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作 者:张秀芝[1,2] 易琼[2] 朱平[1] 何萍[2] 杨利[3] 范先鹏[3] 熊桂云[3]
机构地区:[1]吉林省农业科学院农业环境与资源研究中心,吉林长春130033 [2]农业部作物营养与施肥重点开放实验室,中国农业科学院农业资源与农业区划研究所,北京100081 [3]湖北省农业科学院植保土肥研究所,湖北武汉430064
出 处:《植物营养与肥料学报》2011年第4期782-788,共7页Journal of Plant Nutrition and Fertilizers
基 金:国家重点基础研究发展计划课题(2007CB109306);国家科技支撑计划课题(2006BAD02A14)资助
摘 要:通过田间试验,以不同氮肥量级为参照,结合关键生育期叶片叶绿素含量(SPAD值)指导氮肥施用,以探明潜江地区水稻关键生育期的氮肥适宜用量。结果表明,在施N 90~180 kg/hm2之间水稻产量差异不显著,当超过N 180 kg/hm2,产量降低。根据水稻产量(y)和施氮量(x)拟合得出一元二次关系式:y=-0.0728x2+22.335x+6811.5,R2=0.9442。结合当年水稻价格,肥料投入费用等计算出水稻的经济效益(y)和施氮量(x)之间的函数式:y=-0.134x2+37.097x+12533-M,R2=0.9331;由此得出经济效益最大时水稻的施氮量是N 138 kg/hm2。该施氮量下水稻的氮肥表观利用率、农学利用率和氮肥偏生产力可保持在40.9%、11.5 kg/kg和63.2 kg/kg,与完全依据SPAD值指导关键生育期的氮肥施用量相近似(N 140 kg/hm2),保证了水稻最大的经济效益,同时也保持了较高的氮肥利用率,降低氮素表观损失。Field experiments were conducted to explore the optimum N application rate based on agronomic responses to different N application rates,and the leaf SPAD values at the critical growth stages were measured for guiding the N management practices in the Qianjiang region.The results indicate that there are no significant differences in grain yield when N application rates range from 90 to 180 kg/ha,while grain yield is decreased when N rate is over 180 kg/ha.The equation between grain yield of rice and N application rate is established: y=-0.0728x2+22.335x+6811.5,R2=0.9442.Then the economic optimum nitrogen rate(EONR),138 kg/ha,is evaluated in the study area by the equation between economic benefit of rice and N application rate(y=-0.134x2+37.097x+12533-M,R2=0.9331) based on the input of N fertilizer and output of grain yield,and the N recovery efficiency,agronomic efficiency and N partial factor productivity are 40.9%,11.5 kg/kg and 63.2 kg/kg,respectively.The produced N application rate(140 kg/ha) guided by SPAD values at the critical growth stages is matched perfectly with EONR under the maximum economic benefit,higher nitrogen use efficiency and low nitrogen apparent loss.
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