中国农业科学 ›› 2019, Vol. 52 ›› Issue (20): 3573-3584.doi: 10.3864/j.issn.0578-1752.2019.20.008

• 专题:东北春玉米高产与养分高效 • 上一篇    下一篇

覆膜滴灌条件下基于玉米产量和土壤磷素平衡的 磷肥适用量研究

侯云鹏,王立春,李前,尹彩侠,秦裕波,王蒙,王永军(),孔丽丽()   

  1. 吉林省农业科学院农业资源与环境研究所/农业部东北植物营养与农业环境重点实验室,长春 130033
  • 收稿日期:2018-07-22 接受日期:2018-10-16 出版日期:2019-10-16 发布日期:2019-10-28
  • 通讯作者: 王永军,孔丽丽
  • 作者简介:侯云鹏,E-mail:exceedfhvfha@163.com。
  • 基金资助:
    国家重点研发计划(2018YFD0300200);国家重点研发计划(2017YFD0300604);吉林省农业科技创新工程自由创新项目(CXGC2018ZY013);国际植物营养研究所IPNI项目(BFDP-Jilin-2018)

Research on Optimum Phosphorus Fertilizer Rate Based on Maize Yield and Phosphorus Balance in Soil Under Film Mulched Drip Irrigation Conditions

YunPeng HOU,LiChun WANG,Qian LI,CaiXia YIN,YuBo QIN,Meng WANG,YongJun WANG(),LiLi KONG()   

  1. Institute of Agricultural Resources and Environment, Jilin Academy of Agricultural Sciences/Key Laboratory of Plant Nutrition and Agro-Environment in Northeast China, Ministry of Agriculture, Changchun 130033
  • Received:2018-07-22 Accepted:2018-10-16 Online:2019-10-16 Published:2019-10-28
  • Contact: YongJun WANG,LiLi KONG

摘要:

【目的】 针对东北半干旱区覆膜滴灌玉米生产中大量施磷导致的效率低与环境风险增大问题,通过3年定位试验,系统研究了覆膜滴灌条件下不同磷肥用量对玉米产量、磷肥利用效率和土壤供磷能力的影响,为该区域玉米磷肥合理施用提供科学依据。【方法】 于2015—2017年在吉林省半干旱玉米主产区(乾安县)布置定位田间试验。共设6个磷肥用量处理,分别为0(P0)、40 kg·hm -2(P40)、70 kg·hm -2(P70)、100 kg·hm -2(P100)、130 kg·hm -2(P130)和160 kg·hm -2(P160),测定指标包括玉米产量及其构成、成熟期植株磷含量和土壤有效磷含量,并计算作物吸磷量、磷肥利用效率和土壤-作物系统的磷素表观平衡状况。【结果】 施磷可显著提高玉米产量,增幅依次为6.2%—21.2%(2015年)、9.0%—20.6%(2016年)和12.9%—30.3%(2017年),3年平均增幅为9.2%—23.9%,增产的主要原因是施磷增加了穗粒数、百粒重和收获指数。玉米产量随磷肥用量的增加呈先升后降趋势,其中以P100处理玉米产量最高。磷素表观回收率和磷素偏生产力均随磷肥用量的增加而下降,磷素农学利用率随磷肥用量的增加先升后降。与不施磷肥相比,随磷肥用量和施磷年限的增加,0—40 cm土壤有效磷含量呈增加趋势,其中P100处理土壤有效磷含量与试验起始时土壤有效磷含量相近。连续种植3季玉米后,P0、P40和P70处理土壤磷素表观平衡值均表现为亏缺,亏缺量随磷肥用量的增加而下降;P100、P130和P160处理的土壤磷素表现为盈余,并随磷肥用量的增加而增加。将盈余率(x)与磷肥用量(y1)、土壤有效磷含量(y2)、磷肥利用效率(y3)分别进行拟合,当x=0时,磷肥用量为92.4 kg·hm -2,玉米产量为12 497 kg·hm -2,0—20 cm和20—40 cm土壤有效磷含量分别为34.6 和28.4 mg·kg -1,磷素表观回收率为24.1%,磷素农学利用率为21.9 kg·kg -1,磷素偏生产力为146.1 kg·kg -1;其结果与最高产量处理(P100)相对应的玉米产量、土壤有效磷含量和磷肥利用效率结果相近;以理论盈余率为0时施磷量的95%为置信区间,得出最佳施磷范围在88—97 kg·hm -2【结论】 本研究中磷肥用量88—97 kg·hm -2范围内不仅能获得玉米高产,还能维持土壤磷素平衡,可作为东北半干旱区覆膜滴灌条件下玉米高产与环境友好的磷肥管理参考依据。

关键词: 磷肥用量, 磷肥利用效率, 玉米产量, 有效磷含量, 磷素平衡

Abstract:

【Objective】 In order to improve phosphorus efficiency and reduce environmental risk due to a large number of phosphorus application under mulched drip irrigation in northeast semi-arid region for maize production, a 3-year field experiment was conducted to investigate the effects of different phosphorus application rates on maize yield, phosphorus utilization efficiency and soil phosphorus supply ability, so as to provide scientific references for rational phosphorus fertilizer application in this region. 【Method】 The field experiment was conducted in semi-arid maize production region of Jilin province (Qian'an county) from 2015 to 2017. Six treatments of phosphorus application rate (P2O) were designed in the field experiments, including 0 (P0), 40 kg·hm -2 (P40), 70 kg·hm -2 (P70), 100 kg·hm -2 (P100), 130 kg·hm -2 (P130) and 160 kg·hm -2 (P160), which were used for the calculation of phosphorus uptake, phosphorus utilization efficiencies and apparent phosphorus balance in the soil-crop system. The measurement indexes contained maize yield and its components, phosphorus content of plant at mature stage and soil available phosphorus concentration. 【Result】 The result showed that the maize yield with phosphorus application were significantly increased by 6.2%-21.2% (2015), 9.0%-20.6% (2016) and 12.9%-30.3% (2017) respectively, and increment by 9.2%-23.9% in average three years. The yield was enhanced by increasing grains per ear, 100-kernel weight and harvest index by applying phosphorus fertilizer. Maize yield increased at first and decreased later with increasing of phosphorus application rate, and the highest yield value was found under P100 treatment. Phosphorus recovery efficiency and partial productivity declined, however, phosphorus agronomic efficiency increased at first and decreased later with increasing of phosphorus application rate. Available phosphorus content in soil layer (0-40 cm) was improved with the increasing of phosphorus application rate and period compared with P0 treatment, and the content under P100 treatment was very close to its initialization value. The apparent phosphorus balance in soil was negative in the P0, P40 and P70 treatments after a three-year continuous maize-cropping, and the phosphorus deficient amount was decreased with the increment of phosphorus application rate. While the apparent phosphorus balance in soil was positive under the P100, P130 and P160 treatments, and phosphorus surplus amount was increasing with the increment of phosphorus application rate. When surplus rate was 0, phosphorus application rate, maize yield, available phosphorus content in 0-20 cm and 20-40 cm soil, phosphorus recovery efficiency, agronomic efficiency and partial productivity were 92.4 kg·hm -2, 12 497 kg·hm -2, 34.6 mg·kg -1, 28.4 mg·kg -1, 24.1%, 21.9 kg·kg -1 and 146.1 kg·kg -1, respectively, by simulating between phosphorus application rate (y1), soil available phosphorus content (y2), phosphorus utilization efficiency (y3) and surplus rate (x), respectively. These results were similar to maize yield, soil available phosphorus content and phosphorus utilization efficiency under the maximum yield under the P100 treatment. The optimum phosphorus application rate was at the range of 88-97 kg·hm -2 under 95% confidence levels, when theoretical surplus rate was 0. 【Conclusion】 The results suggested that the recommended phosphorus application rate was at the range of 88-97 kg·hm -2, which could not only ensure higher maize yield, but also keep soil phosphorus balance under this experimental conditions. The research provided phosphorus fertilizer management for both high-yielding maize production and friendly environment under mulched drip irrigation conditions in northeast semi-arid region of Jilin province.

Key words: phosphorus application rate, phosphorus utilization efficiency, maize yield, available phosphorus content, phosphorus balance