Kenya vs Zimbabwe: CO2 emissions from fossil-fuels, total

Kenya
12,350 thousand metric tons
in 2009
Zimbabwe
8,914 thousand metric tons
in 2009
Kenya rank
10th
Zimbabwe rank
11th

CO2 emissions from fossil-fuels, total over time

  • Kenya
  • Zimbabwe
05.0k10.0k15.0k20.0k196019842009

How they compare

Kenya currently reports 12,350 thousand metric tons against 8,914 thousand metric tons in Zimbabwe, a difference of 3,436 thousand metric tons.

That makes Kenya's figure about 1.4 times Zimbabwe's.

The two have swapped places 1 time across 46 shared years of data; in 1964 it was Zimbabwe ahead.

Kenya ranks 10th and Zimbabwe ranks 11th of 51 countries.

Zimbabwe has averaged higher in every one of the 5 decades both report.

Head to head by decade

Decade Kenya Zimbabwe Difference Ahead
1960s 2,772 thousand metric tons 5,695 thousand metric tons 2,923 thousand metric tons Zimbabwe
1970s 4,452 thousand metric tons 9,070 thousand metric tons 4,619 thousand metric tons Zimbabwe
1980s 4,949 thousand metric tons 11,919 thousand metric tons 6,970 thousand metric tons Zimbabwe
1990s 7,447 thousand metric tons 15,670 thousand metric tons 8,224 thousand metric tons Zimbabwe
2000s 9,269 thousand metric tons 10,766 thousand metric tons 1,497 thousand metric tons Zimbabwe

Averages of every year both report within each decade.

Frequently asked questions

Which has higher co2 emissions from fossil-fuels, total, Kenya or Zimbabwe?
Kenya, at 12,350 thousand metric tons against 8,914 thousand metric tons in Zimbabwe as of 2009.
What is the difference in co2 emissions from fossil-fuels, total between Kenya and Zimbabwe?
3,436 thousand metric tons, with Kenya ahead.
How many years of comparable data are there for Kenya and Zimbabwe?
46 years are reported by both, from 1964 to 2009.
How do Kenya and Zimbabwe rank globally for co2 emissions from fossil-fuels, total?
Kenya ranks 10th and Zimbabwe ranks 11th of 51 countries.
Where does this data come from?
Food and Agriculture Organization, electronic files and web site, published as CO2 emissions from fossil-fuels, total (thousand metric tons). Statizoid refreshes it automatically from the source and publishes the full history for both places.

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Kenya vs Zimbabwe: CO2 emissions from fossil-fuels, total. Statizoid, drawing on Food and Agriculture Organization, electronic files and web site. Retrieved 22 August 2026, from https://environment.statizoid.com/compare/co2-emissions-from-fossil-fuels-total-thousand-metric-tons/kenya/zimbabwe/

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About this data

Indicator
CO2 emissions from fossil-fuels, total (thousand metric tons)
Unit
thousand metric tons
Source
Food and Agriculture Organization, electronic files and web site
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
57 places, 2,749 data points, 1960–2009
Last refreshed

Fossil fuel is any hydrocarbon deposit that can be burned for heat or power, such as petroleum, coal, and natural gas. This is the sum total of all fossil fuel emissions (solid fuel consumption, liquid fuel consumption, gas fuel consumption, cement production and gas flaring). 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. Bureau of Mine’s Cement Manufacturing Data Set). Carbon dioxide emissions, often calculated and reported as elemental carbon, were converted to actual carbon dioxide mass by multiplying them by 3.664 (the ratio of the mass of carbon to that of carbon dioxide). Although estimates of global carbon dioxide emissions are probably accurate within 10 percent (as calculated from global average file 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 he fuels among benefitting countries. The ratio of carbon dioxide per unit of energy shows carbon intensity, which is the amount of carbon dioxide emitted as a result of using one unit of energy in the process of production.