Kiribati vs Luxembourg: Outputs — Cropland phosphorus

Kiribati
509.62 t
in 2023
Luxembourg
608.37 t
in 2023
Kiribati rank
163rd
Luxembourg rank
160th

Outputs — Cropland phosphorus over time

  • Kiribati
  • Luxembourg
200400600800196119922023

How they compare

Luxembourg currently reports 608.37 t against 509.62 t in Kiribati, a difference of 98.75 t.

That makes Luxembourg's figure about 1.2 times Kiribati's.

The two have swapped places 2 times across 24 shared years of data; in 2000 it was Luxembourg ahead.

Kiribati ranks 163rd and Luxembourg ranks 160th of 201 countries.

Luxembourg has averaged higher in every one of the 3 decades both report.

Head to head by decade

Decade Kiribati Luxembourg Difference Ahead
2000s 350.79 t 735.7 t 384.91 t Luxembourg
2010s 500.68 t 696.55 t 195.87 t Luxembourg
2020s 484.58 t 626.31 t 141.73 t Luxembourg

Averages of every year both report within each decade.

Frequently asked questions

Which has higher outputs — cropland phosphorus, Kiribati or Luxembourg?
Luxembourg, at 608.37 t against 509.62 t in Kiribati as of 2023.
What is the difference in outputs — cropland phosphorus between Kiribati and Luxembourg?
98.75 t, with Luxembourg ahead.
How many years of comparable data are there for Kiribati and Luxembourg?
24 years are reported by both, from 2000 to 2023.
How do Kiribati and Luxembourg rank globally for outputs — cropland phosphorus?
Kiribati ranks 163rd and Luxembourg ranks 160th of 201 countries.
Where does this data come from?
Food and Agriculture Organization of the United Nations, published as Outputs — Cropland phosphorus. Statizoid refreshes it automatically from the source and publishes the full history for both places.

Individual pages

About this data

Indicator
Outputs — Cropland phosphorus
Unit
t
Source
Food and Agriculture Organization of the United Nations
Licence
CC BY-NC-SA 3.0 IGO (FAO)
Coverage
233 places, 13,500 data points, 1961–2023
Last refreshed

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 (%).