CHO‘YAKON MAHALLIY KONI GRANIT VA GABBRO MINERLI ASOSIDA DEVORBOP EMULSIYALAR OLISH

Authors

  • Hilola Xolmurodovna Normurodova Termiz davlat universiteti, Magistr O‘zbekiston respublikasi, Termiz shahri
  • Xayit Xudaynazarovich Turayev Termiz davlat universiteti, kimyo fanlari doktori,professor
  • Хуршид Эсанбердиевич Эшмуродов PhD, доцент, Термезский государственный университет.
  • Сабохат Алмахматовна Холмуродова Termiz davlat universiteti, doktorant
  • Xurshida Abdusalimovna Yusupova Termiz davlat universiteti, magistr

Keywords:

granit, gabbro, bentonit, ohaktosh, giltuproq, emulsifikator, PVA, bolg‘ali tegirmon, sharli tegirmon, Cho‘yankon.

Abstract

Mahalliy kon “Cho‘yankon” graniti va gabbro minerali asosida va mineral to‘ldiruvchilar qo‘shish orqali devorbob emulsiyalar olindi. Minerallarni avval bolg‘ali keyin esa sharli tegirmonda maydalash orqali kukun holiga keltirib olindi.Bu quruq massalarimizga PVA ning suvli dispers aralashmasi, suv va emulsifikatorlar qo‘shib intensiv  aralashtirish orqali termik bardoshli,yorug‘likka , namlikka bardoshli yangi tarkibli namunalar olindi. Namunalarning xossalari, “Cho‘yankon” granit va gabbro minerallarining  hamda devorbob emulsiyaning boshqa xom-ashyolari tarkibi va fizik-mexanik xossalari  IQ-spektroskopiya ,rentgen-fluoresans analizi, termogravimetriya va differensial issiqlik analizlari  yordamida o‘rganildi. Ushbu minerallar asosida suvga asoslangan devor bo‘yog‘i tayyorlandi natijaklar tahlil qilindi.

References

Hu L., Ghassemi A. Heat production from lab-scale enhanced geothermal systems in granite and gabbro // Int. J. Rock Mech. Min. Sci. 2020. Vol. 126.

Liu Y., Rice J.R. Slow slip predictions based on granite and gabbro friction data compared to GPS measurements in northern Cascadia // J. Geophys. Res. Solid Earth. 2009. Vol. 114, № 9.

Payne J.L. et al. Granites and gabbros at the dawn of a coherent Australian continent // Precambrian Res. 2021. Vol. 359.

Zhao J.L. et al. Syn-orogenic tectonomagmatic evolution of the Qilian Orogen: Insights from the Lumanshan gabbro–granite association in the Qilian Block, Northwest China // Lithos. 2022. Vol. 434–435.

Shokry M.M. et al. Precambrian basement rocks of Wadi-Khuda-Shut area, South Eastern Desert of Egypt: Geology and remote sensing analysis // Egypt. J. Remote Sens. Sp. Sci. 2021. Vol. 24, № 1.

Melekestseva I. et al. Trace element geochemistry of sulfides from the Ashadze-2 hydrothermal field (12◦58′ N, mid-atlantic ridge): Influence of host rocks, formation conditions or seawater? // Minerals. 2020. Vol. 10, № 9.

Rasheed K., Sarma D.S. Occurrence of Gold in the Mesoarchean Mayurbhanj Gabbros of Singhbhum Craton, Eastern India // J. Geol. Soc. India. 2022. Vol. 98, № 1.

Hong J. et al. Petrogenesis of Murgab gabrro-diorite from Pamir: Evidence from zircon U-Pb dating, Hf isotopes and lithogeochemistry // Geol. China. 2017. Vol. 44, № 4.

Bhattacharjee N. et al. Mineralogical Study of gabbro-anorthosite from Dumka, Chhotanagpur gneissic complex, Eastern Indian shield // J. Geol. Soc. India. 2012. Vol. 80, № 4.

Stakes D.S., O‘Neil J.R. Mineralogy and stable isotope geochemistry of hydrothermally altered oceanic rocks // Earth Planet. Sci. Lett. 1982. Vol. 57, № 2.

Duan Q.F. et al. Zircon SHRIMP U-Pb dating and lithogeochemistry of gabbro from the ophiolite in southern Qinghai Province // Geol. China. 2009. Vol. 36, № 2.

Mikhailov B.N. Technology of electrochemical productions. Protective nonmetallic coverings. Irkutsk, IRGTU Publ., 2006, 148 p. (In Russ.)

Mikhailov B.N. Chemical resistance of materials and protection against corrosion. Irkutsk, IRGTU Publ., 2011, 152 p. (In Russ.)

Downloads

Published

2023-06-14

How to Cite

Normurodova, H. X., Turayev, X. X., Эшмуродов, Х. Э., Холмуродова, С. А., & Yusupova , X. A. (2023). CHO‘YAKON MAHALLIY KONI GRANIT VA GABBRO MINERLI ASOSIDA DEVORBOP EMULSIYALAR OLISH. Educational Research in Universal Sciences, 2(4 SPECIAL), 989–998. Retrieved from http://erus.uz/index.php/er/article/view/2988