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. Development relevance: Carbon dioxide (CO2) is naturally occurring gas fixed by photosynthesis into organic matter. A byproduct of fossil fuel combustion and biomass burning, it is also emitted from land use changes and other industrial processes. It is the principal anthropogenic greenhouse gas that affects the Earth's radiative balance. It is the reference gas against which other greenhouse gases are measured, thus having a Global Warming Potential of 1. Burning of carbon-based fuels since the industrial revolution has rapidly increased concentrations of atmospheric carbon dioxide, increasing the rate of global warming and causing anthropogenic climate change. It is also a major source of ocean acidification since it dissolves in water to form carbonic acid. The addition of man-made greenhouse gases to the Atmosphere disturbs the earth's radiative balance. This is leading to an increase in the earth's surface temperature and to related effects on climate, sea level rise and world agriculture. Emissions of CO2 are from burning oil, coal and gas for energy use, burning wood and waste materials, and from industrial processes such as cement production. The carbon dioxide emissions of a country are only an indicator of one greenhouse gas. For a more complete idea of how a country influences climate change, gases such as methane and nitrous oxide should be taken into account. This is particularly important in agricultural economies. Emission intensity is the average emission rate of a given pollutant from a given source relative to the intensity of a specific activity. Emission intensities are also used to compare the environmental impact of different fuels or activities. The related terms - emission factor and carbon intensity - are often used interchangeably. The environmental effects of carbon dioxide are of significant interest. Carbon dioxide (CO2) makes up the largest share of the greenhouse gases contributing to global warming and climate change. Converting all other greenhouse gases (methane (CH4), nitrous oxide (N2O), hydrofluorocarbons (HFCs), perfluorocarbons (PFCs), sulphur hexafluoride (SF6)) to carbon dioxide (or CO2) equivalents makes it possible to compare them and to determine their individual and total contributions to global warming. The Kyoto Protocol, an environmental agreement adopted in 1997 by many of the parties to the United Nations Framework Convention on Climate Change (UNFCCC), is working towards curbing CO2 emissions globally. Limitations and exceptions: The U.S. Department of Energy's Carbon Dioxide Information Analysis Center (CDIAC) calculates annual anthropogenic emissions from data on fossil fuel consumption (from the United Nations Statistics Division's World Energy Data Set) and world cement manufacturing (from the U.S. Department of Interior's Geological Survey, USGS 2011). Although estimates of global carbon dioxide emissions are probably accurate within 10 percent (as calculated from global average fuel chemistry and use), country estimates may have larger error bounds. Trends estimated from a consistent time series tend to be more accurate than individual values. Each year the CDIAC recalculates the entire time series since 1949, incorporating recent findings and corrections. Estimates exclude fuels supplied to ships and aircraft in international transport because of the difficulty of apportioning the fuels among benefiting countries. Statistical concept and methodology: Carbon dioxide emissions, largely by-products of energy production and use, account for the largest share of greenhouse gases, which are associated with global warming. Anthropogenic carbon dioxide emissions result primarily from fossil fuel combustion and cement manufacturing. In combustion different fossil fuels release different amounts of carbon dioxide for the same level of energy use: oil releases about 50 percent more carbon dioxide than natural gas, and coal releases about twice as much. Cement manufacturing releases about half a metric ton of carbon dioxide for each metric ton of cement produced. Data for carbon dioxide emissions include gases from the burning of fossil fuels and cement manufacture, but excludes emissions from land use such as deforestation.
Publisher
The World Bank
Origin
Global
Records
2635
Source
CO2 emissions (metric tons per capita)
country_code year value
AFG 1990 0.23847292
BDI 1990 0.03493316
BEN 1990 0.07632838
BFA 1990 0.0669615
BGD 1990 0.11165825
BTN 1990 0.24491288
CAF 1990 0.05700564
CIV 1990 0.22725609
CMR 1990 0.24617817
COD 1990 0.09187559
COG 1990 0.35642455
COM 1990 0.17006885
CPV 1990 0.29589913
DEA 1990 0.15549376
DEC 1990 5.3349315
DFS 1990 0.40361803
DJI 1990 0.55894972
DLA 1990 0.40468263
DMA 1990 0.85200648
DMN 1990 1.47656958
DNF 1990 0.58225093
DSA 1990 0.31602572
DSS 1990 0.29280677
ERI 1990 0
ETH 1990 0.04823769
FJI 1990 1.00195587
FSM 1990 0
GHA 1990 0.18885455
GIN 1990 0.15742374
GMB 1990 0.198829
GNB 1990 0.1743116
GRD 1990 1.14193173
GUY 1990 1.58750232
HND 1990 0.49643796
HTI 1990 0.14492929
IDA 1990 0.50167843
IDB 1990 0.993315
IDX 1990 0.25098884
KEN 1990 0.25880338
KGZ 1990 5.18309346
KHM 1990 0.14038063
KIR 1990 0.27626599
LAO 1990 0.11976129
LBR 1990 0.21677167
LCA 1990 1.23171447
LSO 1990 0.81584404
MDG 1990 0.07673309
MDV 1990 0.71697758
MHL 1990 0
MLI 1990 0.04970464
MMR 1990 0.10136642
MOZ 1990 0.08623815
MRT 1990 0.41290891
MWI 1990 0.0765591
NER 1990 0.07475153
NGA 1990 0.71261686
NIC 1990 0.4624488
NPL 1990 0.04972103
PAK 1990 0.56712662
PNG 1990 0.47011998
RWA 1990 0.07134152
SDN 1990 0.26653309
SEN 1990 0.30958082
SLB 1990 0.48097118
SLE 1990 0.07870802
SOM 1990 0.10103682
SSD 1990 0
STP 1990 0.41942438
SYR 1990 2.37583166
TCD 1990 0.06540058
TGO 1990 0.25700062
TJK 1990 2.08561586
TLS 1990 0
TON 1990 0.84149407
TUV 1990 1.12233446
TZA 1990 0.07498855
UGA 1990 0.04552161
UZB 1990 5.74207704
VCT 1990 0.7442622
VUT 1990 0.47757121
WSM 1990 0.67568813
XKX 1990
YEM 1990 0.56703735
ZMB 1990 0.34092964
ZWE 1990 1.58448542
AFG 1991 0.20603028
BDI 1991 0.04133031
BEN 1991 0.06408394
BFA 1991 0.06629771
BGD 1991 0.10255767
BTN 1991 0.31797276
CAF 1991 0.05211035
CIV 1991 0.22568426
CMR 1991 0.21832421
COD 1991 0.04845684
COG 1991 1.27151251
COM 1991 0.1651438
CPV 1991 0.28882618
DEA 1991 0.15330723
DEC 1991 5.1443944

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. Development relevance: Carbon dioxide (CO2) is naturally occurring gas fixed by photosynthesis into organic matter. A byproduct of fossil fuel combustion and biomass burning, it is also emitted from land use changes and other industrial processes. It is the principal anthropogenic greenhouse gas that affects the Earth's radiative balance. It is the reference gas against which other greenhouse gases are measured, thus having a Global Warming Potential of 1. Burning of carbon-based fuels since the industrial revolution has rapidly increased concentrations of atmospheric carbon dioxide, increasing the rate of global warming and causing anthropogenic climate change. It is also a major source of ocean acidification since it dissolves in water to form carbonic acid. The addition of man-made greenhouse gases to the Atmosphere disturbs the earth's radiative balance. This is leading to an increase in the earth's surface temperature and to related effects on climate, sea level rise and world agriculture. Emissions of CO2 are from burning oil, coal and gas for energy use, burning wood and waste materials, and from industrial processes such as cement production. The carbon dioxide emissions of a country are only an indicator of one greenhouse gas. For a more complete idea of how a country influences climate change, gases such as methane and nitrous oxide should be taken into account. This is particularly important in agricultural economies. Emission intensity is the average emission rate of a given pollutant from a given source relative to the intensity of a specific activity. Emission intensities are also used to compare the environmental impact of different fuels or activities. The related terms - emission factor and carbon intensity - are often used interchangeably. The environmental effects of carbon dioxide are of significant interest. Carbon dioxide (CO2) makes up the largest share of the greenhouse gases contributing to global warming and climate change. Converting all other greenhouse gases (methane (CH4), nitrous oxide (N2O), hydrofluorocarbons (HFCs), perfluorocarbons (PFCs), sulphur hexafluoride (SF6)) to carbon dioxide (or CO2) equivalents makes it possible to compare them and to determine their individual and total contributions to global warming. The Kyoto Protocol, an environmental agreement adopted in 1997 by many of the parties to the United Nations Framework Convention on Climate Change (UNFCCC), is working towards curbing CO2 emissions globally. Limitations and exceptions: The U.S. Department of Energy's Carbon Dioxide Information Analysis Center (CDIAC) calculates annual anthropogenic emissions from data on fossil fuel consumption (from the United Nations Statistics Division's World Energy Data Set) and world cement manufacturing (from the U.S. Department of Interior's Geological Survey, USGS 2011). Although estimates of global carbon dioxide emissions are probably accurate within 10 percent (as calculated from global average fuel chemistry and use), country estimates may have larger error bounds. Trends estimated from a consistent time series tend to be more accurate than individual values. Each year the CDIAC recalculates the entire time series since 1949, incorporating recent findings and corrections. Estimates exclude fuels supplied to ships and aircraft in international transport because of the difficulty of apportioning the fuels among benefiting countries. Statistical concept and methodology: Carbon dioxide emissions, largely by-products of energy production and use, account for the largest share of greenhouse gases, which are associated with global warming. Anthropogenic carbon dioxide emissions result primarily from fossil fuel combustion and cement manufacturing. In combustion different fossil fuels release different amounts of carbon dioxide for the same level of energy use: oil releases about 50 percent more carbon dioxide than natural gas, and coal releases about twice as much. Cement manufacturing releases about half a metric ton of carbon dioxide for each metric ton of cement produced. Data for carbon dioxide emissions include gases from the burning of fossil fuels and cement manufacture, but excludes emissions from land use such as deforestation.
Publisher
The World Bank
Origin
Global
Records
2635
Source