About our Company
Full-Cycle Engineering Solutions 
Areas of work
Chemistry
Hydrometallurgy
Mineral Processing
Years in business
25
Tailored solutions
150
Employees
200
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Our History
1998-1999
Launched pioneering research on loparite processing for tantalum, niobium, and REE extraction
2000-2001
Created an in-house design bureau, enabling full development of engineering documentation and custom equipment
2004
Delivered our first major equipment order — an extraction cascade for Nornickel
2008-2009
Patented a breakthrough REE extraction technology from apatite and executed the first industrial project with Acron
2012
Rebranded as Rusredmet and opened our own technological and analytical laboratories
2012-2014
Implemented REE extraction technologies at Acron and PhosAgro; expanded production capacity to 500 units/year. Obtained membership in a self-regulatory organization (SRO) allowed for the production of certified equipment
2016-2020
Created new structural divisions, including the Engineering Department and Mineral-Processing Complex
2020
Shifted to delivering full turnkey solutions — from technology development, engineering, and design to commissioning, including startup activities and designer supervision
2021
Obtained a nuclear license allowing it to design equipment for nuclear installations, nuclear material storage, radioactive substance facilities, and radioactive waste storage
2024-2025
Completed company restructuring, creating new departments including the Research and Development Center. Reorganized production into dedicated metal, polymer, and instrumentation & automation areas
1998-1999
Launched pioneering research on loparite processing for tantalum, niobium, and REE extraction
2000-2001
Created an in-house design bureau, enabling full development of engineering documentation and custom equipment
2004
Delivered our first major equipment order — an extraction cascade for Nornickel
2008-2009
Patented a breakthrough REE extraction technology from apatite and executed the first industrial project with Acron
2012
Rebranded as Rusredmet and opened our own technological and analytical laboratories
2012-2014
Implemented REE extraction technologies at Acron and PhosAgro; expanded production capacity to 500 units/year. Obtained membership in a self-regulatory organization (SRO) allowed for the production of certified equipment
2016-2020
Created new structural divisions, including the Engineering Department and Mineral-Processing Complex
2020
Shifted to delivering full turnkey solutions — from technology development, engineering, and design to commissioning, including startup activities and designer supervision
2021
Obtained a nuclear license allowing it to design equipment for nuclear installations, nuclear material storage, radioactive substance facilities, and radioactive waste storage
2024-2025
Completed company restructuring, creating new departments including the Research and Development Center. Reorganized production into dedicated metal, polymer, and instrumentation & automation areas
Technological Infrastructure
  • Process Lab
  • Analytical Lab
  • Mineral Processing Department
  • Design & Engineering Center
  • Production Complex
The process laboratory is equipped with modern facilities for research across all key areas of hydrometallurgy
Key capabilities
Development of hydrometallurgical technologies for the processing of mineral and industrial raw materials
Process modeling, laboratory-scale and pilot-scale testing of solvent extraction and sorption systems
Regeneration of acids and process reagents
Treatment of off-gases and liquid effluents
Design of processing and waste recovery units for metallurgical and chemical industries, with integration into the Client’s existing process flowsheets
Capabilities Overview (PDF)
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фото для технологической лаборатории
The in‑house analytical laboratory is equipped for a full range of modern instrumental and chemical analysis studies
Ключевые возможности
Quantitative chemical analysis of inorganic materials, metallic and non-metallic ores, and composite materials (ICP-OES, AAS, photometry, titrimetry, potentiometry/ion-selective analysis, gravimetry)
Particle size analysis of ores, concentrates, and beneficiation products
Determination of the composition of organic extractants (refractometry)
Development and validation of analytical methodologies
Capabilities Overview (PDF)
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фото для аналитической лаборатории
Mineral Processing Department
Ключевые возможности
Pilot-Industrial Unit
department for implementing technological solutions
Mineral Processing Laboratory
research center for ore beneficiation
Semi-Industrial Beneficiation Plant
The complex researches and tests the beneficiation of ores and industrial by-products, enabling the development and industrial deployment of innovative processing technologies.
Capabilities Overview (PDF)
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фото для Департамента обогащения
Design & Engineering Center
Ключевые возможности
Опытно-промышленный участок
Департамент внедрения технологических разработок
Обогатительная лаборатория
Центр обогащения минерального сырья
Полупромышленная обогатительная установка
Проведение исследовательских работ на обогатимость различных типов руд и техногенного сырья
Потенциометрия и ионометрия
Текст
Define and agree on project input data (ID) and requirements
Develop and approve key technical solutions (KTS) with the client
Perform full project design (all sections of design and working documentation)
Prepare engineering documentation for custom equipment (drawings, specifications)  
Мы обеспечиваем точный контроль на всех этапах — от анализа руды и промежуточных продуктов до проверки качества высокочистой продукции
Flexible team structure — scalable project teams to meet deadlines and project scope.

The center is fully equipped with all necessary software to execute the work.
Capabilities Overview (PDF)
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Production Complex
Ключевые возможности
Manufacturing of chemical-technological equipment from polymers
Департамент внедрения технологических разработок
Manufacturing of chemical-technological equipment from metals
Центр обогащения минерального сырья
Production of Instrumentation and Control systems (I&C)
The complex is fully equipped with all necessary machinery and devices to handle every stage of production, from processing to manufacturing equipment of varying complexity.

Over 100 units of main equipment, including robotic manipulators, CNC machines, lathes, milling and drilling machines, bending equipment, and plasma metal-cutting systems.
Capabilities Overview (PDF)
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Documents
  • Chevron_Righ_blue
    Patents
  • Chevron_Righ_blue
    Certificates
  • Chevron_Righ_blue
    Licenses
Method of extracting scandium concentrate from scandium-containing acidic solutions
Method of obtaining potassium fluorothanalate from tantalum-containing solutions
Method of extraction of cerium from nitrate solutions containing sum of rare-earth elements
Method of extracting scandium from scandium-containing material
Method of extracting rare-earth elements from phosphogypsum
Method for extracting scandium from scandium-containing material
Registered to RUSAL ITC, developed jointly with specialists from Rusredmet
Method for producing high-purity tantalum oxide from tantalum-containing solutions
Registered to TechnoInvest Alliance, developed jointly with specialists from Rusredmet
Method for extracting rare-earth elements from extractive phosphoric acid during processing of Khibiny apatite concentrates
Registered to Ammofos, developed jointly with specialists from Rusredmet
Method for separating rare-earth elements to obtain individual compounds of lanthanum, cerium, praseodymium, and neodymium
Registered to United Uranium Enterprises, developed jointly with specialists from Rusredmet
Method for concentrating hydrofluoric acid
Registered to TechnoInvest Alliance, developed jointly with specialists from Rusredmet
Method for processing columbite concentrate
Registered to TechnoInvest Alliance, developed jointly with specialists from Rusredmet
Method for obtaining anhydrous hydrofluoric acid from aqueous solutions
Method of producing magnesium sulphate from magnesium-containing raw material
Method for processing synnyrite
Registered to Baikal Nedra Geo, developed jointly with specialists from Rusredmet
Environmental Management System Compliance Certificate
GOST R ISO 14001-2016 (ISO 14001:2015) № ССК.RU.C00355
Energy Management System Compliance Certificate
GOST R ISO 50001-2023 (ISO 50001:2018, IDT) № ССК.RU.К00019
Occupational Health and Safety Management System Compliance Certificate
GOST R ISO 45001-2020 (ISO 45001:2018, IDT) № ССК.RU.R00109
EAEU Certificate (TR CU 010/2011) for pressure vessels for chemical and oil & gas industries
№ ЕАЭС RU C-RU.HA67.B.00720/25
EAEU Certificate (TR CU 010/2011) for mixing-settling extractors
№ ЕАЭС RU C-RU.HA67.B.00719/25
EAEU Certificate (TR CU 010/2011) for filtration equipment
№ ЕАЭС RU C-RU.HA67.B.00718/25
EAEU Certificate (TR CU 010/2011) for adsorption and absorption equipment
№ ЕАЭС RU C-RU.HA67.B.00717/25
EAEU Certificate (TR CU 010/2011) for reactors
№ ЕАЭС RU C-RU.HA67.B.00721/25
Permission to use the conformity mark of the voluntary certification system “Modern Quality Standard”
№ ССК.RU.R00109
Permission to use the conformity mark of the voluntary certification system “Modern Quality Standard”
№ ССК.RU.К00019
Quality Management System Compliance Certificate
GOST R ISO 9001-2015 (ISO 9001:2015) № ССК.RU.А02538
License of Federal Environmental, Industrial and Nuclear Supervision Service for Design of Equipment for Nuclear Installations
No. SE-11-101-5060
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