Bangladesh vs Turkmenistan: Nitrous oxide (N2O) emissions from Industrial Processes

Bangladesh
0.9946 Mt CO2e
in 2024
Turkmenistan
0.9414 Mt CO2e
in 2024
Bangladesh rank
54th
Turkmenistan rank
55th

Nitrous oxide (N2O) emissions from Industrial Processes over time

  • Bangladesh
  • Turkmenistan
0.20.40.60.811.2197019972024

How they compare

Bangladesh currently reports 0.9946 Mt CO2e against 0.9414 Mt CO2e in Turkmenistan, a difference of 0.0532 Mt CO2e.

That makes Bangladesh's figure about 1.1 times Turkmenistan's.

The two have swapped places 5 times across 55 shared years of data; in 1970 it was Turkmenistan ahead.

Bangladesh ranks 54th and Turkmenistan ranks 55th of 203 countries.

Turkmenistan has averaged higher in every one of the 6 decades both report.

Head to head by decade

Decade Bangladesh Turkmenistan Difference Ahead
1970s 0.2078 Mt CO2e 0.4814 Mt CO2e 0.2736 Mt CO2e Turkmenistan
1980s 0.2686 Mt CO2e 0.4205 Mt CO2e 0.152 Mt CO2e Turkmenistan
1990s 0.3346 Mt CO2e 0.4075 Mt CO2e 0.073 Mt CO2e Turkmenistan
2000s 0.4241 Mt CO2e 0.7368 Mt CO2e 0.3127 Mt CO2e Turkmenistan
2010s 0.6632 Mt CO2e 0.9118 Mt CO2e 0.2486 Mt CO2e Turkmenistan
2020s 0.9008 Mt CO2e 0.9556 Mt CO2e 0.0548 Mt CO2e Turkmenistan

Averages of every year both report within each decade.

Frequently asked questions

Which has higher nitrous oxide (n2o) emissions from industrial processes, Bangladesh or Turkmenistan?
Bangladesh, at 0.9946 Mt CO2e against 0.9414 Mt CO2e in Turkmenistan as of 2024.
What is the difference in nitrous oxide (n2o) emissions from industrial processes between Bangladesh and Turkmenistan?
0.0532 Mt CO2e, with Bangladesh ahead.
How many years of comparable data are there for Bangladesh and Turkmenistan?
55 years are reported by both, from 1970 to 2024.
How do Bangladesh and Turkmenistan rank globally for nitrous oxide (n2o) emissions from industrial processes?
Bangladesh ranks 54th and Turkmenistan ranks 55th of 203 countries.
Where does this data come from?
EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission, published as Nitrous oxide (N2O) emissions from Industrial Processes (Mt CO2e). 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

Bangladesh vs Turkmenistan: Nitrous oxide (N2O) emissions from Industrial Processes. Statizoid, drawing on EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission. Retrieved 28 August 2026, from https://environment.statizoid.com/compare/nitrous-oxide-n2o-emissions-from-industrial-processes-mt-co2e/bangladesh/turkmenistan/

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://environment.statizoid.com/compare/nitrous-oxide-n2o-emissions-from-industrial-processes-mt-co2e/bangladesh/turkmenistan/">Bangladesh vs Turkmenistan: Nitrous oxide (N2O) emissions from Industrial Processes</a> — Statizoid

About this data

Indicator
Nitrous oxide (N2O) emissions from Industrial Processes (Mt CO2e)
Unit
Mt CO2e
Source
EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
250 places, 13,750 data points, 1970–2024
Last refreshed

A measure of annual emissions of nitrous oxide (N2O), one of the six Kyoto greenhouse gases (GHG), from industrial processes including IPCC 2006 codes 2.A.1 Cement production, 2.A.2 Lime production, 2.A.3 Glass Production, 2.A.4 Other Process Uses of Carbonates, 2.B Chemical Industry, 2.C Metal Industry, 2.D Non-Energy Products from Fuels and Solvent Use, 2.E Electronics Industry, 2.F Product Uses as Substitutes for Ozone Depleting Substances, 2.G Other Product Manufacture and Use and 5.A Indirect N2O emissions from the atmospheric deposition of nitrogen in NOx and NH3). The measure is standardized to carbon dioxide equivalent values using the Global Warming Potential (GWP) factors of IPCC's 5th Assessment Report (AR5).