69621acc09471.pdf
DOI:
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[1] Vesentsev, V. S., Vlasov, V. A., & Malyshenko, N. V. (2018). A composite sorbent based on bentonite-like clay and hydroxyapatite. Journal of Water Chemistry and Technology, 40, 45–53.
[2] Вишнякова, А. А. (2021). Фосфорные удобрения из каратауских, гулиобских и других фосфоритов. Москва: Наука.
[3] Phaenark, C., Lin, F., Wei, X., Pang, J., & Liang, B. (2024). Moss biomass as effective biosorbents for heavy metals in contaminated water. Heliyon, 10(2), e27232.
[4] Younis, A. M., Alkahtani, F., El-Naggar, A. H., El-Sayed, M., Alotaibi, B. S., & Alhussaini, M. S. (2024). Enteromorpha compressa macroalgal biomass nanoparticles as eco-friendly biosorbents for the efficient removal of harmful metals from aqueous solutions. Environments, 5(3), 21.
[5] Abiodun, O.-A. O., Oyebamiji, A. S., Oladipo, A. Y., Alade, O. S., & Babatunde, E. O. (2023). Remediation of heavy metals using biomass-based adsorbents: Adsorption kinetics and isotherm models. Surfaces, 5(3).
[6] Азимова, Д. А., & Салиханова, Д. С. (2021, 24 март). Шакар ишлаб чиқариш чиқиндиси дефекат асосида юқори самарали сорбентлар олиш. В Қорақалпоғистон Республикасида кимё ва кимёвий технология соҳаларининг долзарб муаммолари (сс. 418–419). Нукус.
[7] Azimova, D. A., Salikhanova, D. S., Bakhranova, N. S., Eshmetov, I. D., & Temirov, U. Sh. (2023, September). Treatment of industrial wastewater with activated samples based on defekate and bentonite. International Journal of Advanced Research in Science, Engineering and Technology, 10(9).
[1] Vesentsev, V. S., Vlasov, V. A., & Malyshenko, N. V. (2018). A composite sorbent based on bentonite-like clay and hydroxyapatite. Journal of Water Chemistry and Technology, 40, 45–53.
[2] Вишнякова, А. А. (2021). Фосфорные удобрения из каратауских, гулиобских и других фосфоритов. Москва: Наука.
[3] Phaenark, C., Lin, F., Wei, X., Pang, J., & Liang, B. (2024). Moss biomass as effective biosorbents for heavy metals in contaminated water. Heliyon, 10(2), e27232.
[4] Younis, A. M., Alkahtani, F., El-Naggar, A. H., El-Sayed, M., Alotaibi, B. S., & Alhussaini, M. S. (2024). Enteromorpha compressa macroalgal biomass nanoparticles as eco-friendly biosorbents for the efficient removal of harmful metals from aqueous solutions. Environments, 5(3), 21.
[5] Abiodun, O.-A. O., Oyebamiji, A. S., Oladipo, A. Y., Alade, O. S., & Babatunde, E. O. (2023). Remediation of heavy metals using biomass-based adsorbents: Adsorption kinetics and isotherm models. Surfaces, 5(3).
[6] Азимова, Д. А., & Салиханова, Д. С. (2021, 24 март). Шакар ишлаб чиқариш чиқиндиси дефекат асосида юқори самарали сорбентлар олиш. В Қорақалпоғистон Республикасида кимё ва кимёвий технология соҳаларининг долзарб муаммолари (сс. 418–419). Нукус.
[7] Azimova, D. A., Salikhanova, D. S., Bakhranova, N. S., Eshmetov, I. D., & Temirov, U. Sh. (2023, September). Treatment of industrial wastewater with activated samples based on defekate and bentonite. International Journal of Advanced Research in Science, Engineering and Technology, 10(9).