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Environment Stats: compare key data on Japan & Yemen

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Definitions

  • Adjusted net national income > Constant 2000 US$: Adjusted net national income (constant 2000 US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion.
  • Biodiversity > Bird species, threatened: Bird species, threatened. Birds are listed for countries included within their breeding or wintering ranges. Threatened species are the number of species classified by the IUCN as endangered, vulnerable, rare, indeterminate, out of danger, or insufficiently known.
  • Biodiversity > Mammal species, threatened: Mammal species, threatened. Mammal species are mammals excluding whales and porpoises. Threatened species are the number of species classified by the IUCN as endangered, vulnerable, rare, indeterminate, out of danger, or insufficiently known.
  • CO2 Emissions per 1000: CO2: Total Emissions (excluding land-use) Units: thousand metric tonnes of carbon dioxide. Figures expressed per thousand population for the same year.
  • CO2 emissions > Kt: Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring.
  • CO2 emissions > Kt per 1000: Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring. Figures expressed per thousand population for the same year.
  • Climate change > CO2 emissions > Metric tons per capita: CO2 emissions (metric tons per capita). Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring.
  • Climate change > CO2 emissions from electricity and heat production, total > Million metric tons: CO2 emissions from electricity and heat production, total (million metric tons). CO2 emissions from electricity and heat production is the sum of three IEA categories of CO2 emissions: (1) Main Activity Producer Electricity and Heat which contains the sum of emissions from main activity producer electricity generation, combined heat and power generation and heat plants. Main activity producers (formerly known as public utilities) are defined as those undertakings whose primary activity is to supply the public. They may be publicly or privately owned. This corresponds to IPCC Source/Sink Category 1 A 1 a. For the CO2 emissions from fuel combustion (summary) file, emissions from own on-site use of fuel in power plants (EPOWERPLT) are also included. (2) Unallocated Autoproducers which contains the emissions from the generation of electricity and/or heat by autoproducers. Autoproducers are defined as undertakings that generate electricity and/or heat, wholly or partly for their own use as an activity which supports their primary activity. They may be privately or publicly owned. In the 1996 IPCC Guidelines, these emissions would normally be distributed between industry, transport and "other" sectors. (3) Other Energy Industries contains emissions from fuel combusted in petroleum refineries, for the manufacture of solid fuels, coal mining, oil and gas extraction and other energy-producing industries. This corresponds to the IPCC Source/Sink Categories 1 A 1 b and 1 A 1 c. According to the 1996 IPCC Guidelines, emissions from coke inputs to blast furnaces can either be counted here or in the Industrial Processes source/sink category. Within detailed sectoral calculations, certain non-energy processes can be distinguished. In the reduction of iron in a blast furnace through the combustion of coke, the primary purpose of the coke oxidation is to produce pig iron and the emissions can be considered as an industrial process. Care must be taken not to double count these emissions in both Energy and Industrial Processes. In the IEA estimations, these emissions have been included in this category.
  • Climate change > CO2 emissions from electricity and heat production, total > Million metric tons per million: CO2 emissions from electricity and heat production, total (million metric tons). CO2 emissions from electricity and heat production is the sum of three IEA categories of CO2 emissions: (1) Main Activity Producer Electricity and Heat which contains the sum of emissions from main activity producer electricity generation, combined heat and power generation and heat plants. Main activity producers (formerly known as public utilities) are defined as those undertakings whose primary activity is to supply the public. They may be publicly or privately owned. This corresponds to IPCC Source/Sink Category 1 A 1 a. For the CO2 emissions from fuel combustion (summary) file, emissions from own on-site use of fuel in power plants (EPOWERPLT) are also included. (2) Unallocated Autoproducers which contains the emissions from the generation of electricity and/or heat by autoproducers. Autoproducers are defined as undertakings that generate electricity and/or heat, wholly or partly for their own use as an activity which supports their primary activity. They may be privately or publicly owned. In the 1996 IPCC Guidelines, these emissions would normally be distributed between industry, transport and "other" sectors. (3) Other Energy Industries contains emissions from fuel combusted in petroleum refineries, for the manufacture of solid fuels, coal mining, oil and gas extraction and other energy-producing industries. This corresponds to the IPCC Source/Sink Categories 1 A 1 b and 1 A 1 c. According to the 1996 IPCC Guidelines, emissions from coke inputs to blast furnaces can either be counted here or in the Industrial Processes source/sink category. Within detailed sectoral calculations, certain non-energy processes can be distinguished. In the reduction of iron in a blast furnace through the combustion of coke, the primary purpose of the coke oxidation is to produce pig iron and the emissions can be considered as an industrial process. Care must be taken not to double count these emissions in both Energy and Industrial Processes. In the IEA estimations, these emissions have been included in this category. Figures expressed per million population for the same year.
  • Current issues: This entry lists the most pressing and important environmental problems. The following terms and abbreviations are used throughout the entry:
  • Forest area > Sq. km > Per capita: Forest area is land under natural or planted stands of trees, whether productive or not. Per capita figures expressed per 1,000 population.
  • Proportion of land area under protection: Terrestrial areas protected to total surface area, percentage.
  • Waste > Local garbage collected: Municipal waste collected.
  • Water > Drinking water > Population with improved drinking water sources > Urban and rural: Proportion of the population using improved drinking water sources, total.
  • Adjusted net national income > Constant 2000 US$ per capita: Adjusted net national income (constant 2000 US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion. Figures expressed per capita for the same year.
  • Total renewable water resources per million: . Figures expressed per million population for the same year.
  • Waste > Hazardous waste created: Annual generation of hazardous waste (as defined by the Basel Convention).
  • Waste > Local garbage collected per thousand people: Municipal waste collected. Figures expressed per thousand people for the same year.
  • Biodiversity > Fish species, threatened: Fish species, threatened. Fish species are based on Froese, R. and Pauly, D. (eds). 2008. Threatened species are the number of species classified by the IUCN as endangered, vulnerable, rare, indeterminate, out of danger, or insufficiently known.
  • Climate change > CO2 emissions > Kt: CO2 emissions (kt). Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring.
  • CO2 emissions > Kt > Per capita: Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring. Per capita figures expressed per 1,000 population.
  • Pollution > Organic water pollutant > BOD emissions > Kg per day: Organic water pollutant (BOD) emissions (kg per day). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Water > Percent of water resources used: Proportion of total water resources used, percentage.
  • Pollution > Ozone depleting substance consumption: Consumption of all Ozone-Depleting Substances in ODP metric tons.
  • Climate change > CO2 emissions > Kt per 1000: CO2 emissions (kt). Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring. Figures expressed per thousand population for the same year.
  • Forest area > Sq. km: Forest area is land under natural or planted stands of trees, whether productive or not.
  • Climate change > CO2 emissions > Kg per 2000 US$ of GDP: CO2 emissions (kg per 2000 US$ of GDP). Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring.
  • Sanitation > Population with improved sanitation > Urban and rural: Proportion of the population using improved sanitation facilities, total.
  • Pollution > Ozone depleting substance consumption per million people: Consumption of all Ozone-Depleting Substances in ODP metric tons. Figures expressed per million people for the same year.
  • Water > Drinking water > Population with improved drinking water sources > Rural: Proportion of the population using improved drinking water sources, rural.
  • Biodiversity > Plant species > Higher, threatened: Plant species (higher), threatened. Higher plants are native vascular plant species. Threatened species are the number of species classified by the IUCN as endangered, vulnerable, rare, indeterminate, out of danger, or insufficiently known.
  • Adjusted net national income > Current US$ per capita: Adjusted net national income (current US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion. Figures expressed per capita for the same year.
  • Waste > Population served by local garbage collection: Total population served by municipal waste collection.
  • Adjusted net national income > Current US$: Adjusted net national income (current US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion.
  • Waste > Hazardous waste created per thousand people: Annual generation of hazardous waste (as defined by the Basel Convention). Figures expressed per thousand people for the same year.
  • Protected area: Environmentally protected area (1997)
  • Biodiversity > GEF benefits index for biodiversity > 0 = no biodiversity potential to 100 = maximum: GEF benefits index for biodiversity (0 = no biodiversity potential to 100 = maximum). GEF benefits index for biodiversity is a composite index of relative biodiversity potential for each country based on the species represented in each country, their threat status, and the diversity of habitat types in each country. The index has been normalized so that values run from 0 (no biodiversity potential) to 100 (maximum biodiversity potential).
  • Water > Net freshwater supplied by water supply industry per capita: Water supplied annually, where losses during transportation have been subtracted. Figures expressed per capita for the same year.
  • Pollution > PM10, country level > Micrograms per cubic meter: PM10, country level (micrograms per cubic meter). Particulate matter concentrations refer to fine suspended particulates less than 10 microns in diameter (PM10) that are capable of penetrating deep into the respiratory tract and causing significant health damage. Data for countries and aggregates for regions and income groups are urban-population weighted PM10 levels in residential areas of cities with more than 100,000 residents. The estimates represent the average annual exposure level of the average urban resident to outdoor particulate matter. The state of a country's technology and pollution controls is an important determinant of particulate matter concentrations.
  • CO2 emissions > Kg per 2000 PPP $ of GDP: Carbon dioxide emissions are those stemming from the burning of fossil fuels and the manufacture of cement. They include carbon dioxide produced during consumption of solid, liquid, and gas fuels and gas flaring.
  • Proportion of land and marine area under protection: Terrestrial and marine areas protected to total territorial area, percentage.
  • Climate change > CO2 emissions from other sectors, excluding residential buildings and commercial and public services > Million metric tons: CO2 emissions from other sectors, excluding residential buildings and commercial and public services (million metric tons). CO2 emissions from other sectors, less residential buildings and commercial and public services, contains the emissions from commercial/institutional activities, residential, agriculture/forestry, fishing and other emissions not specified elsewhere that are included in the IPCC Source/Sink Categories 1 A 4 and 1 A 5. In the 1996 IPCC Guidelines, the category also includes emissions from autoproducers in the commercial/residential/agricultural sectors that generate electricity and/or heat. The IEA data are not collected in a way that allows the energy consumption to be split by specific end-use and therefore, autoproducers are shown as a separate item (Unallocated Autoproducers).
  • Biodiversity > GEF benefits index for biodiversity > 0 = no biodiversity potential to 100 = maximum per million: GEF benefits index for biodiversity (0 = no biodiversity potential to 100 = maximum). GEF benefits index for biodiversity is a composite index of relative biodiversity potential for each country based on the species represented in each country, their threat status, and the diversity of habitat types in each country. The index has been normalized so that values run from 0 (no biodiversity potential) to 100 (maximum biodiversity potential). Figures expressed per million population for the same year.
  • Water > Population connected to wastewater treatment: Population connected to wastewater treatment.
  • Water > Drinking water > Population with improved drinking water sources > Urban: Proportion of the population using improved drinking water sources, urban.
  • Sanitation > Population with improved sanitation > Rural: Proportion of the population using improved sanitation facilities, rural.
  • Forest area > Sq. km per 1000: Forest area is land under natural or planted stands of trees, whether productive or not. Figures expressed per thousand population for the same year.
  • Threatened species > Mammal: Number of threatened mammal species (1997)
  • Water > Population supplied by water supply industry: Total population supplied by water supply industry.
  • Water > Net freshwater supplied by water supply industry to households per capita: Water supplied annually to households, where losses during transportation have been subtracted. Figures expressed per capita for the same year.
  • World Heritage Sites (environmental): Natural sites.

    No date was available from the Wikipedia article, so we used the date of retrieval.

  • Known mammal species: Known mammal species (1992-2002).
  • Climate change > CO2 emissions from residential buildings and commercial and public services > Million metric tons: CO2 emissions from residential buildings and commercial and public services (million metric tons). CO2 emissions from residential buildings and commercial and public services contains all emissions from fuel combustion in households. This corresponds to IPCC Source/Sink Category 1 A 4 b. Commercial and public services includes emissions from all activities of ISIC Divisions 41, 50-52, 55, 63-67, 70-75, 80, 85, 90-93 and 99.
  • Pollution > Organic water pollutant > BOD emissions > Kg per day per worker: Organic water pollutant (BOD) emissions (kg per day per worker). Emissions per worker are total emissions of organic water pollutants divided by the number of industrial workers. Organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Pollution > Carbon dioxide 1999: 1999 total CO2 emissions from fossil-fuel burning, cement production, and gas flaring. Emissions are expressed in thousand metric tons of carbon (not CO2).
  • Climate change > CO2 emissions from gaseous fuel consumption > Kt per 1000: CO2 emissions from gaseous fuel consumption (kt). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of natural gas as an energy source. Figures expressed per thousand population for the same year.
  • Climate change > CO2 emissions from solid fuel consumption > Kt per 1000: CO2 emissions from solid fuel consumption (kt). Carbon dioxide emissions from solid fuel consumption refer mainly to emissions from use of coal as an energy source. Figures expressed per thousand population for the same year.
  • Climate change > CO2 emissions from liquid fuel consumption > Kt per 1000: CO2 emissions from liquid fuel consumption (kt). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of petroleum-derived fuels as an energy source. Figures expressed per thousand population for the same year.
  • Climate change > CO2 emissions from gaseous fuel consumption > Kt: CO2 emissions from gaseous fuel consumption (kt). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of natural gas as an energy source.
  • Climate change > CO2 emissions from solid fuel consumption > Kt: CO2 emissions from solid fuel consumption (kt). Carbon dioxide emissions from solid fuel consumption refer mainly to emissions from use of coal as an energy source.
  • Climate change > Other greenhouse gas emissions, HFC, PFC and SF6 > Thousand metric tons of CO2 equivalent per million: Other greenhouse gas emissions, HFC, PFC and SF6 (thousand metric tons of CO2 equivalent). Other greenhouse gas emissions are by-product emissions of hydrofluorocarbons, perfluorocarbons, and sulfur hexafluoride. Figures expressed per million population for the same year.
  • Sanitation > Population with improved sanitation > Urban: Proportion of the population using improved sanitation facilities, urban.
  • Water > Population connected to wastewater collecting system: Population connected to wastewater collecting system.
  • Water > Proportion of marine area under protection: Marine areas protected to territorial waters, percentage.
  • Pollution > Carbon dioxide 1999 per 1000: 1999 total CO2 emissions from fossil-fuel burning, cement production, and gas flaring. Emissions are expressed in thousand metric tons of carbon (not CO2). Figures expressed per thousand population for the same year.
  • Freshwater > Withdrawal per million: . Figures expressed per million population for the same year.
  • Known mammal species per million: Known mammal species (1992-2002). Figures expressed per million population for the same year.
  • Areas under protection per million: Protected Areas under IUCN management categories I - VI (1992-2003). Figures expressed per million population for the same year.
  • Areas under protection: Protected Areas under IUCN management categories I - VI (1992-2003)
  • Water > Net freshwater supplied by water supply industry to households: Water supplied annually to households, where losses during transportation have been subtracted.
  • Water > Drinking water > Population with improved sanitation > Rural: Proportion of the population using improved sanitation facilities, rural.
  • Pollution > Greenhouse gas emissions > United Nations Framework Convention on Climate Change sign date: Signature.
  • Climate change > CO2 emissions from residential buildings and commercial and public services > Million metric tons per million: CO2 emissions from residential buildings and commercial and public services (million metric tons). CO2 emissions from residential buildings and commercial and public services contains all emissions from fuel combustion in households. This corresponds to IPCC Source/Sink Category 1 A 4 b. Commercial and public services includes emissions from all activities of ISIC Divisions 41, 50-52, 55, 63-67, 70-75, 80, 85, 90-93 and 99. Figures expressed per million population for the same year.
  • Known breeding bird species per million: Known breeding bird mammal species (1992-2002). Figures expressed per million population for the same year.
  • Water pollution > Food industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: food and beverages (31). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Total natural resources rents > % of GDP: Total natural resources rents (% of GDP). Total natural resources rents are the sum of oil rents, natural gas rents, coal rents (hard and soft), mineral rents, and forest rents.
  • Organic water pollutant > BOD emissions > Kg per day per worker: Emissions per worker are total emissions of organic water pollutants divided by the number of industrial workers. Organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > GHG net emissions/removals by LUCF > Mt of CO2 equivalent per million: GHG net emissions/removals by LUCF (Mt of CO2 equivalent). GHG net emissions/removals by LUCF refers to changes in atmospheric levels of all greenhouse gases attributable to forest and land-use change activities, including but not limited to (1) emissions and removals of CO2 from decreases or increases in biomass stocks due to forest management, logging, fuelwood collection, etc.; (2) conversion of existing forests and natural grasslands to other land uses; (3) removal of CO2 from the abandonment of formerly managed lands (e.g. croplands and pastures); and (4) emissions and removals of CO2 in soil associated with land-use change and management. For Annex-I countries under the UNFCCC, these data are drawn from the annual GHG inventories submitted to the UNFCCC by each country; for non-Annex-I countries, data are drawn from the most recently submitted National Communication where available. Because of differences in reporting years and methodologies, these data are not generally considered comparable across countries. Data are in million metric tons. Figures expressed per million population for the same year.
  • Natural gas rents > % of GDP: Natural gas rents (% of GDP). Natural gas rents are the difference between the value of natural gas production at world prices and total costs of production.
  • Pollution > Water pollution, chemical industry > % of total BOD emissions: Water pollution, chemical industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: chemicals (35). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > CO2 emissions from electricity and heat production, total > % of total fuel combustion: CO2 emissions from electricity and heat production, total (% of total fuel combustion). CO2 emissions from electricity and heat production is the sum of three IEA categories of CO2 emissions: (1) Main Activity Producer Electricity and Heat which contains the sum of emissions from main activity producer electricity generation, combined heat and power generation and heat plants. Main activity producers (formerly known as public utilities) are defined as those undertakings whose primary activity is to supply the public. They may be publicly or privately owned. This corresponds to IPCC Source/Sink Category 1 A 1 a. For the CO2 emissions from fuel combustion (summary) file, emissions from own on-site use of fuel in power plants (EPOWERPLT) are also included. (2) Unallocated Autoproducers which contains the emissions from the generation of electricity and/or heat by autoproducers. Autoproducers are defined as undertakings that generate electricity and/or heat, wholly or partly for their own use as an activity which supports their primary activity. They may be privately or publicly owned. In the 1996 IPCC Guidelines, these emissions would normally be distributed between industry, transport and "other" sectors. (3) Other Energy Industries contains emissions from fuel combusted in petroleum refineries, for the manufacture of solid fuels, coal mining, oil and gas extraction and other energy-producing industries. This corresponds to the IPCC Source/Sink Categories 1 A 1 b and 1 A 1 c. According to the 1996 IPCC Guidelines, emissions from coke inputs to blast furnaces can either be counted here or in the Industrial Processes source/sink category. Within detailed sectoral calculations, certain non-energy processes can be distinguished. In the reduction of iron in a blast furnace through the combustion of coke, the primary purpose of the coke oxidation is to produce pig iron and the emissions can be considered as an industrial process. Care must be taken not to double count these emissions in both Energy and Industrial Processes. In the IEA estimations, these emissions have been included in this category.
  • Forest area > % of land area: Forest area is land under natural or planted stands of trees, whether productive or not.
  • Water pollution > Textile industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: textiles (32). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Adjusted savings > Carbon dioxide damage > % of GNI: Carbon dioxide damage is estimated to be $20 per ton of carbon (the unit damage in 1995 U.S. dollars) times the number of tons of carbon emitted.
  • Marine protected areas > % of territorial waters: Marine protected areas (% of territorial waters). Marine protected areas are areas of intertidal or subtidal terrain--and overlying water and associated flora and fauna and historical and cultural features--that have been reserved by law or other effective means to protect part or all of the enclosed environment.
  • Water pollution > Paper and pulp industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: paper and pulp (34). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Adjusted savings > Particulate emission damage > % of GNI: Particulate emissions damage is calculated as the willingness to pay to avoid mortality attributable to particulate emissions.
  • Known breeding bird species: Known breeding bird mammal species (1992-2002).
  • Adjusted net national income > Current US$, % of GDP: Adjusted net national income (current US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion. Figures expressed as a proportion of GDP for the same year
  • Adjusted net national income > Constant 2000 US$, % of GDP: Adjusted net national income (constant 2000 US$). Adjusted net national income is GNI minus consumption of fixed capital and natural resources depletion. Figures expressed as a proportion of GDP for the same year
  • Water pollution > Clay and glass industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: stone, ceramics, and glass (36). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Oil rents > % of GDP: Oil rents (% of GDP). Oil rents are the difference between the value of crude oil production at world prices and total costs of production.
  • Pollution > Water pollution, clay and glass industry > % of total BOD emissions: Water pollution, clay and glass industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: stone, ceramics, and glass (36). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > CO2 emissions from liquid fuel consumption > % of total: CO2 emissions from liquid fuel consumption (% of total). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of petroleum-derived fuels as an energy source.
  • Climate change > CO2 emissions from gaseous fuel consumption > % of total: CO2 emissions from gaseous fuel consumption (% of total). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of natural gas as an energy source.
  • Pollution > Water pollution, textile industry > % of total BOD emissions: Water pollution, textile industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: textiles (32). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > CO2 emissions from solid fuel consumption > % of total: CO2 emissions from solid fuel consumption (% of total). Carbon dioxide emissions from solid fuel consumption refer mainly to emissions from use of coal as an energy source.
  • Climate change > Other greenhouse gas emissions, HFC, PFC and SF6 > Thousand metric tons of CO2 equivalent: Other greenhouse gas emissions, HFC, PFC and SF6 (thousand metric tons of CO2 equivalent). Other greenhouse gas emissions are by-product emissions of hydrofluorocarbons, perfluorocarbons, and sulfur hexafluoride.
  • Water > Net freshwater supplied by water supply industry: Water supplied annually, where losses during transportation have been subtracted.
  • CO2 Emissions: CO2: Total Emissions (excluding land-use) Units: thousand metric tonnes of carbon dioxide
  • Water pollution > Metal industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: primary metals (ISIC division 37). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Pollution > Water pollution, wood industry > % of total BOD emissions: Water pollution, wood industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: wood (33). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > CO2 emissions from liquid fuel consumption > Kt: CO2 emissions from liquid fuel consumption (kt). Carbon dioxide emissions from liquid fuel consumption refer mainly to emissions from use of petroleum-derived fuels as an energy source.
  • Climate change > CO2 emissions from residential buildings and commercial and public services > % of total fuel combustion: CO2 emissions from residential buildings and commercial and public services (% of total fuel combustion). CO2 emissions from residential buildings and commercial and public services contains all emissions from fuel combustion in households. This corresponds to IPCC Source/Sink Category 1 A 4 b. Commercial and public services includes emissions from all activities of ISIC Divisions 41, 50-52, 55, 63-67, 70-75, 80, 85, 90-93 and 99.
  • PM10 > Country level > Micrograms per cubic meter: Particulate matter concentrations refer to fine suspended particulates less than 10 microns in diameter (PM10) that are capable of penetrating deep into the respiratory tract and causing significant health damage. Data for countries and aggregates for regions and income groups are urban-population weighted PM10 levels in residential areas of cities with more than 100,000 residents. The estimates represent the average annual exposure level of the average urban resident to outdoor particulate matter. The state of a countryÂ’s technology and pollution controls is an important determinant of particulate matter concentrations.
  • Pollution > Water pollution, food industry > % of total BOD emissions: Water pollution, food industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: food and beverages (31). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Pollution > Water pollution, other industry > % of total BOD emissions: Water pollution, other industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: other (38 and 39). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Pollution > Water pollution, paper and pulp industry > % of total BOD emissions: Water pollution, paper and pulp industry (% of total BOD emissions). Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: paper and pulp (34). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Climate change > GHG net emissions/removals by LUCF > Mt of CO2 equivalent: GHG net emissions/removals by LUCF (Mt of CO2 equivalent). GHG net emissions/removals by LUCF refers to changes in atmospheric levels of all greenhouse gases attributable to forest and land-use change activities, including but not limited to (1) emissions and removals of CO2 from decreases or increases in biomass stocks due to forest management, logging, fuelwood collection, etc.; (2) conversion of existing forests and natural grasslands to other land uses; (3) removal of CO2 from the abandonment of formerly managed lands (e.g. croplands and pastures); and (4) emissions and removals of CO2 in soil associated with land-use change and management. For Annex-I countries under the UNFCCC, these data are drawn from the annual GHG inventories submitted to the UNFCCC by each country; for non-Annex-I countries, data are drawn from the most recently submitted National Communication where available. Because of differences in reporting years and methodologies, these data are not generally considered comparable across countries. Data are in million metric tons.
  • Water pollution > Wood industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: wood (33). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Water pollution > Other industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: other (38 and 39). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • Water pollution > Chemical industry > % of total BOD emissions: Industry shares of emissions of organic water pollutants refer to emissions from manufacturing activities as defined by two-digit divisions of the International Standard Industrial Classification (ISIC), revision 2: chemicals (35). Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants.
  • International agreements > Signed but not ratified: The various international environmental agreements which a country has signed but not ratified. Agreements are listed in alphabetical order by the abbreviated form of the full name.
  • Climate change > CO2 emissions from other sectors, excluding residential buildings and commercial and public services > % of total fuel combustion: CO2 emissions from other sectors, excluding residential buildings and commercial and public services (% of total fuel combustion). CO2 emissions from other sectors, less residential buildings and commercial and public services, contains the emissions from commercial/institutional activities, residential, agriculture/forestry, fishing and other emissions not specified elsewhere that are included in the IPCC Source/Sink Categories 1 A 4 and 1 A 5. In the 1996 IPCC Guidelines, the category also includes emissions from autoproducers in the commercial/residential/agricultural sectors that generate electricity and/or heat. The IEA data are not collected in a way that allows the energy consumption to be split by specific end-use and therefore, autoproducers are shown as a separate item (Unallocated Autoproducers).
STAT Japan Yemen HISTORY
Adjusted net national income > Constant 2000 US$ $3.76 trillion
Ranked 3rd. 255 times more than Yemen
$14.75 billion
Ranked 56th.

Biodiversity > Bird species, threatened 40
Ranked 22nd. 3 times more than Yemen
15
Ranked 71st.
Biodiversity > Mammal species, threatened 27
Ranked 33th. 3 times more than Yemen
9
Ranked 101st.
CO2 Emissions per 1000 9.59
Ranked 22nd. 18 times more than Yemen
0.543
Ranked 127th.
CO2 emissions > Kt 1.23 million kt
Ranked 5th. 72 times more than Yemen
17,051.27 kt
Ranked 83th.

CO2 emissions > Kt per 1000 9.64 kt
Ranked 29th. 11 times more than Yemen
0.894 kt
Ranked 128th.

Climate change > CO2 emissions > Metric tons per capita 9.19
Ranked 32nd. 10 times more than Yemen
0.96
Ranked 137th.

Climate change > CO2 emissions from electricity and heat production, total > Million metric tons 561.21
Ranked 6th. 94 times more than Yemen
5.99
Ranked 86th.

Climate change > CO2 emissions from electricity and heat production, total > Million metric tons per million 4.39
Ranked 25th. 17 times more than Yemen
0.257
Ranked 104th.

Current issues air pollution from power plant emissions results in acid rain; acidification of lakes and reservoirs degrading water quality and threatening aquatic life; Japan is one of the largest consumers of fish and tropical timber, contributing to the depletion of these resources in Asia and elsewhere limited natural fresh water resources; inadequate supplies of potable water; overgrazing; soil erosion; desertification
Forest area > Sq. km > Per capita 1.95 km² per 1,000 people
Ranked 114th. 7 times more than Yemen
0.262 km² per 1,000 people
Ranked 173th.

Proportion of land area under protection 16.54%
Ranked 93th. 21 times more than Yemen
0.79%
Ranked 202nd.

Total renewable water resources 430 cu km
Ranked 10th. 105 times more than Yemen
4.1 cu km
Ranked 22nd.
Waste > Local garbage collected 54.37 million tonnes
Ranked 3rd. 39 times more than Yemen
1.41 million tonnes
Ranked 44th.

Water > Drinking water > Population with improved drinking water sources > Urban and rural 100
Ranked 8th. 83% more than Yemen
54.75
Ranked 183th.

Adjusted net national income > Constant 2000 US$ per capita $29,410.76
Ranked 15th. 45 times more than Yemen
$647.98
Ranked 72nd.

Total renewable water resources per million 3.4 cu km
Ranked 13th. 13 times more than Yemen
0.255 cu km
Ranked 24th.
Waste > Hazardous waste created 3.31 million tonnes
Ranked 7th. 87 times more than Yemen
38,200 tonnes
Ranked 27th.
Waste > Local garbage collected per thousand people 425.68 tonnes
Ranked 32nd. 7 times more than Yemen
63.43 tonnes
Ranked 66th.

Biodiversity > Fish species, threatened 66
Ranked 23th. 3 times more than Yemen
24
Ranked 86th.
Climate change > CO2 emissions > Kt 1.17 million
Ranked 6th. 54 times more than Yemen
21,851.65
Ranked 79th.

CO2 emissions > Kt > Per capita 9.64 kt per 1,000 people
Ranked 33th. 11 times more than Yemen
0.865 kt per 1,000 people
Ranked 134th.

Pollution > Organic water pollutant > BOD emissions > Kg per day 1.13 million
Ranked 4th. 24 times more than Yemen
46,526.3
Ranked 40th.

Water > Percent of water resources used 20.9%
Ranked 42nd.
168.6%
Ranked 5th. 8 times more than Japan

Pollution > Ozone depleting substance consumption 618.72
Ranked 12th. 7 times more than Yemen
89.98
Ranked 41st.

Climate change > CO2 emissions > Kt per 1000 9.19
Ranked 32nd. 10 times more than Yemen
0.96
Ranked 137th.

Forest area > Sq. km 248,680 km²
Ranked 23th. 45 times more than Yemen
5,490 km²
Ranked 130th.

Climate change > CO2 emissions > Kg per 2000 US$ of GDP $0.25
Ranked 156th.
$1.06
Ranked 40th. 4 times more than Japan

Sanitation > Population with improved sanitation > Urban and rural 100
Ranked 9th. 89% more than Yemen
53.01
Ranked 141st.

Pollution > Ozone depleting substance consumption per million people 4.84
Ranked 51st. 25% more than Yemen
3.86
Ranked 58th.

Water > Drinking water > Population with improved drinking water sources > Rural 100
Ranked 7th. 2 times more than Yemen
46.53
Ranked 177th.

Biodiversity > Plant species > Higher, threatened 17
Ranked 85th.
161
Ranked 23th. 9 times more than Japan
Adjusted net national income > Current US$ per capita $40,799.63
Ranked 12th. 41 times more than Yemen
$1,003.27
Ranked 116th.

Waste > Population served by local garbage collection 99.8%
Ranked 25th. 5 times more than Yemen
19.2%
Ranked 39th.

Adjusted net national income > Current US$ $5.21 trillion
Ranked 4th. 223 times more than Yemen
$23.38 billion
Ranked 81st.

Waste > Hazardous waste created per thousand people 26.1 tonnes
Ranked 24th. 10 times more than Yemen
2.54 tonnes
Ranked 30th.
Protected area 6.8%
Ranked 60th.
0.0
Ranked 146th.
Biodiversity > GEF benefits index for biodiversity > 0 = no biodiversity potential to 100 = maximum 35.96
Ranked 9th. 11 times more than Yemen
3.24
Ranked 75th.

Freshwater > Withdrawal 88.43
Ranked 5th. 13 times more than Yemen
6.63
Ranked 47th.
Water > Net freshwater supplied by water supply industry per capita 676.12 cubic metres
Ranked 2nd. 148 times more than Yemen
4.56 cubic metres
Ranked 30th.

Pollution > PM10, country level > Micrograms per cubic meter 24.07
Ranked 105th.
34.41
Ranked 69th. 43% more than Japan

CO2 emissions > Kg per 2000 PPP $ of GDP 0.37 kg/PPP$
Ranked 69th.
0.99 kg/PPP$
Ranked 18th. 3 times more than Japan

Proportion of land and marine area under protection 10.97%
Ranked 107th. 10 times more than Yemen
1.13%
Ranked 189th.

Climate change > CO2 emissions from other sectors, excluding residential buildings and commercial and public services > Million metric tons 10.21
Ranked 14th. 3 times more than Yemen
3.95
Ranked 32nd.

Biodiversity > GEF benefits index for biodiversity > 0 = no biodiversity potential to 100 = maximum per million 0.282
Ranked 99th. 89% more than Yemen
0.149
Ranked 118th.

Water > Population connected to wastewater treatment 67%
Ranked 15th. 20 times more than Yemen
3.3%
Ranked 36th.
Water > Drinking water > Population with improved drinking water sources > Urban 100
Ranked 13th. 39% more than Yemen
71.97
Ranked 194th.

Sanitation > Population with improved sanitation > Rural 100%
Ranked 8th. 3 times more than Yemen
34.14%
Ranked 140th.

Forest area > Sq. km per 1000 1.95 km²
Ranked 111th. 7 times more than Yemen
0.273 km²
Ranked 169th.

Threatened species > Mammal 29
Ranked 24th. 6 times more than Yemen
5
Ranked 122nd.
Water > Population supplied by water supply industry 97%
Ranked 14th. 5 times more than Yemen
18.2%
Ranked 28th.

Water > Net freshwater supplied by water supply industry to households per capita 128.03 cubic metres
Ranked 3rd. 28 times more than Yemen
4.56 cubic metres
Ranked 27th.

World Heritage Sites (environmental) 4
Ranked 13th. 4 times more than Yemen
1
Ranked 71st.
Known mammal species 188
Ranked 46th. 3 times more than Yemen
66
Ranked 122nd.
Climate change > CO2 emissions from residential buildings and commercial and public services > Million metric tons 150.19
Ranked 4th. 93 times more than Yemen
1.61
Ranked 71st.

Pollution > Organic water pollutant > BOD emissions > Kg per day per worker 0.149
Ranked 50th.
0.211
Ranked 10th. 41% more than Japan

Pollution > Carbon dioxide 1999 315,274
Ranked 3rd. 63 times more than Yemen
4,983
Ranked 75th.
Climate change > CO2 emissions from gaseous fuel consumption > Kt per 1000 1.55
Ranked 45th. 21 times more than Yemen
0.0738
Ranked 101st.

Climate change > CO2 emissions from solid fuel consumption > Kt per 1000 3.42
Ranked 18th.
0.0
Ranked 155th.

Climate change > CO2 emissions from liquid fuel consumption > Kt per 1000 4.02
Ranked 36th. 5 times more than Yemen
0.82
Ranked 124th.

Climate change > CO2 emissions from gaseous fuel consumption > Kt 197,057.25
Ranked 5th. 117 times more than Yemen
1,679.49
Ranked 89th.

Climate change > CO2 emissions from solid fuel consumption > Kt 435,965.96
Ranked 6th.
0.0
Ranked 155th.

Climate change > Other greenhouse gas emissions, HFC, PFC and SF6 > Thousand metric tons of CO2 equivalent per million 555.46
Ranked 8th.
0.0
Ranked 118th.

Sanitation > Population with improved sanitation > Urban 100
Ranked 10th. 8% more than Yemen
92.52
Ranked 98th.

Water > Population connected to wastewater collecting system 67%
Ranked 29th. 93% more than Yemen
34.7%
Ranked 23th.

Water > Proportion of marine area under protection 5.59%
Ranked 71st. 69% more than Yemen
3.3%
Ranked 86th.

Pollution > Carbon dioxide 1999 per 1000 2.49
Ranked 28th. 9 times more than Yemen
0.293
Ranked 118th.
Freshwater > Withdrawal per million 0.697
Ranked 36th. 84% more than Yemen
0.378
Ranked 65th.
Known mammal species per million 1.48
Ranked 136th.
3.56
Ranked 116th. 2 times more than Japan
Areas under protection per million 0.752
Ranked 113th.
0.0
Ranked 145th.
Areas under protection 96
Ranked 45th.
0.0
Ranked 146th.
Water > Net freshwater supplied by water supply industry to households 16.28 billion cubic metres
Ranked 1st. 161 times more than Yemen
101.3 million cubic metres
Ranked 18th.

Water > Drinking water > Population with improved sanitation > Rural 100
Ranked 8th. 3 times more than Yemen
34.14
Ranked 140th.

Freshwater > Withdrawal > Industrial 18%
Ranked 21st. 18 times more than Yemen
1%
Ranked 107th.
Pollution > Greenhouse gas emissions > United Nations Framework Convention on Climate Change sign date June 13, 1992 June 12, 1992
Climate change > CO2 emissions from residential buildings and commercial and public services > Million metric tons per million 1.18
Ranked 15th. 17 times more than Yemen
0.0691
Ranked 103th.

Known breeding bird species per million 1.65
Ranked 141st.
5.01
Ranked 123th. 3 times more than Japan
Water pollution > Food industry > % of total BOD emissions 45.71%
Ranked 25th.
74.58%
Ranked 3rd. 63% more than Japan

Total natural resources rents > % of GDP 0.0363%
Ranked 156th.
23.12%
Ranked 27th. 637 times more than Japan

Organic water pollutant > BOD emissions > Kg per day per worker 0.15 kg per day per worker
Ranked 39th.
0.23 kg per day per worker
Ranked 6th. 53% more than Japan

Freshwater > Withdrawal > Agricultural 62%
Ranked 86th.
95%
Ranked 17th. 53% more than Japan
Climate change > GHG net emissions/removals by LUCF > Mt of CO2 equivalent per million -0.561
Ranked 17th.
-0.644
Ranked 26th. 15% more than Japan
Natural gas rents > % of GDP 0.0104%
Ranked 73th.
4.39%
Ranked 9th. 422 times more than Japan

Pollution > Water pollution, chemical industry > % of total BOD emissions 11.2%
Ranked 26th. 51% more than Yemen
7.41%
Ranked 52nd.

Climate change > CO2 emissions from electricity and heat production, total > % of total fuel combustion 47.32%
Ranked 42nd. 64% more than Yemen
28.92%
Ranked 98th.

Forest area > % of land area 68.22% of land area
Ranked 14th. 66 times more than Yemen
1.04% of land area
Ranked 182nd.

Water pollution > Textile industry > % of total BOD emissions 4.81%
Ranked 42nd.
7.62%
Ranked 23th. 58% more than Japan

Adjusted savings > Carbon dioxide damage > % of GNI 0.18% of GNI
Ranked 139th.
0.88% of GNI
Ranked 35th. 5 times more than Japan

Marine protected areas > % of territorial waters 29.97%
Ranked 20th. 17 times more than Yemen
1.77%
Ranked 80th.

Water pollution > Paper and pulp industry > % of total BOD emissions 18.99%
Ranked 15th. 2 times more than Yemen
7.71%
Ranked 30th.

Adjusted savings > Particulate emission damage > % of GNI 0.47% of GNI
Ranked 64th.
0.75% of GNI
Ranked 43th. 60% more than Japan

Known breeding bird species 210
Ranked 66th. 2 times more than Yemen
93
Ranked 139th.
Freshwater > Withdrawal > Domestic 20%
Ranked 46th. 5 times more than Yemen
4%
Ranked 102nd.
Adjusted net national income > Current US$, % of GDP 88.44%
Ranked 28th. 20% more than Yemen
73.7%
Ranked 122nd.

Adjusted net national income > Constant 2000 US$, % of GDP 82.2%
Ranked 99th. 78% more than Yemen
46.26%
Ranked 82nd.

Water pollution > Clay and glass industry > % of total BOD emissions 0.19%
Ranked 35th.
0.38%
Ranked 7th. Twice as much as Japan

Oil rents > % of GDP 0.00272%
Ranked 81st.
18.71%
Ranked 19th. 6889 times more than Japan

Pollution > Water pollution, clay and glass industry > % of total BOD emissions 3.56%
Ranked 54th.
14.57%
Ranked 4th. 4 times more than Japan

Climate change > CO2 emissions from liquid fuel consumption > % of total 43.73%
Ranked 141st.
85.47%
Ranked 70th. 95% more than Japan

Climate change > CO2 emissions from gaseous fuel consumption > % of total 16.83%
Ranked 72nd. 2 times more than Yemen
7.69%
Ranked 93th.

Pollution > Water pollution, textile industry > % of total BOD emissions 5.32%
Ranked 53th.
15.46%
Ranked 25th. 3 times more than Japan

Climate change > CO2 emissions from solid fuel consumption > % of total 37.24%
Ranked 31st.
0.0
Ranked 155th.

Climate change > Other greenhouse gas emissions, HFC, PFC and SF6 > Thousand metric tons of CO2 equivalent 70,793
Ranked 4th.
0.0
Ranked 118th.

Water > Net freshwater supplied by water supply industry 85.97 billion cubic metres
Ranked 1st. 849 times more than Yemen
101.3 million cubic metres
Ranked 20th.

CO2 Emissions 1.22 million
Ranked 4th. 118 times more than Yemen
10,367.7
Ranked 84th.
Water pollution > Metal industry > % of total BOD emissions 7.06%
Ranked 24th. 31% more than Yemen
5.37%
Ranked 51st.

Pollution > Water pollution, wood industry > % of total BOD emissions 2%
Ranked 47th.
5.13%
Ranked 17th. 3 times more than Japan

Climate change > CO2 emissions from liquid fuel consumption > Kt 511,993.87
Ranked 4th. 27 times more than Yemen
18,676.03
Ranked 61st.

Climate change > CO2 emissions from residential buildings and commercial and public services > % of total fuel combustion 12.66%
Ranked 37th. 63% more than Yemen
7.77%
Ranked 71st.

PM10 > Country level > Micrograms per cubic meter 31.17 mcg/m³
Ranked 115th.
90.8 mcg/m³
Ranked 23th. 3 times more than Japan

Pollution > Water pollution, food industry > % of total BOD emissions 15.04%
Ranked 46th.
35.9%
Ranked 6th. 2 times more than Japan

Pollution > Water pollution, other industry > % of total BOD emissions 52.53%
Ranked 5th. 3 times more than Yemen
19.43%
Ranked 50th.

Pollution > Water pollution, paper and pulp industry > % of total BOD emissions 7.04%
Ranked 26th. 3 times more than Yemen
2.1%
Ranked 60th.

Climate change > GHG net emissions/removals by LUCF > Mt of CO2 equivalent -71.523
Ranked 37th. 7 times more than Yemen
-9.67
Ranked 28th.
Water pollution > Wood industry > % of total BOD emissions 1.57%
Ranked 38th. 80% more than Yemen
0.87%
Ranked 30th.

Water pollution > Other industry > % of total BOD emissions 12.3%
Ranked 8th. 14 times more than Yemen
0.86%
Ranked 82nd.

Water pollution > Chemical industry > % of total BOD emissions 9.37%
Ranked 24th. 38% more than Yemen
6.81%
Ranked 17th.

International agreements > Signed but not ratified none of the selected agreements none of the selected agreements
Climate change > CO2 emissions from other sectors, excluding residential buildings and commercial and public services > % of total fuel combustion 0.861%
Ranked 101st.
19.07%
Ranked 6th. 22 times more than Japan

SOURCES: The Changing Wealth of Nations: Measuring Sustainable Development in the New Millennium; United Nations Environmental Program and the World Conservation Monitoring Centre; United Nations Environmental Program and the World Conservation Monitoring Centre; World Resources Institute. 2003. Carbon Emissions from energy use and cement manufacturing, 1850 to 2000. Available on-line through the Climate Analysis Indicators Tool (CAIT) at Washington, DC: World Resources Institute. Population figures from World Bank: (1) United Nations Population Division. World Population Prospects, (2) United Nations Statistical Division. 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Citation

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