首页> 外文会议>Biomedical Engineering and Biotechnology (iCBEB), 2012 International Conference on >Effect of Different N Management Strategies on Soil Nitrate Leaching in a Wheat-Maize Rotation System in the Piedmont Plain of Taihang Mountain
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Effect of Different N Management Strategies on Soil Nitrate Leaching in a Wheat-Maize Rotation System in the Piedmont Plain of Taihang Mountain

机译:太行山山前平原小麦-玉米轮作系统中不同氮肥管理策略对土壤硝态氮淋失的影响

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In order to reduce agricultural pollution caused by the excessive application of nitrogen fertilizer, a field experiment was conducted to investigate the effects of different fertilization strategies on nitrate leaching in 0-100 cm soil layer using nitrate leaching device in a winter wheat-summer maize rotation system on the piedmong plain of Taihang Mountain. The results showed that soil NO3 -- N leaching and accumulation increased with the increasing of nitrogen fertilization. The effects of nitrogen applications on nitrate leaching varied in the 0-100cm soil layer, and the accumulatation rate is OPT+N > FP > FP-S > OPT > OPT-N > CK. The nitrate mainly existed in 20-40 cm soil layer in wheat season. It appeared mainly in the surface layer and deep layer in maize season. The nitrate accumulation amount in the 0-100cm soil layer have a significant increasing after 3 rotations especially in the 60-100 cm, which indicating that the primary cause of nitrate leaching and accumulation was N fertilization. Compared with other treatments, the OPT significantly increased crop yield, nitrogen use efficiency and partial factor productivity in the 3 years wheat-maize rotations. Considering the economic and ecological benefits, the OPT fertilization strategy is worth to be recommended to farmers.
机译:为了减少氮肥过量施用对农业的污染,进行了田间试验,研究了不同的施肥策略对冬小麦-夏玉米轮作中硝酸盐淋失装置在0-100 cm土壤层中硝酸盐淋失的影响。太行山前冲平原上的系统。结果表明,随着施氮量的增加,土壤NO3-N的淋溶积累逐渐增加。施氮对0〜100cm土层硝态氮淋失的影响不同,其累积速率为:OPT + N> FP> FP-S> OPT> OPT-N> CK。小麦季节硝酸盐主要存在于20-40 cm土层。在玉米季节主要出现在表层和深层。 3〜0 cm土壤层中硝酸盐累积量显着增加,尤其是在60〜100 cm土壤中3轮旋转后,表明硝态氮淋失和累积的主要原因是施氮。与其他处理相比,在3年的小麦-玉米轮作中,OPT显着提高了作物产量,氮素利用效率和部分因子生产力。考虑到经济和生态效益,OPT施肥策略值得推荐给农民。

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