Published June 2002 | Version v1
Report Open

Nutrient management for rice production

  • 1. Abdus Salam International Centre for Theoretical Physics, Trieste (Italy)
  • 2. Land, Water, Environment and Engineering Research Programme, ICAR Research Complex for Eastern Region, Patna (India)
  • 3. Water Technology Centre for Eastern Region (ICAR), Bhubaneswar (India)
  • 4. CRIJAF (ICAR), Barrackore, West Bengal (India)

Description

The nutrient removed by the crops far exceeds the amounts replenished through fertilizer, causing a much greater strain on the native soil reserves. The situation is further aggravated in countries like India, where sub-optimal fertilizer used by the farmers is a common phenomenon rather than an exception. The total consumption of nutrients of all crops in India, even though reached 15 million tons in 1997, remains much below the estimated nutrient removal of 25 million tons (Swarup and Goneshamurthy, 1998). The gap between nutrient removal supplied through fertilizer has widened further in 2000 to 34 million tons of plant nutrients from the soil against an estimated fertilizer availability of 18 million tons (Singh and Dwivedi, 1996). Nitrogen is the nutrient which limits the most the rice production worldwide. In Asia, where more than 90 percent of the world's rice is produced, about 60 percent of the N fertilizer consumed is used on rice (Stangel and De Dutta, 1985). Conjunctive use of organic material along with fertilizer has been proved an efficient source of nitrogen. Organic residue recycling is becoming an increasingly important aspect of environmentally sound sustainable agriculture. Returning residues like green manure to the soil is necessary for maintaining soil organic matter, which is important for favourable soil structure, soil water retention and soil microbial flora and fauna activities. Use of organic manures in conjunction or as an alternative to chemical fertilizer is receiving attention. Green manure, addition to some extent, helps not only in enhancing the yield but also in improving the physical and chemical nature of soils. The excessive application of chemical fertilizers made it imperative that a part of inorganic fertilizer may be substituted with the recycling of organic wastes. Organic manure has been recorded to enhance the efficiency and reduce the requirement of chemical fertilizers. Partial nitrogen substitution through organic manure recorded significant superiority in yield over farmer's practice (Singh and Gangwar, 2000). For sustainability in crop production, it is neither chemical fertilizer nor organic manures alone but their integrated use has been observed to be highly beneficial (Khan et al., 2001). Hence to maintain the sustainable productivity of rice, a set of experiments were carried out to study the effect of organic and inorganic sources on the productivity of rice. (author)

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Additional details

Publishing Information

Imprint Pagination
8 p.
Report number
IC/IR--2002/14

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
33047975
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
CULTIVATION; CULTIVATION TECHNIQUES; FERTILIZERS; MANURES; NUTRITION; ORGANIC MATTER; PRODUCTIVITY; RICE
Descriptors DEC
AGRICULTURAL WASTES; BIOLOGICAL MATERIALS; BIOLOGICAL WASTES; CEREALS; GRAMINEAE; LILIOPSIDA; MAGNOLIOPHYTA; MATERIALS; MATTER; ORGANIC WASTES; PLANTS; WASTES

Optional Information

Notes
7 refs, 3 tabs