NEFT-GAZ SANOATI OQOVA SUVLARIDAN OGʻIR METALL IONLARI VA FENOLIK BIRIKMALARNI BIOAKTIV KARBON MATERIALLAR YORDAMIDA SELEKTIV SORBSION AJRATISH MEXANIZMLARINING KVANT-KIMYOVIY MODELLASHTIRILISHI

Mualliflar

  • B.A. Yoʻldoshev Oʻzbekiston Milliy universiteti harbiy tayyorgarlik oʻquv markazi Muallif
  • X.B. Abdumalikova Toshkent kimyo-texnologiya instituti, Muallif

Abstrak

Bugungi kunda neft-gaz sanoati korxonalarida (ayniqsa, gazni qayta ishlash va neftni tozalash zavodlarida) hosil bo‘layotgan oqova suvlar tarkibi yuqori darajadagi og‘ir metall ionlari (Pb2+, Cd2+, Cr3+, Ni2+), shuningdek fenol, krezol va toluol kabi toksik organik birikmalar bilan murakkablashgan. Ular suv havzalari va tuproqqa tushganda biotizimlarda toksik akkumulatsiya yuzaga keltiradi, bu esa ekologik xavfsizlikka bevosita tahdid tug‘diradi.

Iqtiboslar

Rahman, M.M., et al. (2022). Biochar-based materials for heavy metal removal from industrial wastewater: recent advances and mechanisms. Chemosphere, 307, 135691.

Ibrahim, M.N.M., et al. (2021). Adsorptive removal of phenolic compounds from petroleum wastewater using biochar derived from agricultural waste. Journal of Water Process Engineering, 43, 102277.

Qiao, Y., et al. (2020). Theoretical insights into adsorption mechanisms of heavy metals and organic pollutants on functionalized carbon materials: A DFT study. Applied Surface Science, 530, 147274.

Liu, Y., et al. (2023). Density functional theory investigation on adsorption and selectivity of phenol and xylene over doped graphene-based adsorbents. Computational Materials Science, 219, 112015.

Zhou, Q., et al. (2021). Adsorption mechanisms of Cd(II) and Pb(II) on biochar-supported Fe3O4 nanoparticles: Experimental and quantum chemical insights. Environmental Pollution, 278, 116831.

Nashr qilingan

2025-10-20

Iqtibos keltirish tartibi

NEFT-GAZ SANOATI OQOVA SUVLARIDAN OGʻIR METALL IONLARI VA FENOLIK BIRIKMALARNI BIOAKTIV KARBON MATERIALLAR YORDAMIDA SELEKTIV SORBSION AJRATISH MEXANIZMLARINING KVANT-KIMYOVIY MODELLASHTIRILISHI. (2025). Ilm-Fan Va Innovatsiya, 3(39), 117-118. https://in-academy.uz/index.php/SI/article/view/34514