GDP per unit of energy use (constant 2017 PPP $ per kg of oil equivalent)

GDP per unit of energy use is the PPP GDP per kilogram of oil equivalent of energy use. PPP GDP is gross domestic product converted to 2017 constant international dollars using purchasing power parity rates. An international dollar has the same purchasing power over GDP as a U.S. dollar has in the United States. Development relevance: In developing economies growth in energy use is closely related to growth in the modern sectors - industry, motorized transport, and urban areas - but energy use also reflects climatic, geographic, and economic factors (such as the relative price of energy). Energy use has been growing rapidly in low- and middle-income economies, but high-income economies still use almost five times as much energy on a per capita basis. Fossil fuels are non-renewable resources because they take millions of years to form, and reserves are being depleted much faster than new ones are being made. In developing economies growth in energy use is closely related to growth in the modern sectors - industry, motorized transport, and urban areas - but energy use also reflects climatic, geographic, and economic factors (such as the relative price of energy). Energy use has been growing rapidly in low- and middle-income economies, but high-income economies still use almost five times as much energy on a per capita basis. Limitations and exceptions: The IEA makes these estimates in consultation with national statistical offices, oil companies, electric utilities, and national energy experts. The IEA occasionally revises its time series to reflect political changes, and energy statistics undergo continual changes in coverage or methodology as more detailed energy accounts become available. Breaks in series are therefore unavoidable. Statistical concept and methodology: The ratio of gross domestic product (GDP) to energy use indicates energy efficiency. To produce comparable and consistent estimates of real GDP across economies relative to physical inputs to GDP - that is, units of energy use - GDP is converted to 2017 international dollars using purchasing power parity (PPP) rates. Differences in this ratio over time and across economies reflect structural changes in an economy, changes in sectoral energy efficiency, and differences in fuel mixes. Total energy use refers to the use of primary energy before transformation to other end-use fuels (such as electricity and refined petroleum products). It includes energy from combustible renewables and waste - solid biomass and animal products, gas and liquid from biomass, and industrial and municipal waste. Biomass is any plant matter used directly as fuel or converted into fuel, heat, or electricity. Energy data are compiled by the International Energy Agency (IEA). IEA data for economies that are not members of the Organisation for Economic Co-operation and Development (OECD) are based on national energy data adjusted to conform to annual questionnaires completed by OECD member governments. GDP data are from World Bank's national accounts files.
Publisher
The World Bank
Origin
Global
Records
2000
Source
GDP per unit of energy use (constant 2017 PPP $ per kg of oil equivalent)
country_code year value
ABW 1990
AFG 1990
AGO 1990 7.09785031
ALB 1990 5.80732258
AND 1990
ARB 1990 10.65248081
ARE 1990 10.05791844
ARG 1990 7.68496302
ARM 1990 1.71785909
ASM 1990
ATG 1990 11.05510377
AUS 1990 5.66202074
AUT 1990 9.6730942
AZE 1990 2.68940907
BDI 1990
BEL 1990 6.37186426
BEN 1990 4.38323478
BFA 1990
BGD 1990 10.73684439
BGR 1990 2.87177617
BHR 1990 3.32661602
BHS 1990 12.3107759
BIH 1990
BLR 1990 1.8708185
BLZ 1990 9.12151169
BMU 1990
BOL 1990 9.73640674
BRA 1990 11.01962292
BRB 1990 11.67223725
BRN 1990 12.68868904
BTN 1990 22.31901957
BWA 1990 9.17305873
CAF 1990
CAN 1990 4.11692659
CEB 1990 3.88480575
CHE 1990 13.28165263
CHI 1990
CHL 1990 8.49940757
CHN 1990 1.99011472
CIV 1990 9.01707249
CMR 1990 7.10435392
COD 1990 4.06875692
COG 1990 15.93438314
COL 1990 10.65886452
COM 1990 36.89911927
CPV 1990 19.50237997
CRI 1990 14.37256444
CSS 1990 4.97593356
CUB 1990
CUW 1990
CYM 1990
CYP 1990 9.89816327
CZE 1990 4.17414641
DEU 1990 7.07633799
DJI 1990
DMA 1990 22.54594502
DNK 1990 10.00527634
DOM 1990 9.79998559
DZA 1990 11.95670681
EAP 1990 3.22957692
EAR 1990 7.12128011
EAS 1990 5.00157138
ECA 1990 3.38508459
ECS 1990 5.57012068
ECU 1990 12.06153159
EGY 1990 10.51933637
EMU 1990 8.33159279
ERI 1990
ESP 1990 10.25198111
EST 1990
ETH 1990 1.36699455
EUU 1990 7.45153674
FCS 1990
FIN 1990 5.07866271
FJI 1990 15.01912453
FRA 1990 7.70943016
FRO 1990
FSM 1990
GAB 1990 15.71774143
GBR 1990 7.4582867
GEO 1990 3.09697835
GHA 1990 5.30717348
GIB 1990
GIN 1990
GMB 1990 22.35070918
GNB 1990 21.34665015
GNQ 1990
GRC 1990 9.837997
GRD 1990 16.41551368
GRL 1990
GTM 1990 10.71216209
GUM 1990
GUY 1990 5.53104445
HIC 1990 6.41848169
HKG 1990 17.85618948
HND 1990 6.60482308
HPC 1990
HRV 1990
HTI 1990
HUN 1990

GDP per unit of energy use (constant 2017 PPP $ per kg of oil equivalent)

GDP per unit of energy use is the PPP GDP per kilogram of oil equivalent of energy use. PPP GDP is gross domestic product converted to 2017 constant international dollars using purchasing power parity rates. An international dollar has the same purchasing power over GDP as a U.S. dollar has in the United States. Development relevance: In developing economies growth in energy use is closely related to growth in the modern sectors - industry, motorized transport, and urban areas - but energy use also reflects climatic, geographic, and economic factors (such as the relative price of energy). Energy use has been growing rapidly in low- and middle-income economies, but high-income economies still use almost five times as much energy on a per capita basis. Fossil fuels are non-renewable resources because they take millions of years to form, and reserves are being depleted much faster than new ones are being made. In developing economies growth in energy use is closely related to growth in the modern sectors - industry, motorized transport, and urban areas - but energy use also reflects climatic, geographic, and economic factors (such as the relative price of energy). Energy use has been growing rapidly in low- and middle-income economies, but high-income economies still use almost five times as much energy on a per capita basis. Limitations and exceptions: The IEA makes these estimates in consultation with national statistical offices, oil companies, electric utilities, and national energy experts. The IEA occasionally revises its time series to reflect political changes, and energy statistics undergo continual changes in coverage or methodology as more detailed energy accounts become available. Breaks in series are therefore unavoidable. Statistical concept and methodology: The ratio of gross domestic product (GDP) to energy use indicates energy efficiency. To produce comparable and consistent estimates of real GDP across economies relative to physical inputs to GDP - that is, units of energy use - GDP is converted to 2017 international dollars using purchasing power parity (PPP) rates. Differences in this ratio over time and across economies reflect structural changes in an economy, changes in sectoral energy efficiency, and differences in fuel mixes. Total energy use refers to the use of primary energy before transformation to other end-use fuels (such as electricity and refined petroleum products). It includes energy from combustible renewables and waste - solid biomass and animal products, gas and liquid from biomass, and industrial and municipal waste. Biomass is any plant matter used directly as fuel or converted into fuel, heat, or electricity. Energy data are compiled by the International Energy Agency (IEA). IEA data for economies that are not members of the Organisation for Economic Co-operation and Development (OECD) are based on national energy data adjusted to conform to annual questionnaires completed by OECD member governments. GDP data are from World Bank's national accounts files.
Publisher
The World Bank
Origin
Global
Records
2000
Source