
植物营养与肥料学报2017,23(5):1207-1214 Journal of Plant Nutrition and Fertilizet
doi: 10.11674/zwyf.17046 http://www.plantnutrifert.org
腐植酸尿素对玉米产量及肥料氮去向的影响
张水勤,袁亮,李伟,林治安,李燕婷,胡树文,赵秉强*,李军"
(1农业部植物营养与肥料重点实验室,中国农业科学院农业资源与农业区划研究所,北京10081;
2中国农业大学资源与环境学院,北京100193)
摘要:【目的】研究腐植酸尿素对玉米干物质量、籽粒产量及肥料氮去向的影响,以期为传统尿素产品的提质增效及新型质植酸尿素肥料的研制提供理论与实践依据。【方法】以玉米品种郑单958为供试作物,以自制的腐植酸尿素为供试肥料,运用"N同位素示踪技术,开展土柱栽培试验,设置不施氮肥对照(CK)、普通尿素(U)和腐植酸尿素(HAU)3个处理,所有肥料均作为基肥一次性施入土柱0一30cm土层。玉米成熟后,采集植
株地上部样品进行考种,
分别测定玉米叶片、
墓杆、
日时,
度;分别采集(
数用
穗轴、籽粒的干物质量、氮素含量和"N丰 90cm土层的土壤样品,测定其氮素含量
【结果】各处理玉米植株地上部及各器官(苞叶除外)干物质量由低到高为CK
和N丰度。
各器官的干物质量占该植株地上部干物质总量的比例在不同处理下的差异均未达到显著性水平;与U处理相
比,HAU处理玉米地上部干物质量平均提高13.8%
明,不同处理玉米穗粒数差异显著(
;玉米籽粒产量构成的分析结果表
籽粒产量提高14.2%:
HAU处理玉米对氨素和肥料氮
而百粒重却无显著差异。同时,
的吸收量分别比U处理高0.989g和0.072g,提高了氮肥利用率4.8个百分点;各处理氮素和肥料氮在各器官
的分配均表现为包叶、
的65.7% 13.3%~
和5 劳究
不司施外理对
n)的残留量显著高于U处理
(015cm
籽粒总氮和肥料氮的吸收量分别占整个植株地上部总吸收量
技高来源分租
各器管所吸收的肥料氮仅占该器官氮素总吸收量的
处理肥料氮在施肥层低于U处理5.1个百分
点。【结论】供试条件下,施用腐植酸尿素能够增加玉米干物质量和籽粒产量,促进玉米对肥料氮的吸收,减
少肥料氮向下层土壤的淋溶,有利于土壤残留氮的进一步吸收利用,关键词:腐植酸尿素;玉米;产量;“"N标记技术;肥料氮去向
Effects ofhumic acid urea on maizeyield and the fate of fertilizer nitrogen ZHANG Shui-qin'2, YUAN Liang', LI Wei', LIN Zhi-an', Li Yan-ting', HU Shu-wen', ZHAO Bing-qiang, LI Jun
( J Key Laboratory of Plant Nutrition and Fertilizer, Ministry of Agriclture/Institafe of Agricaltaral Resources
and Regional Plamning, Chinese Academy of Agricultaral Sciences, Bejing J0008I, Chind,
2 College of Resources and Environmental Sciences, China Agricultaral University, Bejing J00193, China )
Abstract: [ Objectives ] In this study, effects of humic acid urea on maize dry biomass, grain yield, and the fate of fertilizer nitrogen were investigated. The result could provide a theoretical and practical basis for the prodection of humic acid fertilizer with better quality and higher efficiency. [ Methods J Zhengdan 958 was selected as the test maize cultivar, and the tested humic acid urea was synthesized in the laboratory . The experiment was carried out by using technique of the ''N-label and soil column culture. No nitrogen (CK), common urea (U) and humic acid urea (HAU) were included as treatments, and all fertilizer was applied into 030 cm soil layer as base fertilizer. After the harvest, the maize shoots were collected and divided into five parts: leaf, stem, bract, cob and grain. Then, the dry biomass, nitrogen contents and "N abundance in all parts of maize shoots were
收稿日期:2017-02-20
接受日期:2017-0604
基金项目:国家自然科学基金资助项目(31601827);“十三五”国家重点研发计划项目(2016YFD0200402);中央级公益性科研院所
专项资金资助项目(IARRP-2014-5)资助。
作者简介:张水勤(1988一),女,河南新密人,博土研究生,主要从事新型肥料研究。E-mail:shuiqin08@163.com
*通信作者E-mail:zhaobingqiang@caas.cn
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