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机构地区:[1]中国农业科学院农业资源与农业区划研究所、农业部植物营养与养分循环重点开放实验室,北京100081 [2]山东省农业科学院土壤肥料研究所,济南250100
出 处:《中国农业科学》2007年第10期2234-2240,共7页Scientia Agricultura Sinica
基 金:国际植物营养研究所(IPNI)中国项目;国家科技支撑计划(2006BAD02A14)
摘 要:【目的】为探明长期施钾对大田玉米产量和耕层土壤钾素状况的影响。【方法】本文通过在东北三省的代表性土壤上连续13年的定位施钾试验进行研究。【结果】东北3个定位试验点在施用氮磷肥基础上长期施钾对玉米产量的影响差异较大,辽宁13年间(1993~2005)施钾效应不稳定,吉林自第3年(1995年)开始施钾显著增产,黑龙江自定位开始施钾显著增产;辽、吉、黑3点长期施钾条件下作物产量13年平均分别增加9.9%~10.3%、12.6%~13.6%和17.5%~21.7%。辽宁、吉林两点施K2O112.5kg·ha^(-1)时土壤-作物系统内钾素处于较明显的亏缺状况,而施K2O225.0kg·ha^(-1)时3个定位点钾素均有较多的盈余。长期施钾均能显著增加土壤速效钾含量,且土壤速效钾含量随施钾量的增加而增加,而长期施钾对3个定位点缓效钾含量的影响有所不同。【结论】基于产量、效益和土壤钾素状况,3点的适宜钾(K_2O)用量为112.5kg·ha^(-1)左右。[ Objective ] In order to prove up the effects of K fertilizer use on maize yield and soil K status in the plough layer. [Method] the experiment use the 13-year fixed site field trials located at selected locations in three provinces of northeast China, Liaoning, Jilin and Heilongjiang. [Result] Effects of K application on maize yield were quite different in the three fixed sites. In the field trial in Heilongjiang, significant maize yield response to K was found starting in the first year; in Jilin, the significant yield response to K was found starting in year three; while in Heilongjiang, the maize yield response to K was not very stable from 1993 to 2005. The ranges of yield response to K fertilizer application in the field trials in Liaoning, Jilin and Heilongjiang were 9.9%-10.3%, 12.6%-13.6% and 17.5%-21.7%, respectively. In all three sites, K balance in soil-crop system was negative in the treatment with K2O application rate at 112.5 kg.ha-1, and remarkable K accumulation in soil was found when K2O application rate was 225.0 kg·ha^-1. Application of K fertilizer significantly increased available K content in soil. [Conclusion] Considering maize yield and income and soil K status, quantity of K fertilizer (K2O) was 112.5 kg·ha^-1 under present experimental conditions.
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