

Membrane Methods for Purification of Artesian Water with a High Content of Iron and Manganese
https://doi.org/10.18412/1816-0395-2023-12-11-14
Abstract
The effects of the main technological parameters, such as pressure, temperature of the separated solution on the process of ultrafiltration and reverse osmosis during the purification of artesian waters from iron and manganese compounds are considered.It was found that the use of ultrafiltration for pre-treatment and subsequent reverse osmosis is an effective way to obtain drinking water quality. The optimal technological diagram of artesian water treatment plants is shown.
About the Authors
Lin Maung MaungRussian Federation
Cand. Sci. (Eng.), Doctoral Student
G.G. Kagramanov
Russian Federation
Dr. Sci. (Eng.), Head of Department
Htet Aung
Russian Federation
Post-graduate Student
References
1. Xiaobin Tang, Xuewu Zhu, Kaijie Hung, Jinlong Wang, Yuanqing Guo, Binghan Xie, Guibai Li, Heng Liang. Can ultrafiltration singly treat iron- and manganese-containing groundwater? Journal of Hazardous Materials. 2021. Vol. 409. No. 124983. P. 1—12.
2. Francisca Labarca, Rodrigo Borquez. Comparative study of nanofiltration and ion exchange for nitrate reduction in the presence of chloride and iron in groundwater. Science of the Total Environment. 2020. Vol. 723. No. 137809. P. 1—12.
3. Perfilev A.V., Chirikov A.Yu., Badulin Yu.M., Yudakov A.A., Slesarenko V.V. Research of Demanganation Process of Artesian Well Water. Russian Journal of General Chemistry. 2014. Vol. 84. No. 13. P. 2588—2591.
4. Лойко А.В., Шибанов И.В., Каграманов Г.Г., Бланко-Педрехон А.М. Опыт внедрения мембранной технологии очистки артезианских вод с высоким содержанием железа и марганца. Водоочистка. Водоподготовка. Водоснабжение. 2018. № 4. С. 58—62.
5. Norherdawati Kasim, Abdul Wahab Mohammad, Siti Rozaimah Sheikh Abdullah. Iron and Manganese removal by nanofiltration and ultrafiltration membranes: Influence of pH adjustment. Malaysian journal of analytical science. 2017. Vol. 21. No. 1. 149—158.
6. A global overview of national regulations and standards for drinking-water quality. Geneva: World Health Organization. 2018. Licence: CC BY-NC-SA 3.0 IGO.
7. Лин Маунг Маунг, Хтет Аунг, Со Тхурейн, Парусов Д.В., Каграманов Г.Г., Фарносова Е.Н. Методическое обоснование и выбор технологии очистки артезианских вод Республики Союз Мьянма. Экология и промышленность России. 2021. Т. 25. № 8. С. 34—39.
8. Лин Маунг Маунг, Фарносова Е.Н., Каграманов Г.Г. Очистка сточных вод от тяжелых металлов методами нанофильтрации и ионного обмена. Химическая промышленность сегодня. 2017. № 8. С. 30—35.
9. Kumar R., Kaushik A., Sharma S. Manganese removal from groundwater: A comprehensive review. Environmental Science and Pollution Research. 2019. Vol. 26 (12). P. 11361—11382.
10. Дытнерский Ю.И. Обратный осмос и ультрафильтрация. М., Химия, 1978. 352 с.
11. Дытнерский Ю.И. Баромембранные процессы: теория и расчет. М., Химия, 1986. 272 с.
12. Rajindar Singh, Nicholas P. Hankins. Emerging Membrane Technology for Sustainable Water Treatment. Saint Louis, Elsevier Science, 2016. 472 p.
Review
For citations:
Maung Maung L., Kagramanov G., Aung H. Membrane Methods for Purification of Artesian Water with a High Content of Iron and Manganese. Ecology and Industry of Russia. 2023;27(12):11-14. (In Russ.) https://doi.org/10.18412/1816-0395-2023-12-11-14