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有机肥对桃园土壤硝态氮分布的影响

王艳萍1;高吉喜2;刘尚华3;杜相革1   

  1. 1中国农业大学农学与生物技术学院, 北京 100094;2中国环境科学研究院生态环境研究所, 北京 100012;3内蒙古农业大学生态环境学院, 呼和浩特 010019
  • 收稿日期:2007-09-29 修回日期:1900-01-01 出版日期:2008-07-20 发布日期:2008-07-20

Effects of organic manure on the profile distribution of soil nitrate-N in a peach orchard.

WANG Yan-ping1;GAO Ji-xi2;LIU Shang-hua3;DU Xiang-ge1   

  1. 1College of Agronomy and Biotechnology, China Agricultural University,
    Beijing 100094, China;2Institute of Environmental Ecology, Chinese Resear
    ch Academy of Environmental Sciences, Beijing 100012, China;3College of Ecology and Environment, Inner Mongolia Agricultural University, Hohhot 010019, China
  • Received:2007-09-29 Revised:1900-01-01 Online:2008-07-20 Published:2008-07-20

摘要: 于2004—2005年在北京市平谷区有机桃园设置不同有机肥处理:2年连续施有机肥,年均67 500 kg·hm-2(T1);第一年不施肥,第二年施有机肥135 000 kg·hm-2(T2);第一年不施肥,第二年施有机肥67 500 kg·hm-2(T3);不施肥对照(CK),并于2006年对0~120 cm土层土壤进行取样分析,研究施用有机肥对土壤硝态氮分布和淋失的影响.结果表明:对照土壤中硝态氮分布较均匀,T1和T3在0~120 cm土层硝态氮浓度变化呈单峰曲线,其中60 cm以上较高,在60~120 cm逐渐降低;而T2土壤硝态氮浓度由浅到深逐渐增加,峰值出现在100~120 cm土层,其在60 cm以下土层的硝态氮浓度在所有处理中最高,说明过量施用有机肥易导致硝态氮的淋失.相关分析表明,土壤硝态氮的浓度和分布与多年施氮总量、最近一年施氮量和检测点与树的距离呈显著相关关系,并据此建立了有机肥施用与土壤剖面硝态氮浓度之间的相关模型.

关键词: 茶籽粕, EDTA, 甘蔗, 镍, 锌, 积累

Abstract: In 2004 and 2005, a field experiment was conducted in a peach orchard in Pinggu District of Beijing to study the effects of organic manure on the profile distribution of nitrateN in soil. Four treatments were installed, i.e., applying 6.75×104 kg·hm-2 of organic manure both in 2004 and in 2005 (T1), no fertilization in 2004 but applying 13.5×104 kg·hm-2 of organic manure in 2005 (T2), no fertilization in 2004 but applying 6.75×104 kg·hm-2 of organic manure in 2005 (CK), and no fertilization both in 2004 and in 2005 (CK). In 2006, soil samples at the depth of 0-120 cm were collected from the treatments and analyzed. The results showed that soil nitrate-N had a relatively uniform distribution in the profile in CK, accumulated more at the depth of 0-60 cm and decreased gradually at 60-120 cm in T1 and T3, and increased with increasing depth, with the peak at the depth of 100-120 cm in T2. The soil nitrate-N content below 60 cm in T2 was the highest among all the treatments, indicating that applying excessive amount of organic manure could induce nitrate-N leaching. The profile distribution of soil nitrate-N had significant correlations with the total amount of applied organic manure, the amount of organic manure applied in the nearest year, and the distance of sampling sites from peach tree. A correlation model of organic manure treatments and soil nitrate-N distribution was established.

Key words: tea seed meal, EDTA, sugarcane, Ni, Zn, accumulation.