Energy consumption per capita — all countries

Energy consumption per capita — Singapore

Energy consumption per capita in Singapore in 2024 — 627.1 MMBtu. Ranked 2 in the world out of 214. Since 1980, the indicator has risen by 240.3%.

2024 627.1 MMBtu +1.22% vs 2023
World rank 2of 214
Period maximum 651.7 MMBtu2017
Period minimum 181.3 MMBtu1983

Trend over time

1980–2024 · million Btu per capita

Energy consumption per capita — Singapore, 1980–2024020040060080019801985199019952000200520102015202020241980: 184.3 MMBtu1981: 186.2 MMBtu1982: 185.9 MMBtu1983: 181.3 MMBtu1984: 191.3 MMBtu1985: 183.9 MMBtu1986: 208.2 MMBtu1987: 226.8 MMBtu1988: 235.5 MMBtu1989: 248 MMBtu1990: 262.4 MMBtu1991: 264.5 MMBtu1992: 295.7 MMBtu1993: 312.3 MMBtu1994: 346.2 MMBtu1995: 322.9 MMBtu1996: 367.6 MMBtu1997: 381.1 MMBtu1998: 391.6 MMBtu1999: 411.3 MMBtu2000: 408.9 MMBtu2001: 422.4 MMBtu2002: 415 MMBtu2003: 464.2 MMBtu2004: 494.5 MMBtu2005: 499.6 MMBtu2006: 523.2 MMBtu2007: 544.1 MMBtu2008: 535.2 MMBtu2009: 519.9 MMBtu2010: 575.3 MMBtu2011: 603.3 MMBtu2012: 593.6 MMBtu2013: 591.7 MMBtu2014: 589.3 MMBtu2015: 593.5 MMBtu2016: 623 MMBtu2017: 651.7 MMBtu2018: 648.9 MMBtu2019: 635.9 MMBtu2020: 611.5 MMBtu2021: 628.6 MMBtu2022: 608 MMBtu2023: 619.6 MMBtu2024: 627.1 MMBtu
Change over the period: +442.8 (+240.28%) Average annual rate: 2.82 %

Comparison, 2024

How the value compares with the world and the groups this territory belongs to: Singapore

Singapore 627.1 MMBtu
World computed 73.8 MMBtu
East Asia & Pacific computed 100.9 MMBtu
South-Eastern Asia computed 46.7 MMBtu
High-income countries computed 193.3 MMBtu
Energy consumption per capita — Singapore, by year Singapore All countries CSV XLSX
Year MMBtu Change Change, %
2024 627.1 +7.6 +1.22%
2023 619.6 +11.6 +1.9%
2022 608 −20.6 −3.27%
2021 628.6 +17.1 +2.79%
2020 611.5 −24.4 −3.84%
2019 635.9 −13 −2%
2018 648.9 −2.8 −0.43%
2017 651.7 +28.7 +4.61%
2016 623 +29.5 +4.98%
2015 593.5 +4.2 +0.71%
2014 589.3 −2.3 −0.39%
2013 591.7 −2 −0.33%
2012 593.6 −9.6 −1.6%
2011 603.3 +27.9 +4.85%
2010 575.3 +55.4 +10.67%
2009 519.9 −15.3 −2.86%
2008 535.2 −8.9 −1.64%
2007 544.1 +20.9 +4%
2006 523.2 +23.5 +4.71%
2005 499.6 +5.2 +1.04%
2004 494.5 +30.3 +6.52%
2003 464.2 +49.2 +11.86%
2002 415 −7.4 −1.75%
2001 422.4 +13.4 +3.28%
2000 408.9 −2.4 −0.58%
1999 411.3 +19.7 +5.03%
1998 391.6 +10.5 +2.75%
1997 381.1 +13.5 +3.68%
1996 367.6 +44.7 +13.84%
1995 322.9 −23.3 −6.73%
1994 346.2 +33.9 +10.86%
1993 312.3 +16.6 +5.6%
1992 295.7 +31.2 +11.81%
1991 264.5 +2.1 +0.8%
1990 262.4 +14.4 +5.8%
1989 248 +12.5 +5.29%
1988 235.5 +8.8 +3.86%
1987 226.8 +18.6 +8.94%
1986 208.2 +24.3 +13.19%
1985 183.9 −7.4 −3.85%
1984 191.3 +9.9 +5.48%
1983 181.3 −4.6 −2.45%
1982 185.9 −0.3 −0.16%
1981 186.2 +1.9 +1.02%
1980 184.3

About the indicator

Primary energy consumption per resident. The indicator is broader than electricity consumption per capita and therefore gives a fairer answer to the question of the energy standard of living: it includes fuel for transport and heating, and it is those, not electricity, that make up most of the spending in cold and car-dependent countries. The spread between countries is more than a hundredfold, and the top of the list holds not only rich states but also fuel exporters, where energy is cheap, and countries with energy-intensive industry.

Important: It is calculated on a country's entire consumption, including industry and transport, not on households. Not to be confused with electricity consumption per capita: electricity is part of this figure, usually between a fifth and a third of it.

Source: International Energy Statistics (EIA), license Public domain (work of a U.S. federal agency).