中国农业科技导报 ›› 2023, Vol. 25 ›› Issue (6): 181-189.DOI: 10.13304/j.nykjdb.2021.0990

• 生物制造 资源生态 • 上一篇    

氮肥减施下添加硝化抑制剂对夏玉米氮素累积转运和产量的影响

张盼盼(), 李川, 张美微, 赵霞, 牛军, 乔江方()   

  1. 河南省农业科学院粮食作物研究所,郑州 450002
  • 收稿日期:2021-11-20 接受日期:2022-04-12 出版日期:2023-06-01 发布日期:2023-07-28
  • 通讯作者: 乔江方
  • 作者简介:张盼盼 E-mail:zhangpan1602@163.com
  • 基金资助:
    河南省农业科学院优秀青年科技基金项目(2022YQ03);河南省自然科学基金青年科学基金项目(202300410526)

Effect of Nitrification Inhibitor Application on Nitrogen Accumulation and Transportation and Grain Yield of Summer Maize Under Reduced Nitrogen

Panpan ZHANG(), Chuan LI, Meiwei ZHANG, Xia ZHAO, Jun NIU, Jiangfang QIAO()   

  1. Cereal Crops Institute,Henan Academy of Agricultural Sciences,Zhengzhou 450002,China
  • Received:2021-11-20 Accepted:2022-04-12 Online:2023-06-01 Published:2023-07-28
  • Contact: Jiangfang QIAO

摘要:

为明确硝化抑制剂对夏玉米氮素高效利用的影响,通过连续2年田间试验研究不同氮肥减施水平下添加硝化抑制剂(2-氯-6-三氯甲基吡啶)对夏玉米产量和氮素累积转运及利用的影响。结果表明,氮肥减施20%并添加硝化抑制剂不影响玉米植株各器官及总干物质的累积量,各器官的氮素累积量及植株的总氮吸收量未出现下降趋势,其产量与正常施氮处理无显著差异。随着施氮量的增加,玉米植株的氮素转运量呈先增后降趋势,其中减氮20%配施硝化抑制剂处理的氮素转运量和转运率均最高,分别为62.41 kg·hm-2和44.54%,对籽粒氮素贡献率达33.96%。氮肥偏生产力随施氮量的增加而下降,平均为58.94 kg·kg-1;每生产100 kg籽粒平均需吸收纯氮1.96 kg,以减氮10%处理最高。综合玉米产量、氮素转运累积和利用等因素,在常规施氮的基础上氮肥减施20%,并配施硝化抑制剂2-氯-6-三氯甲基吡啶,既能够保证玉米高产、稳产,又能够促进农田生态系统中氮素的高效利用,达到节本增效的目的。

关键词: 夏玉米, 硝化抑制剂, 氮素累积, 氮素转运, 产量

Abstract:

To clarify the effects of nitrification inhibitor on nitrogen high-utilization in the summer maize production, two-year field experiments were conducted to determine the effects of nitrification inhibitor (2-chloro-6-trichloromethylpyridine, CP) application on grain yield and nitrogen accumulation and transportation and utilization of summer maize under reduced nitrogen (N) treatments in Henan province. The results showed that, compared with the normal N fertilization treatment, N reduced by 20% with CP had no effect on the each organ of plant and total dry matter accumulation, as well as N absorption and accumulation. There was no difference in grain yield between treatments and normal application. With N application increased, the amount of N transportation in the plant showed first increased and then decreased. The treatment of N reduced by 20% with CP had the highest N transportation amount and transportation rate with 62.41 kg·hm-2 and 44.54%, respectively, and the contribution rate to grain was 33.96%. The nitrogen partial factor productivity (NPFP) decreased with N application increased with the average 58.94 kg·kg-1. Amount of pure N absorbed per 100 kg grain was averagely 1.96 kg and highest value was obtained in treatment of N reduced by 10%. Based on the grain yield, N transportation and accumulation and utilization, the application of N reduced by 20% with CP could maintain the high and stable yield, promote N use efficiency, and reduce cost and increase efficiency in maize production.

Key words: summer maize, nitrification inhibitor, nitrogen accumulation, nitrogen transportation, yield

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