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Biodegradable Polymer Coated Granular Urea Slows Down N Release Kinetics and Improves Spinach Productivity

机译:可生物降解的聚合物涂层粒状尿素减缓N释放动力学提高了菠菜生产力

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摘要

Low nitrogen (N) utilization efficiency due to environmental N losses from fertilizers results in high-cost on-farm production. Urea coating with biodegradable polymers can prevent these losses by controlling the N release of fertilizers. We calculated N release kinetics of coated granular with various biodegradable polymeric materials and its impact on spinach yield and N uptake. Different formulations were used, (i) G-1: 10% starch + 5% polyvinyl alcohol (PVA) + 5% molasses; (ii) G-2: 10% starch + 5% PVA + 5% paraffin wax (PW); (iii) G-3: 5% gelatin + 10% gum arabic + 5% PW; (iv) G-4: 5% molasses + 5% gelatin + 10% gum arabic, to coat urea using a fluidized bed coater. The morphological and X-ray diffraction (XRD) analyses indicated that a uniform coating layer with no new phase formation occurred. In the G-2 treatment, maximum crushing strength (72.9 N) was achieved with a slowed-down N release rate and increased efficiency of 31%. This resulted in increased spinach dry foliage yield (47%), N uptake (60%) and apparent N recovery (ANR: 130%) from G-2 compared to uncoated urea (G-0). Therefore, coating granular urea with biodegradable polymers is a good choice to slower down the N release rate and enhances the crop yield and N utilization efficiency from urea.
机译:由于来自肥料的环境N损失导致的低氮(n)利用效率导致高成本的农场生产。具有可生物降解的聚合物的尿素涂层可以通过控制肥料的N释放来防止这些损失。我们计算了涂层颗粒的N释放动力学,具有各种可生物降解的聚合物材料及其对菠菜产量和N吸收的影响。使用不同的制剂,(I)G-1:10%淀粉+ 5%聚乙烯醇(PVA)+ 5%糖蜜; (ii)G-2:10%淀粉+ 5%PVA + 5%石蜡(PW); (III)G-3:5%明胶+ 10%口香糖阿拉伯+ 5%PW; (iv)G-4:5%糖蜜+ 5%明胶+ 10%口香糖阿拉伯,用流化床涂布机涂上尿素。形态学和X射线衍射(XRD)分析表明,未发生没有新相形成的均匀涂层。在G-2处理中,通过减缓N释放速率实现最大碎强度(72.9n),效率增加31%。与未涂覆的尿素(G-0)相比,这导致菠菜干燥的叶片产量(47%),N吸收(60%)和表观N恢复(ANR:130%),与G-2相比增加。因此,具有可生物降解的聚合物的涂层粒状尿素是较慢下释放速率并提高尿素的作物产量和N利用效率的良好选择。

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