RESEARCH METHODS FOR OBTAINING MAGNESIUM SALTS BY ACIDIC DISSECTION OF SERPENTINITE ROCK

Authors

  • Bekchanov Bekzod Bakhtiyarovich Uzbekistan Republic of Uzbekistan , Tashkent city Tashkent chemical technology institute , « Inorganic substances chemical Technology » Department support doctoral student
  • Juginisov Berdakh Bayrambay old man Karakalpakstan state university Chemical engineering department support doctoral student
  • Djandullaeva Munavvar Saparbayevna Uzbekistan Republic of Uzbekistan , Tashkent city Tashkent chemical technology institute , « Inorganic substances chemical Technology » Department associate professor
  • Erkayev Aktam Ulashevich Uzbekistan Republic of Uzbekistan , Tashkent city Tashkent chemical technology institute , « Inorganic substances chemical Technology » Department head , professor

Keywords:

thermal machining , magnesium oxide, serpentinite , sulfate acid , physicochemical thills , magnesium sulfate ,

Abstract

In the world today's on the day magnesium salts to take main raw material serpentinite , dolomite , magnesite , talc, spring in the waters magnesium compounds and sea waters is . Serpentinite magnesium oxide and magnesium salts to take for the most cheap raw material is considered . But this raw the things again work technologies raw material resources excess waste energy​​ demand high , again at work to nature damage technology that delivers in management complexity giving birth financial to trouble take arrival  possible . Therefore in our republic magnesium sulfate salt to take for local raw material as Karakalpakstan​ mine serpentinite mineral again work issue modern science and real work​ in the release separately place holds .

Downloads

Download data is not yet available.

References

Patent 2285666 Russian Federation, MPK 01 F 5/06. Method for complex processing of magnesium silicate-rich material / Grigorovich MM, Menkin LI No. 2005122952/15, application date 20.07.2005; publication date 20/10/2006, Bulletin No. 29. 6 p.

Patent RU 2777802 MPK C01F Russia SPOSOB KOMPLEKSNOY PERERABOTKI MAGNIYSODERJashchEGO SYRIA S POLUCHENIEM CHISTOGO OXIDA MAGNIYA S. Ye. Alekseevna, NA Vyacheslavovna, BS Valentinovich Published: 10.08.2022 Byul. No. 22

BB Bekchanov, MS Djandullayeva, AU Erkayev, BT Koshanova / Development of a technology for obtaining magnesium salts by separating serpentinite with sulfuric acid // 2024.

Sebastian Teir, Hannu Revitzer, Sanni Eloneva, Carl-Johan Fogelholm and Ron Zevenhoven. Dissolution of natural serpentinite in mineral and organic acids. https://doi.org/10.1016/j.minpro.2007.04.001

Usenova, G. and Pirimov, T. (2023). An innovative approach to serpentine recycling in Uzbekistan. Green Chemistry and Sustainable Development, 1 (1), 54-63. Retrieved from https://inlibrary.uz/index.php/green-chemistry/article/view/20707 .

Nickel and magnesium sulfate acid reduction burnt from serpentine washing kinetics . Hydrometallurgy Journal . Volume 3, Issue 2, March 1978 , pages 181-196 .

Silica Removal using Aluminum Sulphate and Sodium Aluminate during the Bamboo Cooking Process . September 2015, BioResources 10(4), Authors: Yongjian Hu, Weipeng Zhang, Xiaopeng Yue , Dingjun Zhang.

Chemical interactions of aluminum with aqueous silica at 25 ̊ C. US Government printing office, Washington 1973

Yingli Chen, Xiyun Yang, Linglong Wu, Lirong Tong and Jing Zhu. H 2 SO 4 of Mg serpentine from the solution high pure Mg( OH) 2 and 4MgCO 3 ·Mg(OH) 2 ·4H 2 O until precipitation again recovery . Metallurgy and environment school , Central South University , Changsha 410083, China .

Downloads

Published

2026-02-27

How to Cite

Bekchanov Bekzod Bakhtiyarovich, Juginisov Berdakh Bayrambay old man, Djandullaeva Munavvar Saparbayevna, & Erkayev Aktam Ulashevich. (2026). RESEARCH METHODS FOR OBTAINING MAGNESIUM SALTS BY ACIDIC DISSECTION OF SERPENTINITE ROCK. International Multidisciplinary Journal for Research & Development, 13(02), 778–784. Retrieved from https://ijmrd.in/index.php/imjrd/article/view/5189