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砂质潮土长期施磷的农学效应及有效性演变
引用本文:徐孟泽,王磊,卢艳丽,白由路,王玉红,陈杨,聂彩娥,宋桂霈.砂质潮土长期施磷的农学效应及有效性演变[J].植物营养与肥料学报,2022,28(2):205-215.
作者姓名:徐孟泽  王磊  卢艳丽  白由路  王玉红  陈杨  聂彩娥  宋桂霈
作者单位:中国农业科学院农业资源与农业区划研究所/农业农村部植物营养与肥料重点实验室,北京 100081
基金项目:中国农业科学院基本科研业务费专项所级统筹项目(1610132020038);中国农业科学院科技创新工程(2021)。
摘    要:目的]研究冬小麦–夏玉米轮作体系下砂质潮土长期施磷的作物产量效应、磷肥利用效率、土壤有效磷农学阈值及有效磷对土壤磷素盈亏的响应关系,为农田磷素养分管理提供依据.方法]磷肥长期定位试验自2008年起在河北廊坊进行,种植制度为冬小麦–夏玉米轮作,供试土壤为砂质潮土,设置6个施磷(P2O5)水平(0、45、90、135、...

关 键 词:冬小麦—夏玉米轮作  产量效应  适宜施磷量  有效磷农学阈值  土壤磷储存阈值  土壤磷有效性
收稿时间:2021-07-05

Agronomic effect and variation of P availability under long-term phosphorus application in sandy fluvo-aquic soil
XU Meng-ze,WANG Lei,LU Yan-li,BAI You-lu,WANG Yu-hong,CHEN Yang,NIE Cai-e,SONG Gui-pei.Agronomic effect and variation of P availability under long-term phosphorus application in sandy fluvo-aquic soil[J].Plant Nutrition and Fertilizer Science,2022,28(2):205-215.
Authors:XU Meng-ze  WANG Lei  LU Yan-li  BAI You-lu  WANG Yu-hong  CHEN Yang  NIE Cai-e  SONG Gui-pei
Institution:Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences /Key Laboratory of Plant Nutrition and Fertilizer, Ministry of Agriculture and Rural Affairs, Beijing 100081, China
Abstract:  【Objectives】  We studied the appropriate P fertilizer application rate, the critical Olsen-P value for crop yield and the response of Olsen-P to soil P balance under long-term P application in sandy fluvo-aquic soil. We aimed to provide a basis for P nutrient management in agricultural fields.  【Methods】  A long-term experiment was conducted since 2008 in Langfang, Hebei Province. The planting system is winter wheat-summer maize rotation on sandy fluvo-aquic soil, with phosphorus fertilizer (P2O5) levels of 0, 45, 90, 135, 180, and 225 kg/(hm2·a), and expressed as P0, P45, P90, P135, P180, P225. Crop yield and P uptake were analyzed every year, and soil Olsen-P was measured after harvesting winter wheat and summer maize.   【Results】  P application increased yield and P uptake in winter wheat and summer maize, but they did not always increase with the increased P application level. For the highest annual yield (14627 kg/m2), the application rate of 152 kg/hm2 was required. The appropriate application rate was 90 kg/hm2 if the actual production target was 90% of the highest yield. Over time, the efficiency of P fertilizer use in sandy fluvo-aquic soil increased. For the 12-year average, P fertilizer’s apparent and cumulative use efficiency was 36.98%–98.10% and 26.26%–71.85%, respectively. P application did not affect crop P absorption when the annual application rate exceeded 90 kg/hm2, resulting in lower apparent and cumulative P fertilizer use efficiencies. The apparent P balance for treatments P0 to P225 was –11.30, –7.38, 0.94, 20.05, 37.21, and 57.68 kg/hm2, respectively, over the 12-year period. –144.92, –88.57, 11.33, 240.56, 446.48, and 692.15 kg/hm2 were the cumulative P balances from 2010 to 2020, respectively. The linear relationship between Olsen-P and P accumulation was shown in two sections, with a turning point of 218.81 kg/hm2 for P accumulation. Every 100 mg/hm2 of P cumulative increment resulted in 0.48 mg/kg increase in Olsen-P, which increased to 3.37 mg/kg after the point. The Olsen-P agronomic thresholds for winter wheat and summer maize were 10.20 mg/kg and 5.93 mg/kg, respectively. When the P2O5 application rate was 90 kg/hm2, the soil available P content in both seasons was close to the agronomic threshold.   【Conclusions】  The appropriate annual P2O5 application rate in sandy fluvo-aquic soil under a winter wheat-summer maize rotation system with the return of crop stalks to the field is 90 kg/hm2. This results in the soil available content required for the agronomic threshold to attain a high crop yield. The storage P threshold of sandy fluvo-aquic soil was 218.81 kg/hm2. When the cumulative P amount is less than the threshold, the available soil P will be increased less by P application. On the other hand, when the cumulative P amount exceeds the threshold, the soil available P will greatly increase.
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