GREENTIE

The Russian Greenhouse Gas Technology Information Exchange

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CLASSIFICATIONS

Wide GREENTIE technology classification
IPCC-based technologies in Russia
Russian additional technology classification

We bring to your notice three classification schemes:

  • the wide technology classification for GREENTIE which is a part of the EETIC Wide technology scheme,
  • the scheme which is a part of the GREENTIE IPCC-based technology list and which is useful for identifying suppliers of technologies, products and services, kept by the Russian GLO handy,
  • the scheme for technologies, having an impact on mitigation of greenhouse gas emissions, specified by the Russian GLO and kept by it handy too.

WIDE GREENTIE TECHNOLOGY CLASSIFICATION

  • Advanced technologies
  • Agriculture
  • Air monitoring
  • Bioenergy
  • Buildings
  • Coal combustion
  • Coal mining technology
  • Combined cycle
  • Combined heat & power
  • Combined renewable energy technologies
  • Electrical
  • Electrical transmission & storage
  • Energy distribution
  • Energy management
  • Engines & transmissions
  • Forestry & energy crops
  • Fuel cells
  • Gas cleaning systems
  • Geothermal energy
  • Heat recovery & storage
  • High temperature technologies
  • Hydroelectricity
  • Hydrogen
  • Industrial technologies
  • Industrial waste
  • Landfill gas
  • Lighting
  • Municipal waste
  • Nuclear technology
  • Ocean energy
  • Oil & natural gas technology
  • Solar energy (heat)
  • Solar power
  • Transport
  • Wind
  • Other technologies

You can read about these technologies and find relevant world suppliers of technologies, products and services as well as demonstrated technologies at www.greentie.org/classifications/index.php.

IPCC-BASED TECHNOLOGIES IN RUSSIA

Energy Supply - Fossil Fuel Technologies

Atmospheric Fluidised Bed Combustion
Coal Benefication
Coal-Water Mixtures
Combined Cycle
Combustion Turbines
Diesel Cogeneration
Fuel Cells
Industrial Cogeneration
Gas/Oil-Fired Steam Units
Integrated Gasification Combined Cycle
Intercooled Steam Injected Gas Turbine
Pressurised Fluidised Bed Combustion
Pulverised Coal-Fired Power Plant
Slagging Combustors
Oil & Natural Gas Technologies
Coal Mining Technologies

Energy Supply - Renewable Energy Technologies

Biomass-Fired Power Generation
Flat-Plate Photovoltaics
Geothermal Electric
Municipal Solid Waste Mass Bum
Small-Scale Hydro
Solar Thermal Electric Technologies
Wind Energy Conversion Systems
Tidal Energy
Ocean Wave Energy
Landfills: Gas Recovery and Utilisation
Techniques

Energy Supply - Nuclear Technologies

Light Water Reactors
Heavy Water Reactors
Liquid Metal Reactors
Gas Cooled Reactors

Energy Supply - Energy Transfer Technologies

Efficient Electrical Transformers
Electric Transmission and Distribution Systems
Thermal Energy Storage Systems
High-Voltage Direct-Current Transmission

Energy End-Use - Transportation Technologies

Direct-Injection Diesel Engines
Efficient Jet Aircraft
Efficient Tyres

Energy End-Use - Buildings Technologies

Adjustable Speed Electronic Motor Drives
Advanced Insulation: Gas-Filled Panels
Compact Flourescent Lights
Electronic Ballasts
Efficient Electric Motors
Efficient Refrigerators
Energy Management Systems
Glazing Technologies
Heat Pump Water Heaters
High-Albedo Materials
Landscaping
Lighting Controls
Room Air Conditioners (Window-Type)
Solar Domestic Water Heaters
Efficient Cooking Stoves

Energy End-Use - Industrial Technologies

Anaerobic Biological Treatment of Liquid Waste
Biofiltration of Gases
Cement Particle High-Efficiency Air Classifiers
Ceramic Recuperators
Continuous Pulp Digesters
Continuous Steel Casters
Distillation Control Systems
Electric Motors Variable Speed Drives-Industrial
Gas Membrane Separators
Heat Exchanger Enhancement Techniques
High-Efficiency Welding Power Supply
Mechanical Dewatering
Metal Parts Cleaning
Pipe Cross Reactors
Plating Waste Concentrators
Pulse Combustion Boilers
Textile Dyeing Vacuum Systems

Agricultural and Forestry Practices

Reduction in Use of Nitrogen
Fertiliser and Animal Manure
Reduction in Tillage and Agricultural Soils
Reforestation/Afforestation and Prevention of Deforestation
Increasing Efficiency/Intensity of Forest Management
Increasing Agroforestry Endeavours
Livestock Technologies

Other Waste Techniques

Landfills: Reducing Landfilling of Waste
Waste Water Treatment


For more information: blinov@minstp.ru, irina@prominfo.ru.

RUSSIAN ADDITIONAL TECHNOLOGY CLASSIFICATION

Energy Supply - Fossil Fuel Technologies
  • Steam-and-gas mixtures, cycles and plants
  • Oil & natural gas technologies
    • Crude production by heat treating
    • Natural gas purification from liquids and mechanical impurities
    • Condensate gas production
    • Geophysical control for well testing
    • Fuel and hydrocarbon raw cleaning from sulphur
  • Oil-chemical high pressure equipment
  • Slate benefication
  • Coal-water mixtures
    • Alcohol coal-water mixtures
  • Well treatment
Energy Supply - Renewable Energy Technologies
  • Non-alkaline hydrogen-and-oxigen flame generators
  • Evaporation plants for second steam production
  • Solid domestic and industrial waste burning by combustion with vibroacoustic phenomena use
  • Solar silicon photovoltaic elements and batteries
Energy Supply - Nuclear Technologies
  • Transportable nuclear reactors for electric power and heat supply
  • Cosmic nuclear power plants
  • Technologies for thermal nuclear station unit conservation over stop period with octadecylamin use
  • Water-and-chemical regime with octadecylamin dosage
  • Nuclear fuel cycle radiochemical technologies
  • Low-waste deactivation of electric nuclear station equipment
Energy End-Use - Transportation Technologies
  • Purification of lubrication and cooling liquids
  • Transport wash processes with water cleaning
Energy End-Use - Buildings Technologies
  • Heat-and-water supply automatic control
  • Autonomous heat-and-water supply by roof boilers
  • Cremation burning technologies
  • Greenhouse exploitation technologies
  • Ventilation emissions microbiological cleaning from volatile organic compositions
Energy End-Use - Industrial Technologies
  • Cement production technologies
    • Multicomponent cements
    • Raw wet crush technologies for self-crushing mills
    • Clinker burn resource saving multi-in-line technologies
  • Nonferrous metallurgy technologies
  • Welding, welding materials and equipment
    • Welding materials
    • Carbon dioxide welding
    • Explosion welding
  • Energy-and-resource saving technologies for lubrication/protection means production
  • Industrial waste utilisation with fatting leather materials production
  • Spent lubrication utilisation for oil and soap water extracts production
Agricultural and Forestry Practices
  • Forestry technologies in radioactivity conditions
  • Construction materials from wood wastes
  • Bird dung to energy
Agricultural and Forestry Practices
  • Technogenic combustive waste utilisation
  • Waste harmless rendering by heat treating
  • Ammunition utilisation
  • Petroleum/oil-bearing waste utilisation
  • Utilisation and burial of radioactive wastes
  • Toxic/especially hazardous waste vacuum-arc utilisation
  • Toxic waste treatment with extracting costly components
Not Previously Mentioned
  • Mineral ore heat treating
  • Hydrocarbon raw utilisation for by-products
    • Hydrocarbon gas treatment
    • Production and benefication of coal wastes (germanium, gallium and others)
    • Natural low-boiling mercaptans extraction from high-sulphureous hydrocarbon raw
    • Design and composite materials on the base of carbon, fabric and non-woven carbon materials, carbon-carbon compositions
    • Carbon isotope laser fission installations
    • Catching filters for hydrocarbon combinations (phenol, sterol, formaldehyde and others)
    • Nitrogenisation technologies
    • Equipment for slag fuming by natural gas
  • Universal burners and burn equipment
  • Biogenic absorption of greenhouse gases
  • Wave (vibration) technologies
For more information: irina@prominfo.ru.

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