了解尿素块肥料在提高氮素利用效率和作物产量方面的作用

Hridesh Harsha Sarma, Akash Paul, Ayekpam Robertson, Shahin Shobnur, Sonam Lhamu, Anjali Taku
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摘要

提高低地水稻种植的氮素利用率,同时减轻对环境的影响是当务之急。传统的尿素施用方法会导致大量的氮损失。尿素压块提供了一种解决方案,它能逐渐释放铵态氮,最大限度地减少因沥滤、挥发和反硝化造成的损失。田间试验证明,尿素压块比颗粒尿素更有优势,产量更高,氮吸收量更大。楝树油和卡兰吉油等粘合剂可增强压块强度,便于机械施肥。利用当地工业废料作为填充材料可提高煤球质量。为解决采用障碍,卡特克国家水稻研究所开发并评估了五种机械施肥器。其中包括连续式和非连续式两种类型,每种类型都是针对特定应用场景而设计的。广泛的测试评估了它们在速度、容量和放置均匀性方面的性能。开发用户友好、成本效益高的施肥器是广泛采用尿素压块的关键一步。这些创新简化了劳动密集型施肥过程,满足了小农的需求。未来的研究应侧重于完善适用于不同土壤条件和作物生长阶段的施肥器设计。此外,根据当地资源优化压块配方可进一步提高效率和降低成本。总之,尿素压块与高效施肥器相结合,是一种很有前景的可持续水稻种植方法。通过减少氮素损失和提高效率,它们有助于提高产量和保护环境。要充分发挥这项技术的潜力并确保其在农民中得到广泛应用,就必须继续努力开展研究、开发和推广工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accessing Role of Urea Briquettes Fertilizer for Enhancing Nitogen Use Efficiency and Crop Productivity
Enhancing nitrogen efficiency in lowland rice cultivation while mitigating environmental impacts is imperative. Traditional urea application methods lead to significant nitrogen losses. Urea briquettes offer a solution by gradually releasing nitrogen in the ammonium form, minimizing losses through leaching, volatilization, and denitrification. Field trials demonstrate their superiority over prilled urea, with higher yields and increased nitrogen uptake. Binding agents like neem and karanj oils enhance briquette strength, allowing for mechanical applicator use. Utilizing local industrial wastes as filler materials improves briquette quality. To address adoption barriers, National Rice Research Institute, Cuttack has developed and evaluated five mechanical applicators. These include continuous and non-continuous types, each designed for specific application scenarios. Extensive testing assessed their performance in terms of speed, capacity, and placement uniformity. The development of user-friendly, cost-effective applicators is a critical step towards wider adoption of urea briquettes. These innovations streamline the labor-intensive application process and cater to the needs of smallholder farmers. Future research should focus on refining applicator designs for varied soil conditions and crop stages. Additionally, optimizing briquette formulations based on local resources can further enhance efficiency and reduce costs. Overall, urea briquettes coupled with efficient applicators represent a promising approach for sustainable rice cultivation. By reducing nitrogen losses and improving efficiency, they contribute to higher yields and environmental preservation. Continued efforts in research, development, and promotion are essential to realize the full potential of this technology and ensure its widespread adoption among farmers.
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