Cambodia - Land under cereal production (hectares)

The value for Land under cereal production (hectares) in Cambodia was 3,105,119 as of 2018. As the graph below shows, over the past 57 years this indicator reached a maximum value of 3,222,987 in 2012 and a minimum value of 615,000 in 1974.

Definition: Land under cereal production refers to harvested area, although some countries report only sown or cultivated area. Cereals include wheat, rice, maize, barley, oats, rye, millet, sorghum, buckwheat, and mixed grains. Production data on cereals relate to crops harvested for dry grain only. Cereal crops harvested for hay or harvested green for food, feed, or silage and those used for grazing are excluded.

Source: Food and Agriculture Organization, electronic files and web site.

See also:

Year Value
1961 2,270,080
1962 2,387,069
1963 2,348,000
1964 2,504,000
1965 2,480,500
1966 2,270,900
1967 2,137,000
1968 2,437,100
1969 2,046,200
1970 2,485,200
1971 1,974,200
1972 1,455,200
1973 873,600
1974 615,000
1975 955,000
1976 1,055,000
1977 1,062,000
1978 1,065,000
1979 849,000
1980 1,541,000
1981 1,402,000
1982 1,676,000
1983 1,661,000
1984 1,021,000
1985 1,496,000
1986 1,563,000
1987 1,410,000
1988 1,875,000
1989 1,910,000
1990 1,900,000
1991 1,769,000
1992 1,733,400
1993 1,866,538
1994 1,531,600
1995 1,969,035
1996 1,925,988
1997 1,962,827
1998 2,002,423
1999 2,139,181
2000 1,960,563
2001 2,047,508
2002 2,066,239
2003 2,325,989
2004 2,186,354
2005 2,484,980
2006 2,621,712
2007 2,708,000
2008 2,776,469
2009 2,895,890
2010 2,990,507
2011 3,142,786
2012 3,222,987
2013 3,170,737
2014 3,015,045
2015 2,873,524
2016 3,062,158
2017 3,122,866
2018 3,105,119

Development Relevance: The cultivation of cereals varies widely in different countries and depends partly upon the development of the economy. Production depends on the nature of the soil, the amount of rainfall, irrigation, quality od seeds, and the techniques applied to promote growth. In developed countries, cereal crops are universally machine-harvested, typically using a combine harvester, which cuts, threshes, and winnows the grain during a single pass across the field. In many industrialized countries, particularly in the United States and Canada, farmers commonly deliver their newly harvested grain to a grain elevator or a storage facility that consolidates the crops of many farmers. In developing countries, a variety of harvesting methods are used in cereal cultivation, depending on the cost of labor, from small combines to hand tools such as the scythe or cradle. Crop production systems have evolved rapidly over the past century and have resulted in significantly increased crop yields, but have also created undesirable environmental side-effects such as soil degradation and erosion, pollution from chemical fertilizers and agrochemicals and a loss of bio-diversity. Factors such as the green revolution, has led to impressive progress in increasing cereals yields over the last few decades. This progress, however, is not equal across all regions. Continued progress depends on maintaining agricultural research and education. The cultivation of cereals varies widely in different countries and depends partly upon the development of the economy. Production depends on the nature of the soil, the amount of rainfall, irrigation, quality of seeds, and the techniques applied to promote growth. Agriculture is still a major sector in many economies, and agricultural activities provide developing countries with food and revenue. But agricultural activities also can degrade natural resources. Poor farming practices can cause soil erosion and loss of soil fertility. Efforts to increase productivity by using chemical fertilizers, pesticides, and intensive irrigation have environmental costs and health impacts. Salinization of irrigated land diminishes soil fertility. Thus, inappropriate use of inputs for agricultural production has far-reaching effects. There is no single correct mix of inputs to the agricultural land, as it is dependent on local climate, land quality, and economic development; appropriate levels and application rates vary by country and over time and depend on the type of crops, the climate and soils, and the production process used.

Limitations and Exceptions: The data are collected by the Food and Agriculture Organization of the United Nations (FAO) through annual questionnaires. They are supplemented with information from official secondary data sources. The secondary sources cover official country data from websites of national ministries, national publications and related country data reported by various international organizations. The FAO tries to impose standard definitions and reporting methods, but complete consistency across countries and over time is not possible. Thus, data on agricultural land in different climates may not be comparable. For example, permanent pastures are quite different in nature and intensity in African countries and dry Middle Eastern countries. Data on agricultural land are valuable for conducting studies on a various perspectives concerning agricultural production, food security and for deriving cropping intensity among others uses.

Statistical Concept and Methodology: Cereals production includes wheat, rice, maize, barley, oats, rye, millet, sorghum, buckwheat, and mixed grains. Production data on cereals relate to crops harvested for dry grain only. Cereal crops harvested for hay or harvested green for food, feed, or silage and those used for grazing are excluded. A cereal is a grass cultivated for the edible components of their grain, composed of the endosperm, germ, and bran. Cereal grains are grown in greater quantities and provide more food energy worldwide than any other type of crop; cereal crops therefore can also be called staple crops.

Aggregation method: Sum

Periodicity: Annual

Classification

Topic: Environment Indicators

Sub-Topic: Agricultural production