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本文(桑干河流域典型粮果农田土壤水盐氮分布特征_李雅丽.pdf)为本站会员(哎呦****中)主动上传,蜗牛文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知蜗牛文库(发送邮件至admin@wnwk.com或直接QQ联系客服),我们立即给予删除!

桑干河流域典型粮果农田土壤水盐氮分布特征_李雅丽.pdf

1、节水灌溉Water Saving Irrigation桑干河流域典型粮果农田土壤水盐氮分布特征李雅丽1,2,张红娟1,2,刘孟竹3,徐利1,2,4,沈彦军3,裴宏伟1,2(1.河北建筑工程学院,河北 张家口 075000;2.河北省水质工程与水资源综合利用重点实验室,河北 张家口 075000;3.中国科学院遗传与发育生物学研究所农业资源研究中心,石家庄 050021;4.河北工程大学,河北 邯郸 056038)摘 要:桑干河流域是建设首都水源涵养功能区和生态环境支撑区的主要流域,针对目前流域内面源污染和土壤退化等生态问题,探究不同农田系统土壤水盐氮分布特征对于区域科学管理土地资源和调控水盐肥

2、具有重要意义。以桑干河流域3种典型的农田利用方式(杏园、雨养玉米和灌溉玉米)为研究对象,通过野外取样与试验分析对不同农田利用方式土壤剖面水、盐和硝态氮分布规律进行研究,进而明晰土壤盐氮潜在淋溶风险。结果表明:不同农田类型中灌溉玉米土壤含水率和电导率均值最高,杏园含水率最低,而电导率接近于雨养玉米。土壤盐分离子组成以Na+和SO42-为主,K+、Mg2+和Cl-相对较少,灌溉玉米中Na+、K+和Mg2+均显著高于杏园。土壤水盐分布因农田利用方式的不同而存在明显差异且分布复杂,杏园土壤电导率与盐分离子垂直分布呈橄榄形,雨养玉米SO42-和电导率表现为中上多、底部少,灌溉玉米Na+呈S形波动。灌溉玉

3、米NO3-N平均累积含量明显高于雨养玉米和杏园,剖面分布为上下多、中间少的特点,且深层土壤NO3-N均值达14.6 mg/kg,具有潜在的硝态氮淋溶风险。不同利用方式土壤Mg2+和SO42-分别与含水率和电导率呈极显著正相关,其是控制区域水盐变化的重要因子。综上,不同农田利用方式对土壤水盐氮分布特征影响差异明显,灌溉玉米土壤水盐氮含量明显最高,需采取合理的水肥管理措施,减缓环境污染风险。关键词:桑干河流域;农田利用方式;水盐特征;硝态氮分布中图分类号:S282;S153 文献标识码:A DOI:10.12396/jsgg.2022205李雅丽,张红娟,刘孟竹,等.桑干河流域典型粮果农田土壤水盐

4、氮分布特征 J.节水灌溉,2023(3):31-37.DOI:10.12396/jsgg.2022205.LI Y L,ZHANG H J,LIU M Z,et al.Distribution characteristics of soil water,salt and nitrogen in typical grain and fruit farmland in Sanggan River Basin J.Water Saving Irrigation,2023(3):31-37.DOI:10.12396/jsgg.2022205.Distribution Characteristics o

5、f Soil Water,Salt and Nitrogen in Typical Grain and Fruit Farmland in Sanggan River BasinLI Ya-li1,2,ZHANG Hong-juan1,2,LIU Meng-zhu3,XU Li1,2,4,SHEN Yan-jun3,PEI Hong-wei1,2(1.Hebei University of Architecture,Zhangjiakou 075000,Hebei Province,China;2.Hebei Key Laboratory of Water Quality Engineerin

6、g and Comprehensive Utilization of Water Resources,Zhangjiakou 075000,Hebei Province,China;3.Agricultural Resources Research Center,Institute of Genetics and Developmental Biology,Chinese Academy of Sciences,Shijiazhuang 050021,China;4.Hebei University of Engineering,Handan 056038,Hebei Province,Chi

7、na)文章编号:1007-4929(2023)03-0031-07收稿日期:2022-08-21基金项目:国家自然科学基金项目(41701017);河北省自然科学基金项目(D2020404001);河北省科技厅外专引智项目;河北省教育厅重点项目(ZD2022015);河北省科技厅重点研发计划项目(22377001D);河北建筑工程学院基本科研业务费项目(2021QNJS01);河北建筑工程学院研究生创新基金项目(XY2023012)。作者简介:李雅丽(1995-),女,硕士研究生,主要从事环境生态学研究。E-mail:。通讯作者:裴宏伟(1987-),男,副教授,博士,主要从事生态水文与水资源

8、管理。E-mail:。31桑干河流域典型粮果农田土壤水盐氮分布特征 李雅丽 张红娟 刘孟竹 等Abstract:The Sanggan River Basin is located in the construction area of the capital water conservation area and eco-environment supporting area.However in the past decades,Sanggan River Basin was suffering severe non-point source pollution and ecologica

9、l degradation.Exploring the mechanisms of changes in soil water,salt and nitrogen distributions in different farmland systems is critical for mitigating regional ecological crisis.In this syudy,three typical farmland use patterns(apricot garden,rain-fed corn and irrigated corn)in Sanggan River Basin

10、 were taken as the research objects,the distribution laws of water,salt and nitrate in soil profiles of different farmland use patterns were studied through the field sampling and experimental analysis.The aim was to clarify the potential leaching risks of soil salt and nitrogen.The results showed t

11、hat:The average values of soil water content and electrical conductivity of irrigated corn farmland were the highest in different farmland use types,while the moisture content of apricot orchard was the lowest,and the electrical conductivity was close to that of rain-fed corn.Na+and SO42-were the ma

12、in components of soil salt ions,while K+,Mg2+and Cl-were relatively few.Na+,K+and Mg2+in irrigated corn were significantly higher than those in apricot garden.The distribution laws of soil water and salt were obviously different with complex distributions,and this was mainly due to different farmlan

13、d management patterns.The vertical distributions of soil electrical conductivity and salt ions in apricot orchards were olive-shaped,that of SO42-and electrical conductivity in rain-fed corn was higher in the middle and upper part,but less in the bottom,and Na+in the soil of irrigated corn was S-sha

14、ped.The average cumulative content of NO3-N in irrigated corn was significantly higher than that in rain-fed corn and apricot garden,and the profile distribution was characterized by more from top to bottom and less in the middle.The average NO3-N in deep soil reached 14.6 mg/kg,which had potential

15、nitrate leaching risk.Mg2+and SO42-in different land use types were positively correlated with water content and electrical conductivity,respectively,indicating that they were important factors to control regional water and salt changes.To sum up,different farmland uses patterns have obvious differe

16、nces on soil water,salt and nitrogen distribution characteristics,and the content of water,salt and nitrogen is obviously the highest in irrigated corn soil,so it is necessary to take reasonable water and fertilizer management measures to mitigate environmental pollution risks.Key words:Sanggan River Basin;farmland use;soil water and salt;nitrate nitrogen distribution0引 言土壤是地球生物圈的重要组成部分,也是动植物赖以生存和发展的自然物质基础1。人类生产活动方式的改变将驱使5大自然成土因素随之演变,进而引发土壤性质和环境发生相应变化2。土地利用方式作为人类对土地资源使用或改造等行为的综合反映,其变化必然会影响土壤结构的稳

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