Electric power consumption in Belarus

Belarus: Electric power consumption was 4,198 kWh per capita in 2023. ▲ Rising

Latest (2023)
4,198 kWh per capita
Change on year
up 7.6%
World rank
54th
of 150 countries
All-time high
4,397 kWh per capita
in 1991
All-time low
2,790 kWh per capita
in 1995
Years of data
34
1990–2023

Electric power consumption in Belarus, 1990–2023

01.0k2.0k3.0k4.0k1990200620231990: 4.4k kWh per capita1991: 4.4k kWh per capita1992: 3.9k kWh per capita1993: 3.5k kWh per capita1994: 3.1k kWh per capita1995: 2.8k kWh per capita1996: 2.8k kWh per capita1997: 3.0k kWh per capita1998: 3.0k kWh per capita1999: 3.0k kWh per capita2000: 3.0k kWh per capita2001: 3.0k kWh per capita2002: 3.0k kWh per capita2003: 3.1k kWh per capita2004: 3.2k kWh per capita2005: 3.2k kWh per capita2006: 3.4k kWh per capita2007: 3.4k kWh per capita2008: 3.5k kWh per capita2009: 3.3k kWh per capita2010: 3.6k kWh per capita2011: 3.6k kWh per capita2012: 3.7k kWh per capita2013: 3.7k kWh per capita2014: 3.7k kWh per capita2015: 3.6k kWh per capita2016: 3.6k kWh per capita2017: 3.6k kWh per capita2018: 3.7k kWh per capita2019: 3.8k kWh per capita2020: 3.8k kWh per capita2021: 4.1k kWh per capita2022: 3.9k kWh per capita2023: 4.2k kWh per capita

Source: IEA Energy Statistics Data Browser, International Energy Agency (IEA). Measured in kWh per capita.

Analysis

The most recent figure for electric power consumption in Belarus is 4,198 kWh per capita, measured in 2023.

Compared with earlier readings it is up 7.6% on the previous year and up 14.8% over ten years.

Over the whole period, electric power consumption in Belarus peaked at 4,397 kWh per capita in 1991 and was at its lowest, 2,790 kWh per capita, in 1995.

Belarus ranks 54th of 150 countries on this measure, in the middle of the range.

The long-run direction has been consistently rising across the 34 years of available data.

Averages by decade

DecadeAverage LowestHighest Years
1990s 3,378 kWh per capita 2,790 kWh per capita 4,397 kWh per capita 10
2000s 3,203 kWh per capita 2,996 kWh per capita 3,482 kWh per capita 10
2010s 3,649 kWh per capita 3,560 kWh per capita 3,760 kWh per capita 10
2020s 3,990 kWh per capita 3,765 kWh per capita 4,198 kWh per capita 4

Countries ranked near Belarus

  1. 51 Lithuania 4,387 kWh per capita compare
  2. 52 Chile 4,373 kWh per capita compare
  3. 53 Poland 4,370 kWh per capita compare
  4. 55 United Kingdom 4,195 kWh per capita compare
  5. 56 Cyprus 3,842 kWh per capita compare
  6. 57 Iran 3,815 kWh per capita compare

See the full ranking of 193 places →

More energy & mining data for Belarus

All data for Belarus →

Frequently asked questions

What is electric power consumption in Belarus?
Electric power consumption in Belarus was 4,198 kWh per capita in 2023, according to IEA Energy Statistics Data Browser, International Energy Agency (IEA).
What is the highest electric power consumption recorded in Belarus?
The highest recorded value was 4,397 kWh per capita in 1991.
What is the lowest electric power consumption recorded in Belarus?
The lowest recorded value was 2,790 kWh per capita in 1995.
How does Belarus rank for electric power consumption?
Belarus ranks 54th out of 150 countries with data for 2023.
Is electric power consumption rising or falling in Belarus?
Over the last ten years it is up 14.8%. The long-run trend across the full record is rising.
Where does this Belarus data come from?
The figures come from IEA Energy Statistics Data Browser, International Energy Agency (IEA), published as part of Electric power consumption (kWh per capita). Statizoid updates them automatically from the source API.

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CSV · JSON — 34 observations, free to reuse under CC BY 4.0 (World Bank Open Data).

About this data

Indicator
Electric power consumption (kWh per capita)
Unit
kWh per capita
Source
IEA Energy Statistics Data Browser, International Energy Agency (IEA)
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
193 places, 6,529 data points, 1990–2024
Last refreshed

Electric power consumption measures the production of power plants and combined heat and power plants less transmission, distribution, and transformation losses and own use by heat and power plants.