首页 | 本学科首页   官方微博 | 高级检索  
     检索      

不同施肥模式对赤红壤旱地作物产量和土壤肥力的影响
引用本文:林新坚,章明清,林琼,李娟,孔庆波,李清华.不同施肥模式对赤红壤旱地作物产量和土壤肥力的影响[J].中国土壤与肥料,2011(5):27-31.
作者姓名:林新坚  章明清  林琼  李娟  孔庆波  李清华
作者单位:福建省农业科学院土壤肥料研究所,福建福州,350013
基金项目:“十一五”国家科技支撑项目(2006BAD25B08-3); 国际植物营养研究所合作项目(Fujian-09)
摘    要:采用长期定位田间试验,研究不同施肥模式对赤红壤旱地花生一甘薯轮作制产量和土壤肥力的影响.5年定位试验表明,平衡施肥平均产量最高,花生和甘薯比常规施肥增产13.1%~13.5%,净增收提高14.0%;氮磷钾对花生和甘薯的增产率逐年提高,但花生和甘薯分别对缺磷和缺钾较敏感.年际间产量变化趋势表明,常规施肥对花生和甘薯产量的变异系数大于平衡施肥;不施肥区和氮磷钾缺素区的产量均呈现逐年下降,但缺氮对花生产量的敏感性大于甘薯,甘薯缺磷或缺钾对产量的敏感性高于花生.平衡施肥的氮磷钾利用率平均分别为40.9%、17.7%和24.2%;缺素区的土壤供肥量比不施肥区提高了近1倍;土壤有机质都有所提高,施用氮肥都使土壤酸度有所增加;不施肥区和氮磷钾缺素区都使相应的土壤速效养分明显下降;常规施肥使土壤有效磷下降22.5%,碱解氮和速效钾则基本维持不变,但平衡施肥使土壤有效磷含量基本不变,碱解氮和速效钾则分别提高26.2%和38.4%.

关 键 词:施肥模式  赤红壤  产量  肥力
收稿时间:2011/2/11 0:00:00
修稿时间:2011/5/19 0:00:00

Effect of different fertilization patterns on plant yield and soil fertility in lateritic red soil upland
LIN Xin jian,ZHANG Ming qing,LIN Qiong,LI Juan,KONG Qing bo,LI Qing hua.Effect of different fertilization patterns on plant yield and soil fertility in lateritic red soil upland[J].Soil and Fertilizer Sciences in China,2011(5):27-31.
Authors:LIN Xin jian  ZHANG Ming qing  LIN Qiong  LI Juan  KONG Qing bo  LI Qing hua
Institution:LIN Xin-jian,ZHANG Ming-qing,LIN Qiong,LI Juan,KONG Qing-bo,LI Qing-hua(Soil and Fertilizer Research Institute,Fujian Agricultural Sciences,Fuzhou Fujian 350013)
Abstract:Based on long-term experiment,the effect of different fertilization on crop yield and soil fertility of peanut-sweet potato rotation system in lateritic red soil was studied.The experimental results showed that the average yield of balanced fertilization treatment was the highest,compared with farm usual practice,the yield of peanut and sweet potato increased by 13.1%~13.5%,the net income increased by 14%,the increasing rate of NPK fertilization to peanut and sweet potato was improved year after year,but pe...
Keywords:fertilization pattern  lateritic red soil  yield  fertility  
本文献已被 CNKI 万方数据 等数据库收录!
点击此处可从《中国土壤与肥料》浏览原始摘要信息
点击此处可从《中国土壤与肥料》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号