1. Rashkevich, E.I. & Yushchenko, V.D. (2022). Zakachka vody v podzemnyi vodonosnyi plast skvazhiny iz pylevidnogo i sredne-melkozernistogo peska pri malom vodopotreblenii [Water injection into the underground aquifer of the well from pulverized and medium-fine-grained sand at low water consumption]. Vestn. Polots. gos. un-t. Ser. F, Str-vo. Priklad. nauki [Herald of Polotsk State University. Series F, Civil engineering. Applied sciences], 14(3), 64–70. DOI: 10.52928/2070-1683-2022-32-14-64-70. (In Russ., abstr. in Engl.).
2. Kulakov, V.V. (2013). Ispol'zovanie vnutriplastovoi ochistki podzemnykh vod ot zheleza i margantsa (na primere vodosnabzheniya g. Khabarovsk) [Use in situ treatment of groundwater from iron and manganese (by the example of water supply in Khabarovsk)]. Vestn. DVO RAN [Vestnik FEB RAS], (2), 84–89. (In Russ., abstr. in Engl.).
3. Braester, C. & Martinell, R. (1988). The Vyredox and Nytredox method in-situ treatment of groundwater. Wat. Sci. Tech., 20(3), 149–163.
4. Gurinovich, A.D., Vavrzhenyuk, P. & El'skii, I. (2013). Vozmozhnosti udaleniya iz vody zheleza v vodonosnom plaste na primere sushchestvuyushchikh vodozabornykh skvazhin [Possibilities of removing iron from water in an aquifer using the example of existing water wells]. Voda i ekologiya: problemy i resheniya [Water and ecology: problems and solutions], 2 (54), 12–20. (In Russ., abstr. in Engl.).
5. Gledko, Yu.A. (2012). Gidrogeologiya. Minsk: Vysh. shk. (In Russ.).