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首页> 外文期刊>American journal of agricultural and biological sciences >Reduction of Ammonia Loss by Mixing Urea with Liquid Humic and Fulvic Acids Isolated from Tropical Peat Soil | Science Publications
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Reduction of Ammonia Loss by Mixing Urea with Liquid Humic and Fulvic Acids Isolated from Tropical Peat Soil | Science Publications

机译:通过将尿素与热带泥炭土壤中分离的腐殖酸和富勒酸混合来减少氨的损失科学出版物

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> Problem statement: Fertilizer N use efficiency is reduced by ammonia volatilization. Under low soil CEC and high pH, N from soil solution is released to the atmosphere. Ammonia loss due to low worldwide N use efficiency (33%) has been implicated in global warming. Thus, the objectives of this laboratory study were to evaluate the effectiveness of liquid humic and fulvic acids, isolated from tropical peat soils in reducing N loss from urea fertilizer as well as to investigate the ability of these acids to retain NH4+ and NO3- or reduce soil pH. >Approach: Formulated liquid N fertilizers consisting of urea and different types of humic molecules (HA or FA or mixture of both), solid and liquid urea were surface applied to 250 g of soil. A closed dynamic air flow system was used to trap NH3 loss in boric acid after which samples were titrated with 0.01 M HCl to estimate NH3 loss. After 30 days of incubation, the soil was air dried and analysed for pH, exchangeable NH4+, available NO3- and exchangeable cations. The results were analysed using SAS and treatments means were compared using Duncans New Multiple Range Test (DNMRT).> Results: The use of humic molecules reduced NH3 loss and increased exchangeable NH4+. The high CEC of Humic Acids (HA) made the LHA treatment the best in reducing N loss after surface application. The presence of HA and Fulvic Acids (FA) increased NH4+ recovery. Even though, the soil pH of all the treatments were high, significant reduction of N loss was observed for humic molecules treatments. >Conclusion: The use of liquid organic N fertilizer has the ability to reduce NH3 volatilization in acid soil. The use of both humic and fulvic acids could be effective in promoting NH4+ retention. Thus, it can be concluding that, humic substances, in general, have great ability in controlling NH3 loss and retaining NH4+ in acid soils. It could be a cheapest, practical and easiest way to control N loss.
机译: > 问题陈述:氨气挥发会降低肥料氮的使用效率。在低土壤CEC和高pH下,土壤溶液中的N释放到大气中。由于全球氮素利用率低(33%)而导致的氨气损失与全球变暖有关。因此,本实验室研究的目的是评估从热带泥炭土壤中分离出来的腐殖酸和黄腐酸在减少尿素肥料氮损失方面的有效性,以及研究这些酸保留NH 4的能力。 / sub> + 和NO 3 -或降低土壤pH。 >方法:将由尿素和不同类型的腐殖质分子(HA或FA或两者的混合物),固体和液体尿素组成的液氮肥料表面施用于250 g的土壤上。使用封闭的动态气流系统捕获硼酸中的NH3损失,然后用0.01 M HCl滴定样品以估算NH3的损失。孵育30天后,将土壤风干并分析pH值,可交换的NH 4 + ,NO 3 -< / sup>和可交换阳离子。结果>结果:腐殖质分子的使用减少了NH3的损失并增加了可交换的NH 4 + 。腐殖酸(HA)的高CEC使得LHA处理成为减少表面施涂后氮损失的最佳方法。 HA和富勒酸(FA)的存在增加了NH 4 + 的回收率。即使所有处理的土壤pH都很高,腐殖质分子处理也能显着降低氮的损失。 >结论:使用液态有机氮肥能够减少酸性土壤中NH 3 的挥发。腐殖酸和富里酸都可以有效地促进NH 4 + 的保留。因此,可以得出结论,腐殖质通常在酸性土壤中具有控制NH3损失和保留NH 4 + 的强大能力。这可能是控制氮损失的最便宜,实用和最简单的方法。

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