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Effects of Long-Term Fertilization on Different Nitrogen Forms in Paddy along Soil Depth Gradient

机译:长期施肥对土壤深度梯度稻田不同氮形式的影响

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The combined application of organic fertilizer and chemical fertilizer is an effective measure to increase nutrient content of soil plough layer, which must have a profound impact on the deep soil nutrients, especially the contents of nitrogen forms. The purpose of this study was to explore the characteristics of soil nitrogen forms in plough layer and along depth gradient in different fertilization treatments, so as to evaluate the soil quality in spatial dimension, further provid ing a theoretical basis for scientific fertilization and improvement of paddy soil fertility. Here, a 34-year field experiment was conducted with three treatments: without any fertilizer (CK), pure chemical fertilizer (NPK) and chemical fertilizer combined with organic fertilizer (NPKM). We analyzed the content of nitrogen forms in 0 - 100 cm soil depth and their ratios to total nitrogen (TN), and discussed the correlation between nitrogen forms contents and pH, CEC. Results showed that, compared with CK, both NPK and NPKM significantly increased the contents of nitrogen forms in topsoil (soil layer of 0 - 20 cm), especially nitrate nitrogen (NO_(3) -)-N) content increased by 70% (NPK) and 111% (NPKM), respectively. Although the contents of different nitrogen forms decreased gradually along soil depth gradient, NPKS slowed down the decline rate of TN and alkali-hydrolysable nitrogen (AN) in 0 - 60 cm soil layer, compared to CK. Compared to NPK, NPKM significantly increased the NO_(3) -)-N/TN ratio in 0 - 20 cm soil layer, but also decreased the content of -N in 20 - 40 cm, which was beneficial to reduce the risk of nitrogen leaching caused by nitrate leaching into deep layer. The increase of soil pH in NPKM treatment obviously alleviated the problem of soil acidification caused by long-term application of chemical fertilizer. Correlation analysis showed that there was a significant positive correlation between soil nitrogen forms and cation exchange capacity (CEC), but no significant correlation with soil pH. In conclusion, NPKM ensured the nutrients of soil plough layer (0 - 20 cm), also reduced the risk of nitrogen infiltration and nitrogen loss, thus ensur ing the fertility of soil profile.
机译:有机肥和化学肥料的合并应用是增加土壤犁层养分含量的有效措施,这必须对深土营养素产生深远的影响,尤其是氮形式的含量。本研究的目的是探讨犁层中土壤氮形式的特点,沿着不同的施肥处理中的深度梯度,以评估空间维度的土壤质量,进一步为科学施肥和稻谷的改进提供理论依据。土壤肥力。在这里,用三种处理进行34年的田间实验:没有任何肥料(CK),纯化学肥料(NPK)和化肥联合有机肥(NPKM)。我们分析了0-100cm的土壤深度中氮形式的含量及其比例氮(TN),并讨论了氮形式含量与pH,CEC之间的相关性。结果表明,与CK相比,NPK和NPKM均显着提高了表土(0-20cm)的氮形式的含量,尤其是硝酸盐氮(NO_(3) - ) - N)含量增加70%( NPK)分别和111%(NPKM)。尽管不同氮形式的含量沿着土壤深度梯度逐渐降低,但与CK相比,NPKS减慢了0-60cm土层中的TN和碱水解氮(An)的下降率。与NPK相比,NPKM在0-20厘米的土壤层中显着增加NO_(3) - ) - N / TN比,但也降低了20-40厘米的-N含量,这有利于降低氮的风险硝酸浸入深层引起的浸出。 NPKM治疗中土壤pH的增加明显缓解了化肥长期应用引起的土壤酸化问题。相关分析表明,土壤氮形式和阳离子交换能力(CEC)之间存在显着的正相关性,但与土壤pH没有显着相关性。总之,NPKM确保了土壤犁层(0-20厘米)的营养,还降低了氮渗透和氮气损失的风险,从而确保了土壤剖面的生育能力。

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