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红壤性水稻土无机磷形态周年内变化及与磷肥利用率的关系

黄晶 周玲红 高菊生 李冬初 刘立生 邹平 刘淑军 张会民

中国土壤与肥料Issue(2):43-52,10.
中国土壤与肥料Issue(2):43-52,10.DOI:10.11838/sfsc.1673-6257.24269

红壤性水稻土无机磷形态周年内变化及与磷肥利用率的关系

Annual changes of inorganic phosphorus form in red paddy soil within one year and its relationship with phosphorus fertilizer utilization

黄晶 1周玲红 2高菊生 1李冬初 1刘立生 1邹平 3刘淑军 1张会民1

作者信息

  • 1. 北方干旱半干旱耕地高效利用全国重点实验室/中国农业科学院农业资源与农业区划研究所,北京 100081||中国农业科学院衡阳红壤实验站/湖南祁阳农田生态系统国家野外科学观测研究站,湖南 祁阳 426128
  • 2. 衡阳市石鼓区农业农村局,湖南 衡阳 421001
  • 3. 衡阳县农业农村局,湖南 衡阳 421200
  • 折叠

摘要

Abstract

The effective supply of phosphorus in paddy soil in red soil area is the key to ensure the high yield of rice.Soil phosphorus availability is closely related to the transformation of phosphorus forms.However,the changes of inorganic phosphorus forms in the key growth period of double cropping rice under different fertilization and its relationship with rice phosphorus utilization efficiency are still unclear.Based on the long-term experiment of combined application of organic fertilizer and chemical fertilizer since 1982,control(CK),single application of organic fertilizer(M),single application of chemical fertilizer(NPK)and combined application of organic fertilizer and chemical fertilizer(NPKM)were selected.This study monitored the changes of inorganic phosphorus components and phosphorus utilization rate in the key growth period of double cropping rice,and analyzed the correlation between them.The result showed that there were significant differences in the total amount of inorganic phosphorus among different treatments at different growth stages(NPKM>NPK>M>CK,P<0.05).The change of total inorganic phosphorus after fertilization mainly occurred in tillering stage and full heading stage.The contents of Al-P,Fe-P and Ca-P in NPK and NPKM treatments were significantly higher than those in M and CK treatments at different growth stages of early and late rice(P<0.05).The average contents of Al-P,Fe-P and Ca-P in the late rice growing season of each treatment were higher than those in the early rice growing season,with an increase of 4.6%-19.8%,0.2%-8.6%and 3.4%-23.3%,respectively.The average content of O-P in the late rice season of each treatment was 8.4%-35.0%lower than that in the early rice.The change trend of the proportion of inorganic phosphorus components to total inorganic phosphorus in early rice season and late rice season was the same among different fertilization treatments.The order of the average proportion of Al-P,Fe-P,O-P and Ca-P to total inorganic phosphorus in each treatment was NPKM>NPK>M>CK,M>CK>NPK>NPKM,CK>M>NPK>NPKM and CK>M>NPK>NPKM,respectively.The grain yield and phosphorus uptake of early and late rice increased significantly with fertilization(P<0.05).The rice yield and phosphorus uptake of MPKM were significantly higher than those of NPK and M treatments(P<0.05),with an increase of 25.1%-33.3%,but there was no significant difference in phosphorus utilization rate between different fertilization treatments.The relative importance of Al-P and Olsen-P content in the vegetative growth period of early rice to the yield and phosphorus uptake of early rice was more prominent,while Fe-P in vegetative growth period and Al-P in reproductive growth period were more important to yield and phosphorus uptake of late rice.In the case of combined application of organic and inorganic fertilizers,it is necessary to optimize the amount of phosphorus fertilizer and strengthen the regulation of phosphorus fertilizer at tillering stage and full heading stage of early rice and late rice to improve the utilization efficiency of phosphorus fertilizer.

关键词

红壤性水稻土/关键生育期/无机磷形态/磷肥利用率/长期施肥

Key words

red paddy soil/key growth period/inorganic phosphorus form/utilization rate of phosphorus/long-term fertilization

引用本文复制引用

黄晶,周玲红,高菊生,李冬初,刘立生,邹平,刘淑军,张会民..红壤性水稻土无机磷形态周年内变化及与磷肥利用率的关系[J].中国土壤与肥料,2025,(2):43-52,10.

基金项目

湖南省自然科学基金项目(2022JJ30648,2024JJ7621) (2022JJ30648,2024JJ7621)

国家水稻产业技术体系(CARS-01-88) (CARS-01-88)

井冈山农高区省级科技专项揭榜挂帅项目(20222-051246) (20222-051246)

湖南省农业创新资金项目(2023CX73). (2023CX73)

中国土壤与肥料

OA北大核心

1673-6257

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