
Business enterprise R&D expenditure (BERD) in Agriculture, forestry and fishing in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices.
Private research and development expenditure supports innovation in the agriculture sector.Business enterprise R&D expenditure (BERD) in manufacture of basic iron and steel and of ferro-alloys and their basic products in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices.
Private research and development expenditure into metals manufacturing can lead to greater material and carbon efficiency and increased recycling.Business enterprise R&D expenditure (BERD) in manufacture of wood, cork, straw and plaiting products, except furniture in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices
Private research and development expenditure into the manufacture of products from renewable organic materials supports innovation in the bioeconomy.Business enterprise R&D expenditure (BERD) in rental and leasing activities in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices.
Private research and development expenditure into rental and leasing activities can lead to innovations that increase material efficiency.Business enterprise R&D expenditure (BERD) in repair and installation of machinery and equipment in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices.
Private research and development expenditure into repair activities can lead to innovations that increase material efficiency.Business enterprise R&D expenditure (BERD) in sewerage, waste management, remediation activities in Purchasing Power Standard (PPS) per inhabitant at constant 2005 prices.
Private research and development expenditure supports innovation in the waste and recycling sector.Amount of early-stage investment in companies and start-ups operating in the “Agricultural” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of early-stage investment in companies and start-ups operating in the “Bioeconomy” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resources.Amount of early-stage investment in companies and start-ups operating in the “Energy efficiency” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resources.Amount of early-stage investment in companies and start-ups operating in the “Fossil fuel efficiency” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resourcesAmount of early-stage investment in companies and start-ups operating in the “Renewable Energy” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of early-stage investment in companies and start-ups operating in the “Waste & Recycling” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of early-stage investment in companies and start-ups operating in the “Water & Wastewater” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.The indicator measures the share of employment in the Renewable Energy sector. It is expressed as "People employed in RE sector per thousand country's employees".
Employment in a sector mobilises expertise.Money spent on all activities directly aimed at the prevention, reduction and elimination of pollution or nuisances resulting from waste management activities. Excluded are activities that, while beneficial to the environment, primarily satisfy technical needs or health and safety requirements (Eurostat).
Expenditure can create demand for novel waste management solutions.Amount of late-stage investment in companies and start-ups operating in the “Agricultural” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of late-stage investment in companies and start-ups operating in the “Bioeconomy” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resources.Amount of late-stage investment in companies and start-ups operating in the “Energy efficiency” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resources.Amount of late-stage investment in companies and start-ups operating in the “Fossil fuel efficiency” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Investments in relevant companies mobilise financial resourcesAmount of late-stage investment in companies and start-ups operating in the “Renewable Energy” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of late-stage investment in companies and start-ups operating in the “Waste & Recycling” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Amount of late-stage investment in companies and start-ups operating in the “Water & Wastewater” sector, measured as “USD per billion USD of GDP” (adjusted according to purchasing power parity).
Mobilises financial resources.Public R&D spending on the energy sector in relation to GDP per capita in Purchasing Power Standards
This may benefit the generation of energy efficiency knowledge.The indicator measures the share of total Government Budget Appropriations or Outlays on R&D related to the “Energy” sector.
GBAORD data are measuring government support to research and development (R&D) activities, or, in other words, how much priority Governments place on the public funding of R&D. (Eurostat)
This may benefit the generation of bioeconomy knowledge.Public R&D spending on the environment sector in relation to GDP per capita in Purchasing Power Standards
This may benefit the generation of waste and recycling knowledge.The indicator measures the share of total Government Budget Appropriations or Outlays on R&D related to the “Environment” sector. GBAORD data are measuring government support to research and development (R&D) activities, or, in other words, how much priority Governments place on the public funding of R&D.
This may benefit the generation of knowledge on sustainable agriculture and soil sciences.Combustible renewables and waste, measured as a percentage of total energy use, include: solid biomass, liquid biomass, biogas, industrial waste and municipal waste.
Combustible renewables and waste are renewable sources of energy that include any plant matter or waste that is used directly as fuel or converted into fuel, electricity or heat.Electricity production from renewable sources, excluding production from hydropower, as a percentage of total electricity produced. Includes: geothermal, solar, tidal, wind, biomass and biofuels.
Renewable energy production without hydro, largely considered an established technology, can provide insight into people's willingness to adopt clean energy technologies, government's efforts to meeting emission demands, and the maturity of the clean energy market.The ratio between energy supply and GDP measured at purchasing power parity. This is an indication (or measure) of how much energy is used to produce one unit of GDP.
Energy intensity is a measure of how efficiently countries use energy to produce economic output: low energy intensity means high efficiency; high energy intensity means low efficiency.This indicator shows net plastic waste exports in kilogram per capita. A negative number indicates that imports are greater than exports.
Whether a country is a net importer or exporter of plastic waste is an important indicator for understanding the structure of its market for waste plastic.Share of electricity from renewable sources in gross final consumption.
By tracking the share of electricity from renewable sources, one can assess the dynamics of market development and whether it is still a niche or already a more established market.Apparent consumption of Rare Earth Elements (REES) - Other rare earth compounds - expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Rare earth elements have important applications in magnets (important for electric vehicles and wind turbines), batteries, metallurgy, catalysts, polishing powders and glass additives, phosphors and other application such as ceramics, fibre optics and lasers.1
Apparent consumption of Antimony - Metals expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Antimony is used for manufacturing flame retardants, batteries, plastics, glass, semiconductors and alloys.1
Apparent consumption of Antimony - Ores & Concentrates expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Antimony is used for manufacturing flame retardants, batteries, plastics, glass, semiconductors and alloys. 1
Apparent consumption of Antimony - Oxides expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Antimony is used for manufacturing flame retardants, batteries, plastics, glass, semiconductors and alloys.1
Apparent consumption of Chromium - Metals expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Chromium is used in the metallurgical industry, refractories and foundries, pigments, chemicals and also emerging technologies such as seawater desalination. 1
Apparent consumption of Chromium - Ores&Concentrates expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Chromium is used in the metallurgical industry, refractories and foundries, pigments, chemicals and also emerging technologies such as seawater desalination. 1
Apparent consumption of Cobalt - Metals expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Demand for cobalt over the next ten years is expected to increase due to its use in some rechargeable batteries for electric vehicle applications and biotech applications. Cobalt can also be used to make superalloys for applications such as jet engines, turbines, space vehicles or chemical equipment.1
Apparent consumption of Cobalt - Oxides expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Demand for cobalt over the next ten years is expected to increase due to its use in some rechargeable batteries for electric vehicle applications and biotech applications. Cobalt can also be used to make superalloys for applications such as jet engines, turbines, space vehicles or chemical equipment.1
Apparent consumption of Fluorspar expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Fluorspar is used the production of chemicals, steel, aluminium and other applications such as glass and ceramics.1
Apparent consumption of Magnesite & Magnesium expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports, for each country in the ERA.
Magnesite is mainly used for refractory industries such as steel and cement. It also also used for other applications such as for environmental and agricultural uses. Magnesium is mainly used in aluminium alloys and magnesium die-casting. As such it helps to provide lightweight materials and premium corrosion performance.1
Apparent consumption of phosphate rock expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
The largest share of phosphorus is used as basis for nitrogen-phosphorus-potassium fertilisers, globally utilised on food crops.1 Phosphorus (phosphate) “cannot be substituted, [is] necessary to grow all life forms, and [is] mined and depleted.” 2
Lithuania is a major importer of phosphate rock. Morocco owns more than half the world's phosphate reserves and has been called "the Saudi Arabia of phosphate".3 Recently, the Russian-owned Lithuanian fertiliser company Lifosa was the last major European importer to declare that it would stop importing phosphate from Moroccan-occupied Western Sahara.4 This shows how phosphate rock, like other raw materials, can have a geopolitical conflict component.5 It also demonstrates how "apparent consumption" not necessarily expresses final consumption but that it may well only indicate a step in a production chain. In this case phosphate rock enters the consumption statistic and then becomes an ingredient to fertiliser.
Apparent consumption of Rare Earth Elements (REEs) - Cerium compounds expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Rare earth elements have important applications in magnets (important for electric vehicles and wind turbines), batteries, metallurgy, catalysts, polishing powders and glass additives, phosphors and other application such as ceramics, fibre optics and lasers.1
Apparent consumption of Rare Earth Elements (REEs) - Rare earth compounds - expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Rare earth elements have important applications in magnets (important for electric vehicles and wind turbines), batteries, metallurgy, catalysts, polishing powders and glass additives, phosphors and other application such as ceramics, fibre optics and lasers.1
Apparent consumption of Rare Earth Elements (REES) -Ferro-cerium & other pyrophoric alloys - expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Rare earth elements have important applications in magnets (important for electric vehicles and wind turbines), batteries, metallurgy, catalysts, polishing powders and glass additives, phosphors and other application such as ceramics, fibre optics and lasers.1
Apparent consumption of Rare Earth Elements (REEs) - Metals - expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Rare earth elements have important applications in magnets (important for electric vehicles and wind turbines), batteries, metallurgy, catalysts, polishing powders and glass additives, phosphors and other application such as ceramics, fibre optics and lasers.1
Apparent consumption of Tantalum ores expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
In countries where consumption or dependency rises there may be a stronger interest in critical raw materialsApparent consumption of Tungsten - Carbide expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Tungsten (Wolframium) is used for the production of cemented carbides, fabricated products and alloys. Tungsten alloys are used in lighting technology, electrical and electronic technology, high-temperature technology, welding, spark erosion, space travel and aircraft devices, armaments and laser technology.1
Apparent consumption of Tungsten - Metal expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Tungsten (Wolframium) is used for the production of cemented carbides, fabricated products and alloys. Tungsten alloys are used in lighting technology, electrical and electronic technology, high-temperature technology, welding, spark erosion, space travel and aircraft devices, armaments and laser technology.1
Apparent consumption of Tungsten - ores and concentrates expressed in tonnes.
Apparent consumption is calculated as Production + Imports - Exports for each country in the ERA.
Tungsten (Wolframium) is used for the production of cemented carbides, fabricated products and alloys. Tungsten alloys are used in lighting technology, electrical and electronic technology, high-temperature technology, welding, spark erosion, space travel and aircraft devices, armaments and laser technology.1
Amount of Domestic Material Consumption weighted by population "The DMC is defined as the total amount of material directly used in an economy and equals direct material input (DMI) minus exports. DMI measures the direct input of materials for the use in the economy. DMI equals domestic extraction (DE) plus imports".1
Monitoring overall developments in Domestic Material Consumption per capita can inform where and when policy interventions for more efficient use are likely to have the greatest urgency and potential for impact. From there on it makes sense to look at more specific types of Domestic Material Consumption.Volumes of Domestic Material Consumption weighted by population in the sector "Biomass". For more information on Domestic Material Consumption please refer to the indicator "Domestic Material Consumption (DMC)".
High biomass endowments can make bio-based solutions more attractive. At the same time, increased biomass consumption also runs risk of rivalry with other important use forms.Volumes of Domestic Material Consumption weighted by population in the sector "Fossil fuels & energy carriers".
For more information on Domestic Material Consumption please refer to the indicator "Domestic Material Consumption (DMC)".
Monitoring developments in Domestic Material Consumption of fossil fuels and energy can inform where and when policy interventions for more efficient use are likely to have the greatest urgency and potential for impact.Volumes of Domestic Material Consumption weighted by population in the sector "Metal ores (gross ores)". For more information on Domestic Material Consumption please refer to the indicator "Domestic Material Consumption (DMC)".
Monitoring developments in Domestic Material Consumption of metal ores per capita can inform where and when policy interventions for more efficient use are likely to have the greatest urgency and potential for impact.Volumes of Domestic Material Consumption weighted by population in the sector "Non metallic minerals".
For more information on Domestic Material Consumption please refer to the indicator "Domestic Material Consumption (DMC)".
Monitoring developments in Domestic Material Consumption of non-metallic materials per capita can inform where and when policy interventions for more efficient use are likely to have the greatest urgency and potential for impact.Energy dependency shows the extent to which an economy relies upon imports in order to meet its energy needs. The indicator is calculated as net imports divided by the sum of gross inland energy consumption plus bunkers.
Energy efficiency can help to reduce energy dependence.The indicator measures the stringency of environmental policies at a country level. Environmental policy stringency is defined as policy-induced cost of polluting by firms. Higher the score, higher the stringency of environmental policies in that specific country.
The EPS is an index of environmental policy instruments primarily related to climate and air pollution. Amongst other things it covers emission limits, emissions trading and feed-in tariffs. Such policy instruments can create more demand for renewable and cleaner energy in the form of biofuels.Greenhouse gas emissions (expressed in terms of CO2 emission equivalents) per capita.
The right kind of bio-based solutions can help to reduce GHG emissions.Greenhouse gas emissions (expressed in terms of CO2 emission equivalents) per capita related to the "Agriculture" sector
High emissions from the agricultural sector point to the potential contribution of biological solutions to climate change mitigation.Greenhouse gas emissions (expressed in terms of CO2 emission equivalents per capita) attributed to the "Energy" sector.
Concern about GHG emissions can lead to either encouragement and discouragement of investments into fossil fuel efficiency, depending on the time horizon. The development of GHG per capita due to the energy sector can give an indications of where efficiency potentials may be. For a more complete picture it is...Greenhouse gas emissions (expressed in terms of CO2 emission equivalents) per capita related to the "Industrial processes" sector.
Concern about GHG emissions can lead to either encouragement and discouragement of investments into fossil fuel efficiency, depending on the time horizon. The development of GHG per capita due to industrial processes can give an indications of where efficiency potentials may be. For a more complete picture it is important...Greenhouse gas emissions (expressed in terms of CO2 emission equivalents) per capita related to the "Waste" sector.
Monitoring the development of GHG emission per capita due to the waste sector over time and across countries can provide information on where support for greater energy efficiency is most urgent and likely to have the most impact.This indicator is defined as the ratio between energy tax revenues and final energy consumption calculated for a calendar year (Eurostat).
Higher tax rates increase demand for efficiency measures.Amount of Raw Material Consumption (RMC) weighted by population, expressed in Tonnes per capita. RMC expresses the raw material extraction carried out to produce the goods consumed within an economy.
Environmental deterioration can lead to higher awareness and stimulate search processes to avert crisesMeasures waste to landfill in kg per capita.
High waste to landfill ratios point to opportunities in the form of waste reduction and recycling.Percentage of people indicating to the Eurobarometer Survey that environmental concerns are among the two most important issues in their country at the moment.
A higher prioritisation of environmental issues should translate into more support for sustainable water use.Government expenditure on energy efficiency demonstration projects (in Euros).
Demonstration projects allow for experimentation in real-world settings.Government expenditure on energy efficiency demonstration projects (in Euros per capita).
Demonstration projects allow for experimentation in real-world settings.Government expenditure on renewable energy demonstration projects (in Euros).
Demonstration projects allow for experimentation in real-world settings.Government expenditure on renewable energy demonstration projects (in Euros per capita).
Demonstration projects allow for experimentation in real-world settings.Number of patent applications filed to the European patent office (EPO) for inventions within climate adaptation.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within climate adaptation.Number of patent applications filed to the European patent office (EPO) for inventions within climate adaptation.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within climate adaptation.Number of patent applications filed to the European patent office (EPO) for inventions within climate adaptation. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within climate adaptation.Number of patent applications filed to the European patent office (EPO) for inventions within bioeconomy.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within bioeconomy.Number of patent applications filed to the European patent office (EPO) for inventions within bioeconomy. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within bioeconomy.Number of patent applications filed to the European patent office (EPO) for inventions within bioeconomy. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within bioeconomy.Number of patent applications filed to the European patent office (EPO) for inventions within carbon capture and storage technology. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within carbon capture and storage technology.Number of patent applications filed to the European patent office (EPO) for inventions within carbon capture and storage technology. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within carbon capture and storage technology.Number of patent applications filed to the European patent office (EPO) for inventions within carbon capture and storage technology.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within carbon capture and storage technology.Number of patent applications filed to the European patent office (EPO) for inventions within energy efficiency.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within energy efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within energy efficiency. The indicator is expressed in terms of “Number of patent applications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within energy efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within energy efficiency. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within energy efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within fossil energy efficiency.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within fossil fuel efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within fossil energy efficiency. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within fossil fuel efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within fossil energy efficiency. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within fossil fuel efficiency.Number of patent applications filed to the European patent office (EPO) for inventions within renewable energy.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within renewable energy.Number of patent applications filed to the European patent office (EPO) for inventions within renewable energy. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within renewable energy.Number of patent applications filed to the European patent office (EPO) for inventions within renewable energy. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within renewable energy.Number of patent applications filed to the European patent office (EPO) for inventions within waste management.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within waste management.Number of patent applications filed to the European patent office (EPO) for inventions within waste management. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within waste management.Number of patent applications filed to the European patent office (EPO) for inventions within waste management. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within waste management.Number of patent applications filed to the European patent office (EPO) for inventions within wastewater related technologies.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within wastewater related technologies. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within wastewater related technologies. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within water related technologies (except wastewater).
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within water related technologies (except wastewater). The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within water related technologies (except wastewater). The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within water and wastewater.Number of patent applications filed to the European patent office (EPO) for inventions within agriculture and soil sciences.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within agriculture and soil sciences.Number of patent applications filed to the European patent office (EPO) for inventions within agriculture and soil sciences. The indicator is expressed in terms of “Number of patents per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within agriculture and soil sciences.Number of patent applications filed to the European patent office (EPO) for inventions within agriculture and soil sciences. The indicator is expressed in terms of “Number of patent applications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Patents can help protect and realize innovations within agriculture and soil sciences.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Bioeconomy-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Climate Adaptation-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Critical materilas-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Energy Efficiency-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications published in the top20 journals within the "Environmental Governance" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Fossil fuel efficiency-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Material efficiency-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Renewable Energy-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications published in the top20 journals within the "soil sciences" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Waste&Recycling-related" keywords in Title, Abstract, or List of keywords.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications published in the top20 journals within the "Water & Wastewater" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Bioeconomy-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Climate Adaptation-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Critical materials-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activityThe indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Energy Efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per thousand researchers published in the top20 journals within the "Environmental Governance" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activityThe indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Fossil fuel efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activityThe indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Material efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activityThe indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Renewable Energy-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per thousand researchers published in the top20 journals within the "soil sciences" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Waste&Recycling-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per thousand researchers”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per thousand researchers published in the top20 journals within the "Water & Wastewater" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Bioeconomy-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Climate Adaptation-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Critical materials-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Energy Efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per one million inhabitants published in the top20 journals within the "Environmental Governance" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Fossil fuel efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Material efficiency-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Renewable Energy-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per one million inhabitants published in the top20 journals within the "soil sciences" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.The indicator shows the number of scientific publications (peer-reviewed articles) published in academic journals containing at least one of the "Waste&Recycling-related" keywords in Title, Abstract, or List of keywords. The indicator is expressed in terms of “Number of publications per one million inhabitants”.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.Number of publications per one million inhabitants published in the top20 journals within the "Water & Wastewater" research area.
Be aware that due to delayed data entries in the original database the values for the last couple of years might be underestimated and could possibly increase over the next years. Have this in mind when working with data from recent years.
Publications serve as proxy for research and knowledge diffusion activity.