XONDIZA KONI POLIMETALL RUDALARINI FLOTATSIYALASHDA REAGENT REJIMINI TAKOMILLASHTIRISH

XONDIZA KONI POLIMETALL RUDALARINI FLOTATSIYALASHDA REAGENT REJIMINI TAKOMILLASHTIRISH

Авторы

  • Abbos Shodiyev
  • Baxtiyor Egamberdiyev

DOI:

https://doi.org/10.5281/zenodo.18404332

Ключевые слова:

flotatsion boyitish, polimetall rudalar, Xondiza koni, reagent rejimi, rux konsentrati, selektiv flotatsiya

Аннотация

Mazkur maqolada Xondiza koni polimetall rudalarini flotatsion boyitishda reagent rejimini takomillashtirish
masalalari tahlil qilindi. Tadqiqotda mis–qo‘rg‘oshin flotatsiyasi chiqindilaridan ruxni ajratib olish jarayoniga alohida e’tibor
qaratilib, amaldagi texnologik sxemalar hamda reagent rejimlari qiyosiy baholandi. Ilmiy adabiyotlar, ishlab chiqarish
tajribasi va statistik ma’lumotlar tahlili asosida rux flotatsiyasida qo‘llanilayotgan yig‘gich hamda aktivatorlarning
samaradorligi o‘rganildi. Natijalar BKK yig‘gichi va mis kuporosi sarfini optimallashtirish orqali rux konsentratidagi Zn
miqdorini 55% gacha, umumiy ajratib olinishi darajasini esa 73,16% gacha oshirish mumkinligini ko‘rsatdi. SEM va EDS
tahlillari ruxning konsentratda asosan sfalerit shaklida jamlanganini tasdiqladi. Shu bilan birga, rux konsentratida ma’lum
miqdorda qo‘rg‘oshinning saqlanib qolishi flotatsiya jarayonining selektivligini yanada oshirish zarurligini ko‘rsatadi.
Olingan xulosalar polimetall rudalarni flotatsion boyitish texnologiyalarini takomillashtirish hamda rangli metallurgiya
korxonalarida xomashyo resurslaridan samarali foydalanishni qo‘llab-quvvatlash uchun ilmiy asos bo‘lib xizmat qiladi

Биографии авторов

Abbos Shodiyev

Qarshi davlat texnika universiteti
“Neft-gaz va geologiya” fakulteti dekani dotsent (DSc)

Baxtiyor Egamberdiyev

Qarshi davlat texnika universiteti
“Geologiya va konchilik ishi” kafedrasi assistenti

Библиографические ссылки

Rajabov, S. X., & Xakimov, K. J. (2025). Investigation of flotation beneficiation of polymetallic ores of the Khondiza

deposit. Digital Technologies in Industry, 3(4), 60–66. https://doi.org/10.70769/3030-3214.SRT.3.4.2025.26

Rajabov, S. X., Xasanov, A. S., & Xakimov, K. J. (2025). Improvement of beneficiation technologies for polymetallic

ores of the Khondiza deposit based on mineralogical studies. Universum: Technical Sciences, 2(131), 19–23. URL:

https://7universum.com/ru/tech/archive/category/2131

Xakimov, K. J., & Rajabov, S. X. (2025). Raw material characteristics and technological properties of the Khondiza

deposit. Development of Science and Technology, 4, 110–119. URL: https://srt-journal.uz/ojs/index.php/SRT/en/

article/view/255

Хужакулов, Н. Б., Рузиев, У. М., & Насирова, Н. Р. (2021). Исследования влияния качества биокека на показатели

сорбционного выщелачивания. Universum: технические науки, 5-2(86), 20–23. URL: https://7universum.com/ru/

tech/archive/item/11916

Rajabov, S. X., Xakimov, K. J., Xolnazarov, F. A., & Abdisoatov, S. Z. (2025). Improving the technology for extracting

zinc, copper, and lead from polymetallic ores of the Khondiza deposit. Composite Materials, 2, 80–84. URL: https://

srt-journal.uz/ojs/index.php/SRT/en/article/view/255

Umarova, I. K. (2016). Technological studies on the beneficiation of polymetallic ore samples from the Chinarsay

deposit. In Socio-economic and environmental problems of the mining industry (pp. 332–338). Tula–Minsk–Donetsk.

URL: https://scholar.google.com/

Barat o‘g‘li, E. B. (2025). Texnogen chiqindilarni ikkilamchi resurs sifatida kompleks o‘zlashtirish texnologik yechimlari.

Ta’lim innovatsiyasi va integratsiyasi, 54(1), 192–197. URL: https://scholar.google.com/

Botirovich, X. J. N., Mamarasulovich, R. Z. U. B., & Odilo‘g‘li, I. B. (2025). “NKMK” AJ “Auminzo-Amantoy” koni

oltin ajratish sexi texnogen chiqindilarini tadqiq qilish. Sanoatda raqamli texnologiyalar / Цифровые технологии в

промышленности, 3(4), 124–128. URL: https://srt-journal.uz/

Umarova, I. K., Salijanova, G. Q., & Avinjanova, S. I. (2018). Study on the enrichment of polymetallic ores of the

Handiza deposit. In Sustainable development of resource-saving technologies in mineral mining and processing (pp.

–306). Universitas Publishing. URL: https://scholar.google.com/

Barat o‘g‘li, E. B. (2025). Aylanma quvurli pechda dispers metall chiqindilarni qayta ishlash jarayonida gaz oqimi

aerodinamikasi va issiqlik almashinuvi xususiyatlarini tadqiq etish. Ta’lim innovatsiyasi va integratsiyasi, 54(1), 198–

URL: https://scholar.google.com/

Wills, B. A., & Finch, J. A. (2016). Wills’ Mineral Processing Technology (8th ed.). Butterworth-Heinemann. URL:

https://www.elsevier.com/books/wills-mineral-processing-technology/wills/978-0-08-097053-0

Fuerstenau, M. C., Jameson, G. J., & Yoon, R. H. (2007). Froth Flotation: A Century of Innovation. Society for Mining,

Metallurgy & Exploration. URL: https://www.smenet.org/

Bulatovic, S. M. (2010). Handbook of Flotation Reagents: Chemistry, Theory and Practice. Elsevier. URL: https://www.

sciencedirect.com/book/9780444520295/handbook-of-flotation-reagents

Yusupxodjaev, A., & Xudoyarov, S. (2019). Fundamentals of flotation processes in non-ferrous metallurgy. Mining

Journal of Central Asia, 4, 45–52. URL: https://scholar.google.com/

Загрузки

Опубликован

2026-01-01
Loading...