Jordan vs Lebanon: Nutrient nitrogen N (total) — Agricultural Use, gaps filled
Jordan
16,039 t
in 2024
Lebanon
16,794 t
in 2024
Jordan rank
130th
Lebanon rank
128th
Nutrient nitrogen N (total) — Agricultural Use, gaps filled over time
- Jordan
- Lebanon
How they compare
Lebanon currently reports 16,794 t against 16,039 t in Jordan, a difference of 755 t.
The two have swapped places 12 times across 64 shared years of data; in 1961 it was Lebanon ahead.
Jordan ranks 130th and Lebanon ranks 128th of 212 countries.
Across the 7 decades both report, Jordan averaged higher in 1 and Lebanon in 6.
Head to head by decade
| Decade | Jordan | Lebanon | Difference | Ahead |
|---|---|---|---|---|
| 1960s | 1,265 t | 10,915 t | 9,650 t | Lebanon |
| 1970s | 2,463 t | 20,752 t | 18,289 t | Lebanon |
| 1980s | 8,214 t | 14,400 t | 6,186 t | Lebanon |
| 1990s | 9,259 t | 17,994 t | 8,736 t | Lebanon |
| 2000s | 8,340 t | 18,627 t | 10,287 t | Lebanon |
| 2010s | 19,050 t | 19,091 t | 40.8 t | Lebanon |
| 2020s | 15,424 t | 13,301 t | 2,123 t | Jordan |
Averages of every year both report within each decade.
Frequently asked questions
- Which has higher nutrient nitrogen n (total) — agricultural use, gaps filled, Jordan or Lebanon?
- Lebanon, at 16,794 t against 16,039 t in Jordan as of 2024.
- What is the difference in nutrient nitrogen n (total) — agricultural use, gaps filled between Jordan and Lebanon?
- 755 t, with Lebanon ahead.
- How many years of comparable data are there for Jordan and Lebanon?
- 64 years are reported by both, from 1961 to 2024.
- How do Jordan and Lebanon rank globally for nutrient nitrogen n (total) — agricultural use, gaps filled?
- Jordan ranks 130th and Lebanon ranks 128th of 212 countries.
- Where does this data come from?
- Statizoid (derived), published as Nutrient nitrogen N (total) — Agricultural Use, gaps filled. Statizoid refreshes it automatically from the source and publishes the full history for both places.
Individual pages
About this data
Nutrient nitrogen N (total) — Agricultural Use with 52 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.