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Evaluation and simulation of spatial variability of soil property effects on deep percolation and nitrate leaching within a large-scale field in arid Northwest China

机译:土壤性质效应空间变异性评价与仿真在中国干旱西北地区大型近渗流下硝酸盐浸出

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摘要

Variability of soil properties within large-scale fields not only exists in the horizontal domain, but also in the vertical direction, causing spatial variability in yield. Three yield zones were delineated based on measured yield in 2017and 2018 within a large field in northwest China. The Soil Water Heat Carbon Nitrogen Simulator (WHCNS) model was calibrated and used to simulate yield, nitrogen uptake (N_u), water use efficiency (WUE), fertilizer N (nitrogen) use efficiency (FNUE), deep percolation (DP), nitrate leaching (NL) and residual nitrate (RN) at each sampling point in different yield zones. Based on the simulations, there were significant differences in N_u, WUE, FNUE, DP, NL and RN in 0-100 cm and 100-160 cm soil layers among the three yield zones. DP, NL and RN in the layers were strongly determined by the interaction of zone and year (p < 0.05), thus yielding consistent patterns mainly determined by soil properties and meteorological factors. The modelled ranges of DP, NL, and RN (0-160 cm) were 25-119 mm, 15-94 kg ha~(-1) and 178-476 kg ha~(-1) respectively, across the field. Soil texture in the maize main root zone (0-100 cm) has a great influence on yield and N_u, and in the 100-160 cm layer upon DP and NL RN was abundant after harvest and should be taken into account to determine the nitrogen fertilization demand for the following crop. The study showed that the process of delineating zones can be based on historical yield, making it feasibly easier than mapping soil properties. In view of the fact that there were large losses of water and nitrogen with uniform irrigation and fertilization management, the effects of vertically variable soil properties should be considered in future precision agriculture research, to achieve higher economic benefits and utilization efficiency.
机译:在大规模场内的土壤性质的可变性不仅存在于水平域中,而且在垂直方向上存在,导致产量的空间变异性。基于2017年,2018年在西北地区的大型领域中,基于2017年的测量产量划定了三个屈服区。校准土壤水热碳氮模拟器(WHCN)模型,用于模拟产量,氮吸收(N_U),水使用效率(WUE),肥料N(氮气)使用效率(FNUE),深渗透(DP),硝酸盐在不同屈服区的每个采样点处浸出(NL)和残留硝酸盐(RN)。基于模拟,在三个屈服区中,N_U,WUE,FNUE,DP,NL和RN中的差异显着差异,在屈服区中的100-160厘米的土壤层。通过区域和年的相互作用强烈地确定层中的DP,Nl和RN(P <0.05),从而产生主要由土壤性质和气象因素决定的一致模式。 DP,NL和RN(0-160cm)的建模范围分别为25-119毫米,15-94千克HA〜(-1)和178-476千克HA〜(-1),横跨该领域。玉米主要根区(0-100cm)的土壤纹理对产量和N_U产生很大影响,并且在100-160cm层中,在收获后,NL rn大量,应考虑到确定氮气施肥对以下作物的需求。该研究表明,划定区的过程可以基于历史产量,使其比映射土壤性质更容易。鉴于具有均匀灌溉和施肥管理的水和氮损失,应在未来的精密农业研究中考虑垂直变性土壤性能的影响,实现更高的经济效益和利用效率。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第25期|139324.1-139324.13|共13页
  • 作者单位

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China;

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China;

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China;

    Department of Agricultural Research for Northern Sweden Swedish University of Agricultural Sciences Umea 90183 Sweden;

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China;

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China;

    Center for Agricultural Water Research in China China Agricultural University Beijing 100083 China Wuwei Experimental Station for Efficient Water Use in Agriculture Ministry of Agriculture and Rural Affairs Wuwei 733000 China College of Resources and Environmental Sciences Henan Agricultural University Zhengzhou 450002 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spatial variability of soil texture; Deep percolation; Nitrate leaching; Water use efficiency; Fertilizer N use efficiency; Residual nitrate;

    机译:土壤纹理的空间变异;深渗透;硝酸盐浸出;用水效率;肥料N使用效率;残留的硝酸盐;

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