Indonesia vs Russia: Electricity Compared
Indonesia generated 372 TWh of electricity in 2024 and Russia 1,209 TWh, according to Ember. Indonesia's largest source was coal (61.5%); Russia's was gas (45.8%). Each kWh generated emitted 681 gCO2/kWh in Indonesia and 444 gCO2/kWh in Russia. These are Ember annual statistics for 2024, compiled from national sources; they are not real time.
Ember's latest annual figures for Indonesia are for 2024, while Russia has figures to 2025, so this comparison uses 2024 for both.
Why this comparison: both among the 20 largest electricity users.
Key Facts
- Coal supplied 61.5% of Indonesia's electricity in 2024, against 17.1% in Russia.
- Indonesia's electricity was 1.5 times as carbon intensive as Russia's in 2024, at 681 gCO2/kWh against 444 gCO2/kWh.
- The average person in Russia used 8.24 MWh of electricity in 2024, 6.3 times as much as in Indonesia (1.31 MWh).
- Low carbon sources supplied 18.1% of Indonesia's electricity in 2024 and 35.9% of Russia's.
- Electricity demand in 2024 was 373 TWh in Indonesia and 1,193 TWh in Russia.
Key Figures, 2024
Ember annual statistics| Measure | Indonesia | Russia |
|---|---|---|
| Total generation | 372 TWh | 1,209 TWh |
| Electricity demand | 373 TWh | 1,193 TWh |
| Demand per person | 1.31 MWh | 8.24 MWh |
| Carbon intensity | 681 gCO2/kWh | 444 gCO2/kWh |
| Power sector emissions | 253 MtCO2 | 536 MtCO2 |
| Low carbon share | 18.1% | 35.9% |
| Largest source | Coal 61.5% | Gas 45.8% |
Generation Mix, 2024
Share of generation| Source | Indonesia | Russia |
|---|---|---|
| Coal | 61.5% | 17.1% |
| Gas | 18.5% | 45.8% |
| Nuclear | 0.0% | 17.8% |
| Hydro | 7.3% | 17.4% |
| Bioenergy | 5.7% | 0.1% |
| Other renewables | 4.5% | 0.0% |
| Other fossil | 1.9% | 1.2% |
| Wind | 0.1% | 0.4% |
| Solar | 0.4% | 0.2% |
Carbon Intensity, 1985 to 2025
Ember annual statisticsAnnual statistics through 2025, gCO2/kWh
| Year | Indonesia | Russia |
|---|---|---|
| 1985 | n/a | 492 gCO2/kWh |
| 1986 | n/a | 492 gCO2/kWh |
| 1987 | n/a | 489 gCO2/kWh |
| 1988 | n/a | 486 gCO2/kWh |
| 1989 | n/a | 488 gCO2/kWh |
| 1990 | n/a | 496 gCO2/kWh |
| 1991 | n/a | 492 gCO2/kWh |
| 1992 | n/a | 483 gCO2/kWh |
| 1993 | n/a | 473 gCO2/kWh |
| 1994 | n/a | 481 gCO2/kWh |
| 1995 | n/a | 477 gCO2/kWh |
| 1996 | n/a | 482 gCO2/kWh |
| 1997 | n/a | 477 gCO2/kWh |
| 1998 | n/a | 482 gCO2/kWh |
| 1999 | n/a | 468 gCO2/kWh |
| 2000 | 631 gCO2/kWh | 470 gCO2/kWh |
| 2001 | 626 gCO2/kWh | 458 gCO2/kWh |
| 2002 | 643 gCO2/kWh | 463 gCO2/kWh |
| 2003 | 656 gCO2/kWh | 465 gCO2/kWh |
| 2004 | 654 gCO2/kWh | 454 gCO2/kWh |
| 2005 | 651 gCO2/kWh | 457 gCO2/kWh |
| 2006 | 668 gCO2/kWh | 463 gCO2/kWh |
| 2007 | 663 gCO2/kWh | 458 gCO2/kWh |
| 2008 | 653 gCO2/kWh | 475 gCO2/kWh |
| 2009 | 661 gCO2/kWh | 452 gCO2/kWh |
| 2010 | 637 gCO2/kWh | 458 gCO2/kWh |
| 2011 | 667 gCO2/kWh | 461 gCO2/kWh |
| 2012 | 687 gCO2/kWh | 462 gCO2/kWh |
| 2013 | 682 gCO2/kWh | 450 gCO2/kWh |
| 2014 | 692 gCO2/kWh | 449 gCO2/kWh |
| 2015 | 697 gCO2/kWh | 444 gCO2/kWh |
| 2016 | 689 gCO2/kWh | 443 gCO2/kWh |
| 2017 | 689 gCO2/kWh | 440 gCO2/kWh |
| 2018 | 684 gCO2/kWh | 439 gCO2/kWh |
| 2019 | 694 gCO2/kWh | 440 gCO2/kWh |
| 2020 | 685 gCO2/kWh | 418 gCO2/kWh |
| 2021 | 685 gCO2/kWh | 427 gCO2/kWh |
| 2022 | 676 gCO2/kWh | 443 gCO2/kWh |
| 2023 | 681 gCO2/kWh | 447 gCO2/kWh |
| 2024 | 681 gCO2/kWh | 444 gCO2/kWh |
| 2025 | n/a | 447 gCO2/kWh |
Demand per Person, 1985 to 2025
Ember annual statisticsAnnual statistics through 2025, MWh
| Year | Indonesia | Russia |
|---|---|---|
| 1985 | n/a | n/a |
| 1986 | n/a | n/a |
| 1987 | n/a | n/a |
| 1988 | n/a | n/a |
| 1989 | n/a | n/a |
| 1990 | n/a | n/a |
| 1991 | n/a | n/a |
| 1992 | n/a | n/a |
| 1993 | n/a | n/a |
| 1994 | n/a | n/a |
| 1995 | n/a | n/a |
| 1996 | n/a | n/a |
| 1997 | n/a | n/a |
| 1998 | n/a | n/a |
| 1999 | n/a | n/a |
| 2000 | 0.45 MWh | 5.89 MWh |
| 2001 | 0.49 MWh | 5.99 MWh |
| 2002 | 0.51 MWh | 6.02 MWh |
| 2003 | 0.52 MWh | 6.19 MWh |
| 2004 | 0.55 MWh | 6.37 MWh |
| 2005 | 0.58 MWh | 6.51 MWh |
| 2006 | 0.59 MWh | 6.78 MWh |
| 2007 | 0.63 MWh | 6.99 MWh |
| 2008 | 0.65 MWh | 7.11 MWh |
| 2009 | 0.67 MWh | 6.80 MWh |
| 2010 | 0.72 MWh | 7.09 MWh |
| 2011 | 0.77 MWh | 7.17 MWh |
| 2012 | 0.83 MWh | 7.30 MWh |
| 2013 | 0.88 MWh | 7.23 MWh |
| 2014 | 0.92 MWh | 7.29 MWh |
| 2015 | 0.93 MWh | 7.27 MWh |
| 2016 | 0.98 MWh | 7.38 MWh |
| 2017 | 1.00 MWh | 7.39 MWh |
| 2018 | 1.06 MWh | 7.49 MWh |
| 2019 | 1.09 MWh | 7.51 MWh |
| 2020 | 1.07 MWh | 7.34 MWh |
| 2021 | 1.12 MWh | 7.79 MWh |
| 2022 | 1.20 MWh | 7.90 MWh |
| 2023 | 1.25 MWh | 7.99 MWh |
| 2024 | 1.31 MWh | 8.24 MWh |
| 2025 | n/a | 8.17 MWh |
Indonesia history · Russia history
Source: Ember (ember-energy.org), licensed under CC BY 4.0. Data as of 2024.