KAULDI KONI OLTIN MA’DANLARI TURLI KOMBINATSIYALASHGAN QAYTA ISHLASH SXEMALARINI TAHLIL QILISH

Maqolaning Asosiy Qismi

Samadov, A.U.
Nurmuhammedov, I.S.
https://orcid.org/0009-0001-3725-9986
Xamidullayev, B.N.
Hakimov, A.X.

Annotatsiya

Ushbu maqolada Kauldi koni oltin ma’danlarini turli usullarni qo‘llab boyitiluvchanligini o‘rganish, jumladan ma’danni gravitatsion va flotatsion usulda boyitish bilan bir qatorda ushbu usullarni birgalikda kombinatsiya usulida qo‘llash asosida ma’dan tarkibidagi qimmatbaho komponentlarni maksimal darajada samarali ajratib olish imkonini beruvchi texnologik yechimlar tahlil qilingan. Bunda boyitmalarni mis eritish zavodida eritish va sianidlash, boyitish chiqindilarini esa sianidlash usulini qo‘llab qayta ishlash nazarda tutilgan. Bunda ma’dan tarkibida gil minerallari miqdori yuqoriligi sababli sianidlash qoldig‘ini filtrlashda yuzaga kelishi mumkin bo‘lgan muammolarni ham hisobga olish kerak bo‘ladi. O‘tkazilgan laboratoriya tadqiqotlari natijalari asosida Kauldi koni ma’danini 90% -0,074 mm o‘lchamgacha yanchish, ikkitadan asosiy va nazorat flotatsiyasi, ushbu jarayonlar ko‘pikli mahsulotini tozalash flotatsiyasi va flotatsiya chiqindisini sianidlashni o‘z ichiga oluvchi flotatsiya-sianidlash sxemasi tavsiya etiladi.

Yuklab olishlar

Yuklab olish ma’lumotlari hali mavjud emas.

Maqola Tafsilotlari

Bo‘lim

Kon-metallurgiya va ishlab chiqarish sanoati

Muallif biografiyalari

Samadov, A.U., Olmaliq davlat texnika universiteti

Texnika fanlari doktori, professor, Olmaliq davlat texnika universiteti, Olmaliq, O‘zbekiston

Nurmuhammedov, I.S., “Mineral resurslar instituti” DM

“Mineral resurslar instituti” DM Ma’danli foydali qazilmalarni boyitish texnologiyasi laboratoriyasi boshlig‘i, Toshkent, O‘zbekiston

Xamidullayev, B.N., “Mineral resurslar instituti” DM

“Mineral resurslar instituti” DM, “Olmaliq tajriba-sinov  va geoinnovatsion texnologiyalar markazi” mudiri, Toshkent, O‘zbekiston

Hakimov, A.X., “O‘zbek geologiya qidiruv” AJ

“O‘zbek geologiya qidiruv” AJ Laboratoriya boshlig‘i, Toshkent, O‘zbekiston

Iqtibos keltirish tartibi

Samadov, A. U., Nurmuhammedov, I. S., Xamidullayev, B. N., & Hakimov, A. X. (2026). KAULDI KONI OLTIN MA’DANLARI TURLI KOMBINATSIYALASHGAN QAYTA ISHLASH SXEMALARINI TAHLIL QILISH. Sanoatda Raqamli Texnologiyalar, 4(1), 85-89. https://doi.org/10.70769/3030-3214.SRT.4.1.2026.34

Adabiyotlar ro‘yxati

[1] Feng, Q., Zhang, Y., Zhang, G., Han, G., Zhao, W. (2025). Innovative scheme for hemimorphite flotation: Synergistic activation performance and mechanism. International Journal of Minerals, Metallurgy and Materials, 32, 1297–1308. DOI: https://doi.org/10.1007/s12613-024-3016-3

[2] Mikali, M., Barbouchi, A., Idouhli, R., Abouelfida, A., Yaacoubi, A., Benzakour, I., Faqir, H., Boulaamail, A., Bacaoui, A. (2023). Electrochemical behavior of silver during cyanidation in the presence of sulfide minerals. Chemical Papers, 77(4), 2103–2113. DOI: https://doi.org/10.1007/s11696-022-02613-2

[3] Moslemi, H., Gharabaghi, M. (2017). A review on electrochemical behavior of pyrite in the froth flotation process. Journal of Industrial and Engineering Chemistry. DOI: https://doi.org/10.1016/j.jiec.2016.12.012

[4] Yang, W., Tang, Y., Huang, B., Han, G., Feng, Q. (2025). Enhanced flotation of sulfidized smithsonite in a Cu–Pb dual activation system. Green and Smart Mining Engineering, 2, 8–17. DOI: https://doi.org/10.1016/j.gsme.2025.01.004

[5] Tang, Y., Yang, W., Chen, S., Shen, Z., Feng, Q., Zhang, Q. (2026). A green and biodegradable depressant for efficient flotation separation of smithsonite from calcite. Separation and Purification Technology, 380. DOI: https://doi.org/10.1016/j.seppur.2025.135562

[6] Xue, Y., Wu, P., Lü, Y., Shan, H., Xu, X., Yu, B., Chen, X., Zhang, X., Xiong, C. (2026). Cavitation-flotation coupling purification of natural flake graphite. Separation and Purification Technology, 382. DOI: https://doi.org/10.1016/j.seppur.2025.136128

[7] Gao, J., Bu, X., Zhou, S., Wang, X., Alheshibri, M., Peng, Y., Xie, G. (2022). Graphite flotation by β-cyclodextrin/kerosene Pickering emulsion as a novel collector. Minerals Engineering, 178. DOI: https://doi.org/10.1016/j.mineng.2022.107412

[8] Ren, X., Bu, X., Tong, Z., Dong, L., Ma, Z., Wang, J., Cao, M., Qiu, S. (2024). Influences of plasma treatment parameters on the hydrophobicity of cathode and anode materials from spent lithium-ion batteries. Waste Management, 184, 120–131. DOI: https://doi.org/10.1016/j.wasman.2024.05.039

[9] Zhou, S., Tong, Z., Dong, L., Bu, X., Ni, C., Xie, G., Alheshibri, M. (2023). Influence of single and combined ultrasounds assisted flake graphite flotation. Ultrasonics Sonochemistry, 99. DOI: https://doi.org/10.1016/j.ultsonch.2023.106551

[10] Brown, S. D., Tauler, R., Walczak, B. (2009). Comprehensive chemometrics: Chemical and biochemical data analysis. Elsevier.

[11] Cerqueira, U. M. F. M., Bezerra, M. A., Ferreira, S. L. C., De Jesus Araújo, R., Da Silva, B. N., Novaes, C. G. (2021). Doehlert design in the optimization of procedures aiming food analysis: A review. Food Chemistry, 364. DOI: https://doi.org/10.1016/j.foodchem.2021.130429

[12] Isoqov, M. U., Nurmuhammedov, I. S., Jabborov, E. Yu., Normurodov, A. A. (2025). Kauldi oltin koni ma’danlarini flotatsion boyitiluvchanligini va flotatsiyalash mahsulotlarining moddiy tarkibini o‘rganish. Geologiya fanlari universiteti xabarlari.

Xuddi shu muallif (lar) ning eng ko'p o'qilgan maqolalari

O'xshash maqolalar

Siz ham ushbu maqola uchun {$ advancedSearchLink} olishingiz mumkin.