Field-specific potassium and phosphorus balances and fertilizer requirements for irrigated rice-based cropping systems

被引:6
作者
Roland J. Buresh
Mirasol F. Pampolino
Christian Witt
机构
[1] International Rice Research Institute (IRRI),
[2] International Plant Nutrition Institute (IPNI),undefined
[3] Southeast Asia Program,undefined
来源
Plant and Soil | 2010年 / 335卷
关键词
Field-specific nutrient management; Nutrient balance; SSNM; Rice; Wheat; Maize;
D O I
暂无
中图分类号
学科分类号
摘要
Fertilizer K and P requirements for rice (Oryza sativa L.) can be determined with site-specific nutrient management (SSNM) using estimated target yield, nutrient balances, and yield gains from added nutrient. We used the QUEFTS (QUantitative Evaluation of the Fertility of Tropical Soils) model with >8000 plot-level observations to estimate the relationship between grain yield and nutrient accumulation in above-ground dry matter of irrigated rice with harvest index ≥ 0.4. Predicted reciprocal internal efficiencies (RIEs) at 60–70% of yield potential corresponded to plant accumulation of 14.6 kg N, 2.7 kg P, and 15.9 kg K per tonne of grain yield. These RIEs enable determination of plant requirements for K and P and net output of K and P in harvested grain and removed crop residues at a target yield. Yield gains for nutrient applied to irrigated rice averaged 12% for K and 9% for P for 525 to 531 observations. For fields without certain yield gain, fertilizer K and P requirements can be determined by a partial maintenance approach (i.e., fertilizer input < output in nutrient balance), which considers nutrient supply mediated through soil processes and balances trade-offs between financial loss with full maintenance rates and risk of excessive nutrient depletion without nutrient application. When yield gains to an added nutrient are certain, partial maintenance plus yield gain can be used to determine fertilizer requirements. The SSNM-based approach and algorithms enable rapid development of field-specific K and P management.
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页码:35 / 64
页数:29
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共 134 条
[21]  
Witt C(2009)Quantity-intensity relationships and potassium buffering capacity of four Ganges River floodplain soils Comm Soil Sci Plant Anal 40 1333-1349
[22]  
Dawe D(1986)Puddling influence on soil, rice development, and yield Soil Sci Soc Am J 49 1451-1457
[23]  
Abdulrachman S(2009)Correlation and calibration of soil potassium availability with rice yield and nutritional status Soil Sci Soc Am J 73 1192-1201
[24]  
Gines GC(2002)Potassium balance and release kinetics under continuous rice–wheat cropping system in Vertisol Field Crops Res 77 81-91
[25]  
Nagarajan R(1976)Increased P diffusion as an explanation of increased P availability in flooded rice soils Plant Soil 45 365-377
[26]  
Satawathananont S(2001)Phosphorus solubilization in rewetted soils Nature 411 258-138
[27]  
Son TT(1999)Internal nutrient efficiencies of irrigated lowland rice in tropical and subtropical Asia Field Crops Res 63 113-undefined
[28]  
Tan PS(undefined)undefined undefined undefined undefined-undefined
[29]  
Wang GH(undefined)undefined undefined undefined undefined-undefined
[30]  
Chien NV(undefined)undefined undefined undefined undefined-undefined