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控释尿素对水稻产量、氮肥利用率及土壤硝态氮含量的影响

Effects of Controlled Release Urea on Rice Yield, Nitrogen Use Efficiency and Soil Nitrate Nitrogen Content

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【作者】 杜君孙克刚张运红和爱玲孙克振

【Author】 Du Jun;Sun Kegang;Zhang Yunhong;He Ailing;Sun Kezhen;Institute of Plant Nutrition, Agricultural Resources and Environmental Science, Henan Academy of Agricultural Sciences,Henan Key Laboratory of Agricultural Eco-environment;Gushi Agricultural Bureau;

【机构】 河南省农业科学院植物营养与资源环境研究所/河南省农业生态与环境重点实验室河南省固始县农业局

【摘要】 为探讨等量氮肥及合理节肥条件下,控释尿素对水稻的增产效应及氮素的高效利用,通过田间试验,比较分析了控释尿素(CRU)和普通尿素(CU)在不同施用量下对水稻产量、氮肥利用率及土壤硝态氮含量的影响。结果表明:CRU100%处理的产量最高,达8986.5 kg/hm~2,较同等氮素用量的CU100%处理增产380.7 kg/hm~2,差异呈显著水平。CRU3/4处理与CU100%处理,以及CRU1/2处理与CU100%处理之间产量差异不显著。这说明与普通尿素相比,控释尿素减少1/4~1/2的氮素用量时也能达到同样的产量水平。氮肥利用率以CRU1/2处理最高,达68.3%,较同等氮素用量的CU1/2处理提高20.6个百分点。同时,控释尿素还可明显降低水稻土壤中硝态氮的含量,减少硝态氮向土壤深层渗漏数量,以减轻对地下水污染风险。

【Abstract】 In order to investigate the effect of controlled release urea on rice yield and high efficient utilizationof nitrogen under the conditions of equal amount of nitrogen fertilizer and reasonable fertilizer, fieldexperiments were conducted to analyze the effects of controlled release urea(CRU) and common urea(CU) withdifferent application doses on rice yield, nitrogen use efficiency and soil nitrate nitrogen content. The resultsshowed that the highest yield of rice was 8986.5 kg/hm~2 in the treatment of CRU100%. Compared withCU100%, the rice yield in the treatment of CRU 100% increased by 380.7 kg/hm2, the difference wassignificant. There was no significant difference in the rice yields between the treatments of CRU3/4 andCU100%, and CRU1/2 and CU100%, suggesting that 1/2 to 3/4 nitrogen application rate with CRU could getthe same yield as CU treatments. The highest nitrogen use efficiency was 68.3% in the treatment of CRU1/2.Compared with CU1/2 treatment of the equal nitrogen application, the nitrogen use efficiency of CRU1/2 wasincreased by 20.6 percentage point. Meanwhile, CRU could slow down nitrate nitrogen accumulation in soil profile significantly. The application of CRU could evidently reduce the quantity of soil nitrate nitrogenleaching to deep soil layer and therefore lessen the risk of ground water pollution.

【基金】 河南省财政预算项目“优质稻米的关键施肥技术研究”(20137913)
  • 【文献出处】 中国农学通报 ,Chinese Agricultural Science Bulletin , 编辑部邮箱 ,2016年06期
  • 【分类号】S511.22
  • 【被引频次】18
  • 【下载频次】311
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