• ISSN 1008-505X
  • CN 11-3996/S
张亦涛, 任天志, 刘宏斌, 雷秋良, 翟丽梅, 王洪媛, 刘申, 尹昌斌, 张继宗. 玉米追氮对玉米∥大豆间作体系产量和土壤硝态氮的影响及其后茬效应[J]. 植物营养与肥料学报, 2016, 22(1): 104-110. DOI: 10.11674/zwyf.14522
引用本文: 张亦涛, 任天志, 刘宏斌, 雷秋良, 翟丽梅, 王洪媛, 刘申, 尹昌斌, 张继宗. 玉米追氮对玉米∥大豆间作体系产量和土壤硝态氮的影响及其后茬效应[J]. 植物营养与肥料学报, 2016, 22(1): 104-110. DOI: 10.11674/zwyf.14522
ZHANG Yi-tao, REN Tian-zhi, LIU Hong-bin, LEI Qiu-liang, ZHAI Li-mei, WANG Hong-yuan, LIU Shen, YIN Chang-bin, ZHANG Ji-zong. Effect of topdressing nitrogen of intercropped maize strip on intercropped crop yields and soil nitrate nitrogen as well as its residual effect[J]. Journal of Plant Nutrition and Fertilizers, 2016, 22(1): 104-110. DOI: 10.11674/zwyf.14522
Citation: ZHANG Yi-tao, REN Tian-zhi, LIU Hong-bin, LEI Qiu-liang, ZHAI Li-mei, WANG Hong-yuan, LIU Shen, YIN Chang-bin, ZHANG Ji-zong. Effect of topdressing nitrogen of intercropped maize strip on intercropped crop yields and soil nitrate nitrogen as well as its residual effect[J]. Journal of Plant Nutrition and Fertilizers, 2016, 22(1): 104-110. DOI: 10.11674/zwyf.14522

玉米追氮对玉米∥大豆间作体系产量和土壤硝态氮的影响及其后茬效应

Effect of topdressing nitrogen of intercropped maize strip on intercropped crop yields and soil nitrate nitrogen as well as its residual effect

  • 摘要: 【目的】明确玉米条带不同追施氮量对间作作物产量、 吸氮量和土壤硝态氮动态变化的影响,并阐明间作系统不同施氮量的后茬农学效应和环境效应。【方法】玉米和大豆播种时均施用相同的基肥(其中氮肥用量为N 45 kg/hm2),根据大喇叭口期玉米条带追施氮量的不同(N 0、 75、 180 kg/hm2)设置三个处理(N0、 N75、 N180),并且大豆生育期间均不追施氮肥,然后实时监测玉米和大豆各个关键生育期的生物量和土壤硝态氮动态变化,并对比分析各处理的后茬冬小麦产量和土壤硝态氮残留量。【结果】随着玉米条带追施氮量的增加,玉米条带生物量、 产量和吸氮量均无显著变化,而且玉米追施氮量的多少对大豆生物量、 产量和吸氮量没有明显影响。间作种植系统土壤硝态氮含量受到追施氮量的影响,氮肥追施后,020 cm土壤硝态氮含量显著上升,但2040 cm土壤硝态氮含量变化不大。追施氮量越多,玉米条带和大豆条带的土壤硝态氮含量也越高,作物收获后土壤硝态氮残留量也越高,玉米条带追施N 180 kg/hm2的间作系统作物收获后土壤硝态氮含量高出其他两个处理12%~25%。此外,后茬作物冬小麦产量、 吸氮量并未随着前茬间作系统施氮量的增加而增加,但小麦收获后的0100 cm土壤硝态氮残留却随着前茬间作系统施氮量的增加而增大,相对仅施用基肥而不追施氮肥的间作系统,前茬间作系统追施氮肥导致后茬小麦收获后土壤(0100 cm)硝态氮残留量增加了22.38%~70.18%。【结论】针对玉米与大豆间作种植模式,只施用玉米基肥(其中氮肥用量为N 45 kg/hm2)而不追肥,或者在施用基肥的基础上,仅在玉米条带上追施少量氮肥(N 75 kg/hm2),不会影响间作体系产量,还可降低后茬小麦0100 cm土壤中的硝态氮残留。

     

    Abstract: 【Objective】 This paper aimed to clear effect of different topdressing nitrogen in maize strip on dynamic changes of crop yields and soil nitrate nitrogen, and to clarify residual effect of different nitrogen in intercropping systems on agronomy and environmental effect of sequent crops in winter. 【Methods】 For maize intercropped with soybean in summer, both maize and soybean were applied the same basal fertilizer (N 45 kg/hm2). Then all soybean strips had no topdressing, and different topdressing nitrogen amounts (N 0, 75 and 180 kg /hm2) were set in the maize strip forming three treatments (N0, N75 and N180). The dynamic changes of biomass and soil nitrate were monitored during key growth periods of maize and soybean, and comparative analysis was used to determine the residual effect of each treatment on wheat yield and soil nitrate accumulation after wheat harvest. 【Results】 The results show that the biomass, yield and nitrogen accumulation of maize are not significantly increased as the increase of topdressing nitrogen of maize strip, and the amounts of topdressing nitrogen have no effects on soybean biomass, yield and nitrogen accumulation. There is significant effect on soil nitrate N content, and after the topdressing nitrogen, the soil nitrate N content of 0-20 cm soil has a marked increase and the soil nitrate N content of 20-40 cm has little change. The more topdressing nitrogen, the higher soil nitrate N content of maize and soybean strips in every key growth period, and the soil nitrate N accumulation after the crop harvest is also high. In the intercropping system, the topdressing N 180 kg/hm2 increases the soil nitrate N accumulation by 12%-25% compared to the other two treatments. In addition, the yield and nitrogen accumulation of wheat are not increased with the increase of topdressing nitrogen of maize strip in summer, but the 0-100 cm soil nitrate accumulation after the wheat harvest is increased with the increase of topdressing nitrogen. Compared to the intercropping system with only basal fertilizer but no topdressing, the topdressing nitrogen increases the 0-100 cm soil nitrate accumulation after the wheat harvest by 22.38%-70.18%. 【Conclusions】 In the intercropping system, only basal nitrogen application (N 45 kg/hm2) in maize, or a small amount of topdressing nitrogen (N 75 kg/hm2) following with basal nitrogen application would also be feasible. With the N management, the total yield of intercroping system would not be impacted, and the residual NO-3-N content in 0-100 cm soil of following winter wheat would be low.

     

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