Mineral fertilizers — Cropland phosphorus in Cuba
Cuba: Mineral fertilizers — Cropland phosphorus was 1,613 t in 2023. ◆ Volatile
Mineral fertilizers — Cropland phosphorus in Cuba, 1961–2023
Source: Food and Agriculture Organization of the United Nations. Measured in t.
Analysis
In 2023, mineral fertilizers — cropland phosphorus in Cuba stood at 1,613 t.
That represents a change of up 720.3% on the previous year and down 84.4% over ten years.
Over the whole period, mineral fertilizers — cropland phosphorus in Cuba peaked at 48,265 t in 1969 and was at its lowest, 196.64 t, in 2022.
That places Cuba 119th out of 186 countries with data for 2023, putting it in the middle of the range.
The series is highly variable year to year, so single readings are best treated with caution.
Mineral fertilizers — Cropland phosphorus in Cuba, year by year
| Year | t | Change |
|---|---|---|
| 1961 | 17,222 t | — |
| 1962 | 19,148 t | +11.2% |
| 1963 | 27,724 t | +44.8% |
| 1964 | 32,700 t | +17.9% |
| 1965 | 34,880 t | +6.7% |
| 1966 | 39,240 t | +12.5% |
| 1967 | 43,164 t | +10.0% |
| 1968 | 45,300 t | +4.9% |
| 1969 | 48,265 t | +6.5% |
| 1970 | 40,156 t | -16.8% |
| 1971 | 27,599 t | -31.3% |
| 1972 | 20,841 t | -24.5% |
| 1973 | 21,931 t | +5.2% |
| 1974 | 26,552 t | +21.1% |
| 1975 | 26,465 t | -0.3% |
| 1976 | 23,980 t | -9.4% |
| 1977 | 24,329 t | +1.5% |
| 1978 | 26,465 t | +8.8% |
| 1979 | 26,705 t | +0.9% |
| 1980 | 31,479 t | +17.9% |
| 1981 | 35,532 t | +12.9% |
| 1982 | 34,633 t | -2.5% |
| 1983 | 33,877 t | -2.2% |
| 1984 | 36,668 t | +8.2% |
| 1985 | 33,092 t | -9.8% |
| 1986 | 35,665 t | +7.8% |
| 1987 | 35,665 t | +0.0% |
| 1988 | 35,142 t | -1.5% |
| 1989 | 36,188 t | +3.0% |
| 1990 | 35,752 t | -1.2% |
| 1991 | 28,340 t | -20.7% |
| 1992 | 9,156 t | -67.7% |
| 1993 | 9,592 t | +4.8% |
| 1994 | 5,668 t | -40.9% |
| 1995 | 17,440 t | +207.7% |
| 1996 | 13,952 t | -20.0% |
| 1997 | 15,260 t | +9.4% |
| 1998 | 6,453 t | -57.7% |
| 1999 | 9,112 t | +41.2% |
| 2000 | 10,595 t | +16.3% |
| 2001 | 14,083 t | +32.9% |
| 2002 | 7,855 t | -44.2% |
| 2003 | 4,719 t | -39.9% |
| 2004 | 1,080 t | -77.1% |
| 2005 | 4,486 t | +315.3% |
| 2006 | 9,378 t | +109.1% |
| 2007 | 6,282 t | -33.0% |
| 2008 | 9,646 t | +53.6% |
| 2009 | 4,094 t | -57.6% |
| 2010 | 8,223 t | +100.9% |
| 2011 | 7,871 t | -4.3% |
| 2012 | 10,082 t | +28.1% |
| 2013 | 10,333 t | +2.5% |
| 2014 | 8,321 t | -19.5% |
| 2015 | 12,863 t | +54.6% |
| 2016 | 8,943 t | -30.5% |
| 2017 | 7,457 t | -16.6% |
| 2018 | 4,923 t | -34.0% |
| 2019 | 1,850 t | -62.4% |
| 2020 | 3,223 t | +74.3% |
| 2021 | 2,198 t | -31.8% |
| 2022 | 196.64 t | -91.1% |
| 2023 | 1,613 t | +720.3% |
Cuba compared with similar countries
- Cuba's 1,613 t is below the median for upper middle income countries, which is 3,962 t, 41% of the median. (51 countries reporting)
- Cuba's 1,613 t is below the median for Latin America & Caribbean, which is 3,404 t, 47% of the median. (32 countries reporting)
Biggest year-on-year movements
Years where Mineral fertilizers — Cropland phosphorus in Cuba changed far more than this series normally does. A large move can be a real event or a change in how the figure was measured — the source note below says who published it.
| Year | Change | From | To |
|---|---|---|---|
| 2023 | +720.3% | 196.64 t | 1,613 t |
| 2005 | +315.3% | 1,080 t | 4,486 t |
| 1995 | +207.7% | 5,668 t | 17,440 t |
Averages by decade
| Decade | Average | Lowest | Highest | Years |
|---|---|---|---|---|
| 1960s | 34,183 t | 17,222 t | 48,265 t | 9 |
| 1970s | 26,502 t | 20,841 t | 40,156 t | 10 |
| 1980s | 34,794 t | 31,479 t | 36,668 t | 10 |
| 1990s | 15,073 t | 5,668 t | 35,752 t | 10 |
| 2000s | 7,222 t | 1,080 t | 14,083 t | 10 |
| 2010s | 8,087 t | 1,850 t | 12,863 t | 10 |
| 2020s | 1,808 t | 196.64 t | 3,223 t | 4 |
Countries ranked near Cuba
- 116 Gabon 1,911 t compare
- 117 Eswatini 1,781 t compare
- 118 Madagascar 1,616 t compare
- 120 United Arab Emirates 1,607 t compare
- 121 Tajikistan 1,606 t compare
- 122 North Macedonia 1,502 t compare
More environment data for Cuba
- Historical exposure to drought — Land soil moisture anomaly -5.3 Percentage change (2025)
- Historical exposure to drought — Cropland soil moisture anomaly -5.17 Percentage change (2025)
- Standard Deviation, annual growth rate 0 % change on previous year (2025)
- Standard Deviation 0.278 °C (2025)
- Temperature change 1.4 °C (2025)
- Wood-based panels — Production, annual growth rate 0 % change on previous year (2024)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), annual 2.52 % change on previous year (2024)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), per unit 0 Mt CO2e per US$ of GDP (2020)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), per capita 0 Mt CO2e per person (2024)
- Methane (CH4) emissions from Agriculture (Mt CO2e), annual growth rate -1.97 % change on previous year (2024)
Frequently asked questions
- What is mineral fertilizers — cropland phosphorus in Cuba?
- Mineral fertilizers — cropland phosphorus in Cuba was 1,613 t in 2023, according to Food and Agriculture Organization of the United Nations.
- What is the highest mineral fertilizers — cropland phosphorus recorded in Cuba?
- The highest recorded value was 48,265 t in 1969.
- What is the lowest mineral fertilizers — cropland phosphorus recorded in Cuba?
- The lowest recorded value was 196.64 t in 2022.
- How does Cuba rank for mineral fertilizers — cropland phosphorus?
- Cuba ranks 119th out of 186 countries with data for 2023.
- Is mineral fertilizers — cropland phosphorus rising or falling in Cuba?
- Over the last ten years it is down 84.4%. The long-run trend across the full record is volatile.
- Where does this Cuba data come from?
- The figures come from Food and Agriculture Organization of the United Nations, published as part of Mineral fertilizers — Cropland phosphorus. Statizoid updates them automatically from the source API.
Download this data
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About this data
The Cropland Nutrient balance domain contains information on the flows of nitrogen, phosphorus, and potassium from mineral fertilizer, manure applied, atmospheric deposition, crop removal, and biological fixation over cropland and per unit area of cropland. The flows are aggregated to total inputs and total outputs, from which the overall nutrient balance and nutrient use efficiency on cropland are calculated. Statistics are disseminated in units of tonnes and in kg/ha, as appropriate. Nutrient use efficiency is expressed as a fraction (%).