Post-demographic dividend vs Syrian Arab Republic: PM2.5 air pollution, mean annual exposure

Post-demographic dividend
9.83 micrograms per cubic meter
in 2023
Syrian Arab Republic
32.06 micrograms per cubic meter
in 2023
Post-demographic dividend rank
45th
Syrian Arab Republic rank
42nd

PM2.5 air pollution, mean annual exposure over time

  • Post-demographic dividend
  • Syrian Arab Republic
10203040199020062023

How they compare

Syrian Arab Republic currently reports 32.06 micrograms per cubic meter against 9.83 micrograms per cubic meter in Post-demographic dividend, a difference of 22.23 micrograms per cubic meter.

That makes Syrian Arab Republic's figure about 3.3 times Post-demographic dividend's.

Across all 34 years both countries report, Syrian Arab Republic has been ahead every year.

Post-demographic dividend ranks 45th and Syrian Arab Republic ranks 42nd of 47 groups.

Syrian Arab Republic has averaged higher in every one of the 4 decades both report.

Head to head by decade

Decade Post-demographic dividend Syrian Arab Republic Difference Ahead
1990s 18.66 micrograms per cubic meter 30.65 micrograms per cubic meter 11.99 micrograms per cubic meter Syrian Arab Republic
2000s 15.57 micrograms per cubic meter 30.62 micrograms per cubic meter 15.05 micrograms per cubic meter Syrian Arab Republic
2010s 12.09 micrograms per cubic meter 32.72 micrograms per cubic meter 20.62 micrograms per cubic meter Syrian Arab Republic
2020s 10.36 micrograms per cubic meter 32.39 micrograms per cubic meter 22.03 micrograms per cubic meter Syrian Arab Republic

Averages of every year both report within each decade.

Frequently asked questions

Which has higher pm2.5 air pollution, mean annual exposure, Post-demographic dividend or Syrian Arab Republic?
Syrian Arab Republic, at 32.06 micrograms per cubic meter against 9.83 micrograms per cubic meter in Post-demographic dividend as of 2023.
What is the difference in pm2.5 air pollution, mean annual exposure between Post-demographic dividend and Syrian Arab Republic?
22.23 micrograms per cubic meter, with Syrian Arab Republic ahead.
How many years of comparable data are there for Post-demographic dividend and Syrian Arab Republic?
34 years are reported by both, from 1990 to 2023.
How do Post-demographic dividend and Syrian Arab Republic rank globally for pm2.5 air pollution, mean annual exposure?
Post-demographic dividend ranks 45th and Syrian Arab Republic ranks 42nd of 47 groups.
Where does this data come from?
Global Burden of Disease Study 2023 (GBD 2023) Air Pollution Exposure Estimates and Risk Curves 1990-2023, GBD Collaborator Network, published as PM2.5 air pollution, mean annual exposure (micrograms per cubic meter). Statizoid refreshes it automatically from the source and publishes the full history for both places.

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Post-demographic dividend vs Syrian Arab Republic: PM2.5 air pollution, mean annual exposure. Statizoid, drawing on Global Burden of Disease Study 2023 (GBD 2023) Air Pollution Exposure Estimates and Risk Curves 1990-2023, GBD Collaborator Network. Retrieved 06 September 2026, from https://urban.statizoid.com/compare/pm2-5-air-pollution-mean-annual-exposure-micrograms-per-cubic-meter/post-demographic-dividend/syrian-arab-republic/

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<a href="https://urban.statizoid.com/compare/pm2-5-air-pollution-mean-annual-exposure-micrograms-per-cubic-meter/post-demographic-dividend/syrian-arab-republic/">Post-demographic dividend vs Syrian Arab Republic: PM2.5 air pollution, mean annual exposure</a> — Statizoid

About this data

Indicator
PM2.5 air pollution, mean annual exposure (micrograms per cubic meter)
Unit
micrograms per cubic meter
Source
Global Burden of Disease Study 2023 (GBD 2023) Air Pollution Exposure Estimates and Risk Curves 1990-2023, GBD Collaborator Network
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
247 places, 8,398 data points, 1990–2023
Last refreshed

Population-weighted exposure to ambient PM2.5 pollution is defined as the average level of exposure of a nation's population to concentrations of suspended particles measuring less than 2.5 microns in aerodynamic diameter, which are capable of penetrating deep into the respiratory tract and causing severe health damage. Exposure is calculated by weighting mean annual concentrations of PM2.5 by population in both urban and rural areas.