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Asosiy til:O'zbek

ISHQORIY MUHITDA FAOLLASHTIRILGAN DEFEKAT CHIQINDISINING IQ-SPEKTROSKOPIK TAHLILI

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MAQOLA ANNOTATSIYASI

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Ushbu ishda shakar sanoati chiqindisi ya’ni defekatni ishqoriy muhitda (NaOH eritmasi) faollashtirish natijasida hosil bo‘lgan namunaning tarkibiy va funksional tahlili IQ-spektroskopiya usulida o‘rganildi. Spektr tahlillari kalsiy karbonatning qisman kalsiy gidroksidi va natriy karbonatiga aylanganini, yuzada faol gidroksil guruhlari hosil bo‘lganini ko‘rsatdi. Shu bilan birga organik moddalar (pektin, shakar qoldiqlari, azotli va azotsiz organik birikmalar) ning karbonil, karboksil va C–H tebranishlari qayd etildi. Defekat tarkibidagi mineral qo‘shimchalar magniy, kaliy, fosfor birikmalari va silikatlar ham spektrda aks etdi. Olingan natijalar ko‘rsatdiki shakar ishlab chiqarish chiqindi mahsuloti defekatni ishqoriy muhitda faollashtirish jarayonida olingan namunalar ya’ni, sorbentlarning yuza maydoni va faol markazlarini ko‘paytirishi mumkinligini ko‘rsatdi.

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Teglar

# defecate# дефекат# сорбент# sorbent# адсорбция# adsorption# карбонат кальция# calcium carbonate# adsorbsiya# NaOH# defekat# kalsiy karbonat# gidroksil guruhlari# гидроксильные группы# hydroxyl groups

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Foydalanilgan adabiyotlar

[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).

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