Congo vs Gambia: PM2.5 air pollution, population exposed to levels exceeding WHO
Congo
100.0%
in 2017
Gambia
100.0%
in 2017
Congo rank
1st
Gambia rank
1st
PM2.5 air pollution, population exposed to levels exceeding WHO over time
- Congo
- Gambia
How they compare
Congo currently reports 100.0% against 100.0% in Gambia, a difference of 0.0%.
Across all 12 years both countries report, Gambia has been ahead every year.
Congo ranks 1st and Gambia ranks 1st of 194 countries.
Head to head by decade
| Decade | Congo | Gambia | Difference | Ahead |
|---|---|---|---|---|
| 1990s | 100.0% | 100.0% | 0.0% | — |
| 2000s | 100.0% | 100.0% | 0.0% | — |
| 2010s | 100.0% | 100.0% | 0.0% | — |
Averages of every year both report within each decade.
Frequently asked questions
- Which has higher pm2.5 air pollution, population exposed to levels exceeding who, Congo or Gambia?
- Congo, at 100.0% against 100.0% in Gambia as of 2017.
- What is the difference in pm2.5 air pollution, population exposed to levels exceeding who between Congo and Gambia?
- 0.0%, with Congo ahead.
- How many years of comparable data are there for Congo and Gambia?
- 12 years are reported by both, from 1990 to 2017.
- How do Congo and Gambia rank globally for pm2.5 air pollution, population exposed to levels exceeding who?
- Congo ranks 1st and Gambia ranks 1st of 194 countries.
- Where does this data come from?
- Global Burden of Disease Study 2017 (GBD 2017), Institute for Health Metrics and Evaluation (IHME), published as PM2.5 air pollution, population exposed to levels exceeding WHO guideline value (% of total). Statizoid refreshes it automatically from the source and publishes the full history for both places.
Individual pages
About this data
Percent of population exposed to ambient concentrations of PM2.5 that exceed the WHO guideline value is defined as the portion of a country’s population living in places where mean annual concentrations of PM2.5 are greater than 10 micrograms per cubic meter, the guideline value recommended by the World Health Organization as the lower end of the range of concentrations over which adverse health effects due to PM2.5 exposure have been observed.