• ISSN 1008-505X
  • CN 11-3996/S
何萍, 金继运, 林葆, 王秀芳, 张宽. 不同氮磷钾用量下春玉米生物产量及其组分动态与养分吸收模式研究[J]. 植物营养与肥料学报, 1998, 4(2): 123-130. DOI: 10.11674/zwyf.1998.0204
引用本文: 何萍, 金继运, 林葆, 王秀芳, 张宽. 不同氮磷钾用量下春玉米生物产量及其组分动态与养分吸收模式研究[J]. 植物营养与肥料学报, 1998, 4(2): 123-130. DOI: 10.11674/zwyf.1998.0204
He Ping, Jin Jiyun, Lin Bao Wang Xiufang, Zhang Kuan, . DYNAMICS OF BIOMASS AND ITS COMPONENTS AND MODELS OF NUTRIENTS ABSORPTION BY SPRING MAIZE UNDER DIFFERENT NITROGEN,PHOSPHOROUS AND POTASSIUM APPLICATION RATES[J]. Journal of Plant Nutrition and Fertilizers, 1998, 4(2): 123-130. DOI: 10.11674/zwyf.1998.0204
Citation: He Ping, Jin Jiyun, Lin Bao Wang Xiufang, Zhang Kuan, . DYNAMICS OF BIOMASS AND ITS COMPONENTS AND MODELS OF NUTRIENTS ABSORPTION BY SPRING MAIZE UNDER DIFFERENT NITROGEN,PHOSPHOROUS AND POTASSIUM APPLICATION RATES[J]. Journal of Plant Nutrition and Fertilizers, 1998, 4(2): 123-130. DOI: 10.11674/zwyf.1998.0204

不同氮磷钾用量下春玉米生物产量及其组分动态与养分吸收模式研究

DYNAMICS OF BIOMASS AND ITS COMPONENTS AND MODELS OF NUTRIENTS ABSORPTION BY SPRING MAIZE UNDER DIFFERENT NITROGEN,PHOSPHOROUS AND POTASSIUM APPLICATION RATES

  • 摘要: 采用田间小区试验方法研究了不同氮磷钾用量下春玉米生物产量及组分干重动态与养分吸收动态及模式。结果表明,不同氮磷钾用量下春玉米总生物量及粒重的增长均符合Logistic方程;营养体干重随时间的变化符合回归方程Y=axebx;生物产量依子粒产量和营养体干重变化符合回归方程Y=exp(a+b1x1b2x2)。适宜的氮磷钾配比及施肥技术可促进玉米植株生有前期总生物量的积累以及生育后期干物质从营养体向千粒的转移,从而获得较高的产量。不同肥料用量下春玉米氮磷钾绝对量的积累均符合Logistic方程,肥料用量可明显影响到玉米养分吸收最大速率及其出现日期。用量适宜可获得较高的养分吸收最大速率,且其最大速率出现日期相对较早;每生产100kg玉米子粒,适宜氮(N)、磷(P)、钾(K)的吸收量分别为1.557~1.602,0.419~0.427和0.973~1.025kg。植株养分吸收适宜比例N:P:K为1:0.27:0.62~O.64。

     

    Abstract: A field experiment was conducted to analyse the dynamics of biomass yieldand its components(grain and vegetative yield and N,P and K absorption by springmaize under dlfferent N,P and K application rates. The results indicated that thedynamic biomass yield and grain weight could be described by Logistic curve equation,and that of vegetative yield by regression equation Y=axebx. Biomass yieldY was afunctlon of grain yield x1 and vegetative yieldx2, as described by regression equationof Y=exp(a+b1x1b2x2. The increasing duration and increasing rate of biomass yield andgrain weight, and the increasing duration of vegetative yield and its decreasing ratewere obviously influenced by different N,P and K application rates. Rational ratio ofNPK and their appropriate application methods not only accelerate the accumulation oftotal biomass in earlier growth stage, but also stimulated the rapid transformation ofvegetative dry matter to grain in later growth stage, resulting in high yields. Theaccumulation of N,P and K in spring maize under different NPK application rates couldbe described by Logistic curve equation. The highest nutrients absorption rates(HAR) andthe time of HAR in maize were obviously influenced by different NPK application rates.High HAR and an earlier time of HAR could be achieved with proper NPK applicationrates. The amount of N, P and K absorbed by maize plants for the production of 100 kgmaize grain were 1. 557~1. 602kg, 0. 419~0. 427kg and 0. 973~ 1. 025kg. respectively.with a ratio of N:P:K 1: 0. 27: 0. 62~0. 64.

     

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