يعرض 1 - 20 نتائج من 1,365 نتيجة بحث عن '"пыль"', وقت الاستعلام: 0.54s تنقيح النتائج
  1. 1
    Academic Journal
  2. 2
  3. 3
    Academic Journal
  4. 4
    Academic Journal
  5. 5
    Academic Journal
  6. 6
    Conference
  7. 7
    Conference
  8. 8
    Academic Journal
  9. 9
  10. 10
    Academic Journal

    المؤلفون: Абдиева Ю.А.

    المصدر: SCIENTIFIC JOURNAL OF APPLIED AND MEDICAL SCIENCES; Vol. 3 No. 12 (2024): AMALIY VA TIBBIYOT FANLARI ILMIY JURNALI; 370-377 ; НАУЧНЫЙ ЖУРНАЛ ПРИКЛАДНЫХ И МЕДИЦИНСКИХ НАУК; Том 3 № 12 (2024): AMALIY VA TIBBIYOT FANLARI ILMIY JURNALI; 370-377 ; 2181-3469

    وصف الملف: application/pdf

  11. 11
    Academic Journal

    المصدر: Medicine in Kuzbass; Том 23, № 4 (2024): декабрь ; Медицина в Кузбассе; Том 23, № 4 (2024): декабрь ; 2588-0411 ; 1819-0901

    وصف الملف: text/html

  12. 12
    Academic Journal
  13. 13
    Academic Journal

    المصدر: Izvestiya. Non-Ferrous Metallurgy; № 4 (2024); 11-21 ; Izvestiya Vuzov. Tsvetnaya Metallurgiya; № 4 (2024); 11-21 ; 2412-8783 ; 0021-3438

    وصف الملف: application/pdf

    Relation: https://cvmet.misis.ru/jour/article/view/1642/759; https://cvmet.misis.ru/jour/article/view/1642/761; Kolesnikov A.V. Research and development of processes for producing high-quality zinc from raw materials with a high content of cobalt and nickel: Diss. . Dr. Sci. (Eng.). Ekaterinburg: UGTU–UPI, 2007. (In Russ.).; Alkatsev M.I. Cementation processes in non-ferrous metallurgy. Moskow: Metallurgiya, 1981. 113 p. (In Russ.).; Rotinyan A.L., Tikhonov K.I., Shoshina I.A. Theoretical electrochemistry. Leningrad: Khimiya, 1981. 424 p. (In Russ.).; Voldman G.M., Zelikman A.N. Theory of hydrometallurgical processes. Moskow: Intermet Inzhiniring, 2003. 462 p. (In Russ.).; Ageenko E.I., Kolesnikov A.V., Pavlovsky D.A. Study of the kinetics of cadmium cementation in the presence of a flocculant. Journal of the Siberian Federal University. Chemistry. 2023;16(2):287—299. (In Russ.).; Danuta K. Cementation purification of industrial solutions of zinc sulfate. Rud Imetaleniezel.1979;24(2):65—75.; Quathers R. The method of purification of the electrolyte in hydrometallurgy of zinc. Metallurgie. 1976;16(3): 164—166.; Abrasheva B., Karoleva V. The influence of lead oxide on the deposition of cobalt and nickel from zinc sulfate solutions by zinc dust. Study of the conditions for using oxides of the first stage according to Harris as an activating additive. Godishn. Institute of Nonferrous Metallurgy. 1977;15:19—39.; Alkatsev V.M., Alkatseva M.I. The influence of PAA glue on the processes of cementation of copper, cadmium and cobalt. Izvestiya. Non-Ferrous Мetallurgy. 1991;(2):119—120. (In Russ.).; Ageenko E.I., Kolesnikov A.V., Pavlovsky D.A. Investigation of cadmium cementation kinetics in the presence of surfactants. Bulletin of the South Ural State University. Ser. Chemistry. 2023;15(2):107—115. (In Russ.). https://doi.org/10.14529/chem230210; Kolesnikov A.V. On the issue of cleaning solutions from cobalt with zinc dust. Non-Ferrous Metallurgy. 2012;(1):42—47. (In Russ.).; Polyakov M.L., Polyakova E.M., Polyakova O.M. Method for purifying zinc sulfate solutions from nickel and cobalt. Author’s certificate 358271 (USSR). 1985. (In Russ.).; Kolesnikov A.V. Reduction of copper by metallic zinc in aqueous solutions in the presence of high molecular weight surfactants. Condensed Matter and Interphases. 2016;18(1):46—55. (In Russ.).; Bockman O., Ostvold T. The effect of tartaric acid salts on the cementation of cobalt from a solution of zinc sulfate on a rotating zinc disk. Hydrometallurgy. 2000;55(1):107—112. https://doi.org/10.1016/S0304-386X(99)00079-1; Palant A.A., Bryukvin V.A. Purification of hydrometallurgical solutions from organic impurities. Non-Ferrous Metals. 2001;(1):87—89 (In Russ.).; Karavasteva M. The effect of certain surfactants on the cementation of cobalt from zinc sulphate solutions by suspended zinc particles in the presence of copper or antimony. Canadian Metallurgical Quarterly. 2001;40(2):179—184. https://doi.org/10.1179/000844301794388416; Karavasteva M. Effect of surfactants on the cementation of nickel with zinc powder from zinc sulfate solutions in the presence of copper. Canadian Metallurgical Quarterly. 1999;38(3):207—209. https://doi.org/10.1179/cmq.1999.38.3.207; Karavasteva M. The influence of copper on the effect of certain surfactants during the cementation of cadmium by suspended zinc particles. Hydrometallurgy. 1998;48(3):361—366. https://doi.org/10.1016/S0304-386X(98)00009-7; Wang T., Lin G., Gu L., Hu T., Xie T., Qu H., Wang S., Zhang L., Cheng S., Liu J. Role of organics on the purification process of zinc sulfate solution and inhibition mechanism. Materials Research Express. 2019;6(10):106588. https://doi.org/10.1088/2053-1591/ab3dc5; Dai J., Wang D., Q. Jiang L., Jin M. Removal of cobalt from zinc sulfate solutions using the addition of antimony trioxide. Transactions of Nonferrous Metals Society of China. 2002;12(6):1172—1175.; Ragyavan R., Mohanan P.K., Verma S.K. Modified zinc sulphate solution purification technique to obtain low levels of cobalt for the zinc electrowinning process. Hydrometallurgy. 1999;51(2):187—206. https://doi.org/10.1016/S0304-386X(98)00076-0; Jiang L., Wang D., Dai J., Jin M., Wei X. Zinc powder consumption decrease in cobalt removal from zinc leaching solution with arsenic oxide. Nonferrous Metals (China). 2003;55(1):90—95.; Dreher T.M., Nelson A., Demopoulos G.P., Filippou D. The kinetics of cobalt removal by cementation from an industrial zinc electrolyte in the presence of Cu, Cd, Pb, Sb and Sn additives. Hydrometallurgy. 2001;60(2):105—116. https://doi.org/10.1016/S0304-386X(00)00152-3; Guo Zhang-cheng, Yan Jiang-fend, Yang Xian-wan. Mechanism of Sb2O3 in removal of cobalt in zinc sulfate solutions. The Chinese Journal of Nonferrous Metals. 2000;10(5):697—700.; Liu Z., Tang C., Zhang D., Guo X., Chen H. Study on the purifying processes for zinc leach solutions with antimony trioxides. Journal of Central South University of Technology (China). 2000;31(3):225—227.; Boyanov B.S., Konareva V.V., Kolev N.K. Purification of zinc sulfate solutions from cobalt and nickel through activated cementation. Hydrometallurgy. 2004;73(1-2):163—168. https://doi.org/10.1016/j.hydromet.2003.09.002; Tozawa K., Nishimura T., Akahori M., Malaga M.A. Comparison between purification processes for zinc leach solutions with arsenic and antimony trioxides. Hydrometallurgy. 1992;30(1-3):445—461. https://doi.org/10.1016/0304-386X(92)90099-L; Bøckman O., Østvold T., Voyiatzis G.A., Papatheodorou G.N. Raman spectroscopy of cemented cobalt on zinc substrates. Hydrometallurgy. 2000;55(1):93—105. https://doi.org/10.1016/S0304-386X(99)00080-8; Bagaev A.S. Optimal content of copper ions and the degree of cobalt extraction during cementation cleaning of zinc solutions. Izvestiya. Non-Ferrous Metallurgy. 1981;(4):57—58. (In Russ.).; Kolesnikov A.V., Tsyganova I.V. Investigation of flocculant influence on the kinetic parameters of copper recovery in aqueous solution with metal zinc. Izvestiya. Non-Ferrous Metallurgy. 2019;(3):4—11. (In Russ.). https://doi.org/10.17073/0021-3438-2019-3-4-11; Zahmati F., Shayesteh K., Vahidfard V. Removal of cadmium in process of nickel production out of cold purification waste of zinc factories. Journal of The Institution of Engineers (India): Series D. 2024:1—10. https://doi.org/10.1007/s40033-023-00617-0; Abbasi P., Shayesteh K., Vahidfard V., Jangara H. Removal of cadmium in the cold purification step by semibatch process. Chemical Review and Letters. 2023;6(4): 449—460. https://doi.org/10.22034/crl.2023.408052.1234; Granata G., Tsendorj U., Liu W., Tokoro C. Direct recovery of copper nanoparticles from leach pad drainage by surfactant-assisted cementation with iron powder. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2019;580:123719. https://doi.org/10.1016/j.colsurfa.2019.123719; Kolesnikov A.V., Pratskova S.E. Theory and practice of cleaning solutions with zinc dust in hydrometallurgy. Experimental and theoretical data. Riga: Palmarium Academic Publishing, 2017. 130 p. (In Russ.).; https://cvmet.misis.ru/jour/article/view/1642

  14. 14
  15. 15
  16. 16
    Academic Journal
  17. 17
    Academic Journal

    المصدر: Материалы XX Всероссийской (национальной) научно-технической конференции студентов и аспирантов

    وصف الملف: application/pdf

    Relation: Научное творчество молодежи – лесному комплексу России. – Екатеринбург, 2024; Макеев, И. Р. Модернизация системы очистки аспирационных газов дробильного отделения обогатительной фабрики = Modernization of aspiration gas cleaning system of the crushing section of the enrichment plant / И. Р. Макеев, Р. К. Джумаев, Е. А. Авраамова. – Текст : электронный // Научное творчество молодежи – лесному комплексу России : материалы XX Всероссийской (национальной) научно-технической конференции студентов и аспирантов / Министерство науки и высшего образования Российской Федерации, Уральский государственный лесотехнический университет; [ответственный за выпуск Л. В. Малютина]. – Екатеринбург, 2024. – С. 601–604.; https://elar.usfeu.ru/handle/123456789/13039

  18. 18
    Academic Journal

    المصدر: Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY); № 1 (2024); 78-82 ; Литье и металлургия; № 1 (2024); 78-82 ; 2414-0406 ; 1683-6065 ; 10.21122/1683-6065-2024-1

    وصف الملف: application/pdf

    Relation: https://lim.bntu.by/jour/article/view/3664/3557; Исследование гранулометрического, химического и фазового составов отходов производства горячего цинкования / Н. И. Урбанович [и др.] // Литье и металлургия. – 2021. – № 3. – С. 106–111.; Влияние температурного параметра и его продолжительности на толщину цинкового покрытия, структуру при термодиффузионном цинковании в порошковых средах на основе цинсодержащего отхода – гартцинка / Н. И. Урбанович [и др.] // Литье и металлургия. – 2013. – № 3. – С. 99–102.; Урбанович, Н. И. Влияние температуры на толщину цинкового покрытия при термодиффузионном насыщении в порошковой среде из дисперсного отхода горячего цинкования – цинковой пыли (Znотх) +Al2O3 / Н. И. Урбанович, К. Э. Барановский, С. В. Корнеев // Проблемы и перспективы инновационной техники и технологий в аграрно‑пищевом секторе: сб. науч. тр. III Междунар. науч. конф., Ташкент, 20–21 апр. 2023: в 2 ч. – Ташкент, 2023. – Ч. 1. – С. 105–106.; https://lim.bntu.by/jour/article/view/3664

  19. 19
    Academic Journal
  20. 20