Georgia vs Montenegro: Cumulative CO₂ emissions including land-use change, gaps filled

Georgia
233.48 million tonnes
in 2024
Montenegro
220.35 million tonnes
in 2024
Georgia rank
153rd
Montenegro rank
154th

Cumulative CO₂ emissions including land-use change, gaps filled over time

  • Georgia
  • Montenegro
0200.0M400.0M600.0M185019372024

How they compare

Georgia currently reports 233.48 million tonnes against 220.35 million tonnes in Montenegro, a difference of 13.13 million tonnes.

That makes Georgia's figure about 1.1 times Montenegro's.

The two have swapped places 4 times across 131 shared years of data; in 1885 it was Georgia ahead.

Georgia ranks 153rd and Montenegro ranks 154th of 194 countries.

Across the 15 decades both report, Georgia averaged higher in 12 and Montenegro in 3.

Head to head by decade

Decade Georgia Montenegro Difference Ahead
1880s 247.61 million tonnes 2.31 million tonnes 245.31 million tonnes Georgia
1890s 318.44 million tonnes 15.41 million tonnes 303.04 million tonnes Georgia
1900s 386.52 million tonnes 39.54 million tonnes 346.98 million tonnes Georgia
1910s 433.54 million tonnes 57.83 million tonnes 375.72 million tonnes Georgia
1920s 469.03 million tonnes 76.44 million tonnes 392.59 million tonnes Georgia
1930s 531.25 million tonnes 100.55 million tonnes 430.70 million tonnes Georgia
1940s 587.35 million tonnes 120.07 million tonnes 467.27 million tonnes Georgia
1950s 479.09 million tonnes 153.47 million tonnes 325.62 million tonnes Georgia
1960s 296.15 million tonnes 188.31 million tonnes 107.84 million tonnes Georgia
1970s 206.91 million tonnes 207.18 million tonnes 267,200 tonnes Montenegro
1980s 220.79 million tonnes 224.16 million tonnes 3.37 million tonnes Montenegro
1990s 261.84 million tonnes 234.10 million tonnes 27.74 million tonnes Georgia
2000s 239.54 million tonnes 232.99 million tonnes 6.54 million tonnes Georgia
2010s 213.28 million tonnes 224.55 million tonnes 11.27 million tonnes Montenegro
2020s 224.02 million tonnes 220.52 million tonnes 3.50 million tonnes Georgia

Averages of every year both report within each decade.

Frequently asked questions

Which has higher cumulative co₂ emissions including land-use change, gaps filled, Georgia or Montenegro?
Georgia, at 233.48 million tonnes against 220.35 million tonnes in Montenegro as of 2024.
What is the difference in cumulative co₂ emissions including land-use change, gaps filled between Georgia and Montenegro?
13.13 million tonnes, with Georgia ahead.
How many years of comparable data are there for Georgia and Montenegro?
131 years are reported by both, from 1885 to 2024.
How do Georgia and Montenegro rank globally for cumulative co₂ emissions including land-use change, gaps filled?
Georgia ranks 153rd and Montenegro ranks 154th of 194 countries.
Where does this data come from?
Statizoid (derived), published as Cumulative CO₂ emissions including land-use change, gaps filled. Statizoid refreshes it automatically from the source and publishes the full history for both places.

Individual pages

Share, cite or embed this page

Cite this page

Georgia vs Montenegro: Cumulative CO₂ emissions including land-use change, gaps filled. Statizoid, drawing on Statizoid (derived). Retrieved 21 September 2026, from https://climate.statizoid.com/compare/cumulative-co2-emissions-including-land-use-change-gaps-filled/georgia/montenegro/

Embed or link this data

Paste this into a page to link back to these figures. The data itself is free to reuse under Derived by Statizoid from the sources named on the page; please keep the attribution.

<a href="https://climate.statizoid.com/compare/cumulative-co2-emissions-including-land-use-change-gaps-filled/georgia/montenegro/">Georgia vs Montenegro: Cumulative CO₂ emissions including land-use change, gaps filled</a> — Statizoid

About this data

Indicator
Cumulative CO₂ emissions including land-use change, gaps filled
Unit
tonnes
Source
Statizoid (derived)
Licence
Derived by Statizoid from the sources named on the page
Coverage
194 places, 21,015 data points, 1850–2024
Last refreshed

Cumulative CO₂ emissions including land-use change with 79 missing years estimated by linear interpolation between the nearest real observations. Only gaps of 4 years or fewer are filled, and never beyond the first or last actual measurement — these are filled holes, not forecasts.