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Services: Non-ferrous metallurgy, mining and processing, metal production, raw materials and auxiliary industries

Drying of non-ferrous metal concentrates and related products, copper, Zinc, pyrite, molybdenum, titanium, barite, nickel and other concentrates; industrial salts, bentonite clays, sand and other materials.

003.EN. Broschure. Modern drying for industry produkts.pdf

516. Dewatering of iron ore concentrates and modern drying processesю 2022

Drying-grinding of charge materials. hot gas generators, Upgrading of drying equipment, reduction of fuel costs. Conversion from liquid or gaseous fuels to pulverised coal. Dry gas cleaning system.

001.EN.Broschure.Hot Gas Generators. Coal Dust Firing Units

Sinter production: drying-grinding of charge materials, clays etc., cooling of sinter.

Non-ferrous metallurgy furnaces: PFB furnaces. ISMELT-furnaces. slag-tap furnaces. Modernisation of gas cooling and gas cleaning systems of melting furnaces, converters. utilisation boilers. water-cooled gas ducts, spray pads.

209.RU.Numerical modelling of gas dynamic processes of ISASMET copper smelting furnace and the coupled problem of stress calculations in the cladding (FTT, COTES)

Use of pulverised coal. Improved efficiency. reduced fuel costs.

002.EN.Broschure. Coal dust -Fuel for Industrie 2017.pdf

Shaft furnaces: PCI systems -preparing and blowing coal dust into mine furnaces, Working directly with manufacturers and equipment developers.

Coal dust preparation based on optimization of coal preparation processes - drying of fine coal products Preparation of coal dust on the basis of optimization of coal preparation processes - drying of fine coal preparation products, thermo-aerodynamic separation of lumpy coal with separation of the finished coal dust for blowing into shaft furnaces.

006. EN.Thermo-air-dynamische-Coal-Separation.pdf
Marketable coal quality improvement

Energy in metallurgy: use of heat from smelting furnaces in Disposal TPPs. combustion of low-calorie gases from furnaces in process units, heat generating boilers, generation of electricity in the utilisation TPPs.

Heat recovery boilers: optimising designs. cleaning heating surfaces. improving efficiency.

208. Numerical modelling of outgassing processes in the recovery boiler of the SHVU furnace (FTT, COTES)

Aluminium production: Alumina sintering furnaces. Modelling of processes. Combustion of pulverised coal.

009.EN.Broschure. Coal Dust Firing Units for Cement Production

204.RU.Alumina production.Numerical modelling of sintering processes of nepheline slurry in a rotary kiln. Fuel - FTT. (FTT, AireX, Loesche)

Recycling of slags, process wastes: Zinc and lead slag kilns, Recycling of dusts with a high content of non-ferrous metals.

206. Numerical simulation of a pulverised coal collector with equal distribution over 60 tuyere in a SHVU furnace (FTT, COTES)

207. Numerical modelling of the afterburning zone of an SHWU kiln (FTT, COTES)

Granulated slag: installations for the preparation of slag cement by drying, grinding the slag, mixing with Portland cement.

Preparation of coal dust for power and energy-technological units of metallurgical production, Smelting furnaces, dryers, firing furnaces.

Thermal decontamination of harmful by-products.

001.EN.Broschure.Hot Gas Generators. Coal Dust Firing Units

Increase the durability of the refractory lining, Reducing the formation of scale in furnaces

Secondary metal production: De-oiling/grinding of scale, metallurgical swarf.

Pneumatic conveying, storage, dosing of powders and granular products: between process equipment, pneumatic conveying and dosing of powders and granulates: between process machinery, into storage silos, from discharge hoppers, to dispatch into vehicles, etc.

Transportation of slurries with high concentrations of solids: process slurries, waste, Ash removal, between technological installations, to storage or discharge hoppers, to dumping sites, from dumping sites, from man-made deposits for processing, solids concentration up to 75%, transported particle size in the sludge up to 70% of the pipeline diameter.

Modern non-ferrous furnaces: numerical simulation of processes, Improving reliability and technical and economic performance.

207. Numerical modelling of the afterburning zone of an SHWU kiln (FTT, COTES)

208. Numerical modelling of outgassing processes in the recovery boiler of the SHVU furnace (FTT, COTES)

209.RU.Numerical modelling of gas dynamic processes of ISASMET copper smelting furnace and the coupled problem of stress calculations in the cladding (FTT, COTES)

210.RU-EN. ISMELT Future