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提高高产玉米氮素利用效率的根层氮素管理技术
作者姓名:MENG Qing-Feng  CHEN Xin-Ping  ZHANG Fu-Suo  CAO Ming-Hui  CUI Zhen-Ling  BAI Jin-Shun  YUE Shan-Chao  CHEN Su-Yi  T. M&#;LLER
作者单位:Fertilization with Soil Chemistry (340i),Institute of Crop Science,Universitt Hohenheim,Stuttgart 70593 (Germany)
基金项目:Supported by the National Basic Research Program (973 Program) of China (No. 2009CB118606);the Special Fund for Agriculture Profession of China (No. 200803030);the National Key Technologies Research and Development Program of China during the 11th Five-Year Plan Period (No. 2006BAD25B02)
摘    要:Many recently developed N management strategies have been extremely successful in improving N use efficiency.How-ever,attempts to further increase grain yields have had limited success.Field experiments were conducted in 2007 and 2008 at four sites to evaluate the effect of an in-season root-zone N management strategy on maize (Zea mays L.).According to the in-season root-zone N management,the optimal N rate (ONR) was determined by subtracting measured soil mineral N (NH + 4--N and NO 3--N) in the root zone from N target values.Other treatments included a control without N fertilization,70% of ONR,130% of ONR,and recommended N rate (RNR) by agronomists in China that have been shown to approach maize yield potentials.Although apparent N recovery for the ONR treatment was significantly higher than that under RNR in 2007,grain yield declined from 13.3 to 11.0 Mg ha 1 because of an underestimation of N uptake.In 2008,N target values were adjusted to match crop uptake,and N fertilization rates were reduced from 450 kg N ha-1 for RNR to 225 to 265 kg N ha-1 for ONR.High maize yields were maintained at 12.6 to 13.5 Mg ha 1,which were twice the yield from typical farmers’ practice.As a result,apparent N recovery increased from 29% to 66%,and estimated N losses decreased significantly for the ONR treatment compared to the RNR treatment.In conclusion,the in-season root-zone N management approach was able to achieve high yields,high NUE and low N losses.

关 键 词:apparent  N  recovery  environmental  pollution  N  losses  optimal  N  rate  soil  N  supply
收稿时间:25 August 2011

In-season root-zone nitrogen management strategies for improving nitrogen use efficiency in high-yielding maize production in China
MENG Qing-Feng,CHEN Xin-Ping,ZHANG Fu-Suo,CAO Ming-Hui,CUI Zhen-Ling,BAI Jin-Shun,YUE Shan-Chao,CHEN Su-Yi,T. M&#;LLER.In-season root-zone nitrogen management strategies for improving nitrogen use efficiency in high-yielding maize production in China[J].Pedosphere,2012,22(3):294-303.
Authors:MENG Qing-Feng  CHEN Xin-Ping  ZHANG Fu-Suo  CAO Ming-Hui  CUI Zhen-Ling  BAI Jin-Shun  YUE Shan-Chao  CHEN Su-Yi and T M&#;LLER
Institution:MENG Qing-Feng 1,CHEN Xin-Ping 1,ZHANG Fu-Suo 1,CAO Ming-Hui 1,CUI Zhen-Ling 1,2,BAI Jin-Shun 1,YUE Shan-Chao 1,CHEN Su-Yi 2 and T.MLLER 2 1 Center for Resources,Environment and Food Security,China Agricultural University,Beijing 100193 (China) 2 Fertilization with Soil Chemistry (340i),Institute of Crop Science,Universitt Hohenheim,Stuttgart 70593 (Germany)
Abstract:Many recently developed N management strategies have been extremely successful in improving N use efficiency.How-ever,attempts to further increase grain yields have had limited success.Field experiments were conducted in 2007 and 2008 at four sites to evaluate the effect of an in-season root-zone N management strategy on maize (Zea mays L.).According to the in-season root-zone N management,the optimal N rate (ONR) was determined by subtracting measured soil mineral N (NH + 4--N and NO 3--N) in the root zone from N target values.Other treatments included a control without N fertilization,70% of ONR,130% of ONR,and recommended N rate (RNR) by agronomists in China that have been shown to approach maize yield potentials.Although apparent N recovery for the ONR treatment was significantly higher than that under RNR in 2007,grain yield declined from 13.3 to 11.0 Mg ha 1 because of an underestimation of N uptake.In 2008,N target values were adjusted to match crop uptake,and N fertilization rates were reduced from 450 kg N ha-1 for RNR to 225 to 265 kg N ha-1 for ONR.High maize yields were maintained at 12.6 to 13.5 Mg ha 1,which were twice the yield from typical farmers’ practice.As a result,apparent N recovery increased from 29% to 66%,and estimated N losses decreased significantly for the ONR treatment compared to the RNR treatment.In conclusion,the in-season root-zone N management approach was able to achieve high yields,high NUE and low N losses.
Keywords:apparent N recovery  environmental pollution  N losses  optimal N rate  soil N supply
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