Roots, tubers, plantains and their products — Carbohydrate in Hungary

Hungary: Roots, tubers, plantains and their products — Carbohydrate was 13.7 g/cap/d in 2023. ▼ Falling

Latest (2023)
13.7 g/cap/d
Change on year
down 0.7%
World rank
125th
of 163 countries
All-time high
22.5 g/cap/d
in 2011
All-time low
13.7 g/cap/d
in 2023
Years of data
14
2010–2023

Roots, tubers, plantains and their products — Carbohydrate in Hungary, 2010–2023

05101520252010201620232010: 16.1 g/cap/d2011: 22.5 g/cap/d2012: 20.1 g/cap/d2013: 18 g/cap/d2014: 18.3 g/cap/d2015: 18.9 g/cap/d2016: 19.3 g/cap/d2017: 18.2 g/cap/d2018: 14.3 g/cap/d2019: 16.3 g/cap/d2020: 14.3 g/cap/d2021: 13.9 g/cap/d2022: 13.8 g/cap/d2023: 13.7 g/cap/d

Source: Food and Agriculture Organization of the United Nations. Measured in g/cap/d.

Analysis

The most recent figure for roots, tubers, plantains and their products — carbohydrate in Hungary is 13.7 g/cap/d, measured in 2023. That is the lowest value across all 14 years on record.

The figure is down 0.7% on the previous year and down 23.9% over ten years.

Over the whole period, roots, tubers, plantains and their products — carbohydrate in Hungary peaked at 22.5 g/cap/d in 2011 and was at its lowest, 13.7 g/cap/d, in 2023.

That places Hungary 125th out of 163 countries with data for 2023, putting it in the bottom quarter.

The long-run direction has been consistently falling across the 14 years of available data.

Roots, tubers, plantains and their products — Carbohydrate in Hungary, year by year

Annual values for Roots, tubers, plantains and their products — Carbohydrate (available) supply — Value in Hungary, 2010 to 2023.
Year g/cap/d Change
2010 16.1 g/cap/d
2011 22.5 g/cap/d +39.8%
2012 20.1 g/cap/d -10.7%
2013 18 g/cap/d -10.4%
2014 18.3 g/cap/d +1.7%
2015 18.9 g/cap/d +3.3%
2016 19.3 g/cap/d +2.1%
2017 18.2 g/cap/d -5.7%
2018 14.3 g/cap/d -21.4%
2019 16.3 g/cap/d +14.0%
2020 14.3 g/cap/d -12.3%
2021 13.9 g/cap/d -2.8%
2022 13.8 g/cap/d -0.7%
2023 13.7 g/cap/d -0.7%

Averages by decade

DecadeAverage LowestHighest Years
2010s 18.2 g/cap/d 14.3 g/cap/d 22.5 g/cap/d 10
2020s 13.93 g/cap/d 13.7 g/cap/d 14.3 g/cap/d 4

Countries ranked near Hungary

  1. 122 Seychelles 14 g/cap/d compare
  2. 123 Israel 13.9 g/cap/d compare
  3. 124 Saudi Arabia 13.8 g/cap/d compare
  4. 125 Luxembourg 13.7 g/cap/d compare
  5. 127 Kuwait 13.1 g/cap/d compare
  6. 128 India 13 g/cap/d compare

See the full ranking of 179 places →

More agriculture & rural data for Hungary

All data for Hungary →

Frequently asked questions

What is roots, tubers, plantains and their products — carbohydrate in Hungary?
Roots, tubers, plantains and their products — carbohydrate in Hungary was 13.7 g/cap/d in 2023, according to Food and Agriculture Organization of the United Nations.
What is the highest roots, tubers, plantains and their products — carbohydrate recorded in Hungary?
The highest recorded value was 22.5 g/cap/d in 2011.
What is the lowest roots, tubers, plantains and their products — carbohydrate recorded in Hungary?
The lowest recorded value was 13.7 g/cap/d in 2023.
How does Hungary rank for roots, tubers, plantains and their products — carbohydrate?
Hungary ranks 125th out of 163 countries with data for 2023.
Is roots, tubers, plantains and their products — carbohydrate rising or falling in Hungary?
Over the last ten years it is down 23.9%. The long-run trend across the full record is falling.
Where does this Hungary data come from?
The figures come from Food and Agriculture Organization of the United Nations, published as part of Roots, tubers, plantains and their products — Carbohydrate (available) supply — Value. Statizoid updates them automatically from the source API.

Download this data

CSV · JSON — 14 observations, free to reuse under CC BY-NC-SA 3.0 IGO (FAO).

Share, cite or embed this page

Cite this page

Roots, tubers, plantains and their products — Carbohydrate in Hungary. Statizoid, drawing on Food and Agriculture Organization of the United Nations. Retrieved 11 September 2026, from https://agriculture.statizoid.com/stat/roots-tubers-plantains-and-their-products-carbohydrate-available-supply-value/hungary/

Embed or link this data

Paste this into a page to link back to these figures. The data itself is free to reuse under CC BY-NC-SA 3.0 IGO (FAO); please keep the attribution.

<a href="https://agriculture.statizoid.com/stat/roots-tubers-plantains-and-their-products-carbohydrate-available-supply-value/hungary/">Roots, tubers, plantains and their products — Carbohydrate in Hungary</a> — Statizoid

About this data

Indicator
Roots, tubers, plantains and their products — Carbohydrate (available) supply — Value
Unit
g/cap/d
Source
Food and Agriculture Organization of the United Nations
Licence
CC BY-NC-SA 3.0 IGO (FAO)
Coverage
179 places, 2,425 data points, 2010–2023
Last refreshed

The dataset presents average daily per capita macro and micro nutrient availability by country and by FAO/WHO GIFT food groups (that are different from those used for the Food Balance Sheets), expressed in grams/milligrams/micrograms/kcal per capita per day. The population numbers used to calculate these statistics can be found in the Supply Utilization Accounts (SUA) dataset of FAOSTAT, as Total Population. Food availability quantities are derived from the SUA dataset. SUAs present a comprehensive picture of the pattern of a country's food supply and utilization during a specified reference period. The SUA shows for each food item - i.e. each primary commodity and a number of processed commodities potentially available for human consumption - the sources of supply and its utilization. The total quantity of foodstuffs produced in a country added to the total quantity imported and adjusted to any change in stocks that may have occurred since the beginning of the reference period gives the supply available during that period. On the utilization side a distinction is made between the quantities exported, fed to livestock, used for seed, put to manufacture for food use and non-food uses, losses during storage and transportation, and food supplies available for human consumption. The per capita supply of each such food item available for human consumption is then obtained by dividing the respective quantity by the related data on the population actually partaking of it.