547. https://doi.org/10.1016/j.chemosphere.2022.137547.

2.Korsa G, Alemu D, Ayele A. Azolla plant production and their potential applications. Int J Agron. 2024(1):1716440. http://dx.doi.org/10.1155/2024/1716440

3.Khan, S. N., Anjum, L., Arshad, A., Ali, S., Aleem, M., & Nasir, A. (2025). Nature-Based Solution for Wastewater Treatment and Reuse Using Phytoremediation with Floating Plants. Water, 17 (7), 1080. https://doi.org/10.3390/w17071080

4.Abdulazeez, R. Water treatment plant sludge deposit. A case study of Usuma Dam water works unpublished Pp.3, 2003. https://doi.org/10.6084/m9.figshare.940965

5.Roongtanakiat, N., Tangruangkiat, S. and Meesat, R., Utilization of Vetiver Grass (Vetiveria zizanioides) for Removal of Heavy Metals from Industrial Wastewaters., Science Asia, 33, 2007, 397-403. https://doi.org/10.2306/scienceasia1513-1874.2007.33.397

6.Cunningham, S.D., William, R.B. and Jianwei, W.H., Phytoremediation of Contaminated Soils Tibtech, 13, 1995, 393-397. https://doi.org/10.1016/S0167-7799(00)88987-8

7.Dixon, A., Simon, M. and Burkitt, T., Assessing the Environmental Impact of Two Options for Small Scale Wastewater Treatment: Comparing a Reed Bed and an Aerated Biological Filter using a Life Cycle Approach Ecol. Eng., 20, 2003, 297-308. https://doi.org/10.1016/S0925-8574(03)00007-7

8.Azaizeh, H., Salhani, N., Sebesvari, Z. and Emons, H., The Potential of Rhizosphere Microbes Isolated from a Constructed Wetland to Biomethylate SeleniumJ. Environ. Qual., 32, 2003, 55-62. https://doi.org/10.2134/jeq2003.0055

9.Ajibade F.O., Adeniran K.A., Egbuna C.K. 2013.Phytoremediation efficiencies of water hyacinth in removing heavy metals in domestic sewage (A Case Study of University of Ilorin, Nigeria). The International Journal of Engineering and Science, 2(12), 16-27. https://doi.org/10.6084/m9.figshare.940965

10.Шояқубов Р. ―Қишлоқ ва саноат корхоналари оқова сувларини сув ўтлари ва сув ўсимликлари ѐрдамида тозалаш биотехнологияси―Тошкент 2008-йил 136-143-бет.

11.Бўриев Э.С. Совершенствование функционирования и методов гидравлического расчета систем биологической очистки сточных вод. Дисс. к.т.н. Ташкент, 2010. – 112 с.

12.Abdukodirova M.N., Ismoilkhojayev B.Sh. Treatment of polluted municipal wastewater in Tashkent. «Central Asia and South Caucasus Agricultural universities consortium for Development CONMECHYDRO – 2021. E3S Web of Conferences 264, 01052 (2021) https://doi.org/10.1051/ e3sconf/ 202126401052

13.Обиджони Ш.К. Гидрохимические свойства и состав воды Нурекского водохранилища. Известия ТулГУ. Науки о Земле. 2022. Вып. 3. -C. 54-60.

14.Strokach P.P., Kulsky L.A. Workshop on natural water purification technology: textbook. manual for Universities. Moscow: Higher School, 1980. 316 p.

15.Lurie Yu.Yu. Unified methods of water analysis: textbook. handbook for Universities / Lurie Yu.Y. M: Chemistry, 1989. 376 p

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Published

2026-07-02

How to Cite

FORMATION OF THE HYDROCHEMICAL REGIME AND INTER-IONIC CORRELATION DEPENDENCIES IN ARTIFICIAL WATER BODIES FED BY GROUNDWATER (Abdinazarov Khasanboy Kholiknazarovich, Trans.). (2026). London International Monthly Conference on Multidisciplinary Research and Innovation (LIMCMRI), 6(02), 18-21. https://worldsiencepub.com/index.php/lmc/article/view/11582