Bahrain vs Saint Kitts and Nevis: Food GHG emissions by system stage (Share of total) - Production

Bahrain
20.33
in 2015
Saint Kitts and Nevis
21.08
in 2015
Bahrain rank
160th
Saint Kitts and Nevis rank
158th

Food GHG emissions by system stage (Share of total) - Production over time

  • Bahrain
  • Saint Kitts and Nevis
010203040199020022015

How they compare

Saint Kitts and Nevis currently reports 21.08 against 20.33 in Bahrain, a difference of 0.75.

The two have swapped places 4 times across 26 shared years of data; in 1990 it was Saint Kitts and Nevis ahead.

Bahrain ranks 160th and Saint Kitts and Nevis ranks 158th of 201 countries.

Saint Kitts and Nevis has averaged higher in every one of the 3 decades both report.

Head to head by decade

Decade Bahrain Saint Kitts and Nevis Difference Ahead
1990s 30.79 40.57 9.78 Saint Kitts and Nevis
2000s 23.92 34.25 10.32 Saint Kitts and Nevis
2010s 21.1 22.75 1.66 Saint Kitts and Nevis

Averages of every year both report within each decade.

Frequently asked questions

Which has higher food ghg emissions by system stage (share of total) - production, Bahrain or Saint Kitts and Nevis?
Saint Kitts and Nevis, at 21.08 against 20.33 in Bahrain as of 2015.
What is the difference in food ghg emissions by system stage (share of total) - production between Bahrain and Saint Kitts and Nevis?
0.75, with Saint Kitts and Nevis ahead.
How many years of comparable data are there for Bahrain and Saint Kitts and Nevis?
26 years are reported by both, from 1990 to 2015.
How do Bahrain and Saint Kitts and Nevis rank globally for food ghg emissions by system stage (share of total) - production?
Bahrain ranks 160th and Saint Kitts and Nevis ranks 158th of 201 countries.
Where does this data come from?
Crippa, M., Solazzo, E., Guizzardi, D., Monforti-Ferrario, F., Tubiello, F.N. and Leip, A. EDGAR-FOOD data. Figshare, doi:10.6084/m9.figshare.13476666 (2021), published as Food GHG emissions by system stage (Share of total) - Production. 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

Bahrain vs Saint Kitts and Nevis: Food GHG emissions by system stage (Share of total) - Production. Statizoid, drawing on Crippa, M., Solazzo, E., Guizzardi, D., Monforti-Ferrario, F., Tubiello, F.N. and Leip, A. EDGAR-FOOD data. Figshare, doi:10.6084/m9.figshare.13476666 (2021). Retrieved 04 September 2026, from https://reference.statizoid.com/compare/food-ghg-emissions-by-system-stage-share-of-total-production/bahrain/st-kitts-and-nevis/

Embed or link this data

Paste this into a page to link back to these figures. The data itself is free to reuse under CC BY 4.0 (World Bank Open Data); please keep the attribution.

<a href="https://reference.statizoid.com/compare/food-ghg-emissions-by-system-stage-share-of-total-production/bahrain/st-kitts-and-nevis/">Bahrain vs Saint Kitts and Nevis: Food GHG emissions by system stage (Share of total) - Production</a> — Statizoid

About this data

Indicator
Food GHG emissions by system stage (Share of total) - Production
Source
Crippa, M., Solazzo, E., Guizzardi, D., Monforti-Ferrario, F., Tubiello, F.N. and Leip, A. EDGAR-FOOD data. Figshare, doi:10.6084/m9.figshare.13476666 (2021)
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
201 places, 5,226 data points, 1990–2015
Last refreshed

Food GHG emissions disaggregated by system stage are generated from EDGAR-FOOD, a global emission inventory of GHGs from the food systems. EDGAR-FOOD has been developed to aid the understanding of the activities underlying the energy demand and use, agriculture and land use change emissions associated with the production, distribution, consumption and disposal of food through the various stages and sectors of the composite global food system. These data were complemented with data from the FAOSTAT database on GHG emissions from land use related to agriculture (FAO, 2020). EDGAR-FOOD represents the first database consistently covering each stage of the food chain for all countries with yearly frequency for the period 1990-2015. Details regarding the methodology applied are available in Crippa et al. (2021).