利用新研制的深度施肥装置深施化肥对水稻和大豆产量的影响

Sung-Chang Hong, Min-Wook Kim, Jin-Ho Kim
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引用次数: 0

摘要

氮肥是一种重要的常量营养素,在作物栽培中需要反复投入。过量使用氮肥会对环境产生不利影响,将nh3、NO和n2o排放到空气中,并通过降雨径流淋滤到周围的水系统中。因此,有必要开发在不影响作物产量的情况下减少氮肥使用量的技术。化肥深埋是提高氮肥利用效率的一种技术。本研究开发了一种可与拖拉机耦合,用于土壤施肥的深层施肥装置。深层施肥装置由拖拉机附着部分、肥料量控制与供给部分和地下肥料输入部分组成。施肥深度设计为可调的,从土壤表面到土壤深处40厘米。该装置由62马力的农用拖拉机牵引,通过地下输肥管道,以每小时2000米的速度向25 ~ 30厘米的深度注入肥料。此外,它在使用目前农业领域使用的各种肥料方面没有困难,并且运行良好。它还可以执行施肥和耕作工作,从而进一步简化了农业劳动。在本研究中,利用一种新开发的装置来研究深层施肥(FDP)对水稻和大豆产量的影响,并与尿素表面撒施(FDP)进行比较。FDP增加了稻谷的数量,使三个地区的水稻产量平均提高了9%。它还增加了大豆豆荚的数量,使三个地区的大豆产量平均增加了23%。本研究结果表明,新开发的深层施肥装置可以高效、快速地将肥料注入25 ~ 30 cm深度的土壤中。在常规水稻和大豆栽培条件下,这种肥料深埋策略将是一种有效的施肥方法,用于提高水稻和大豆的产量,同时减少氮肥的使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Fertilizer Deep Placement on Rice and Soybean Yield Using Newly Developed Device for Deep Fertilization
Nitrogen fertilizer is an essential macronutrient that re-quires repeated input for crop cultivation. Excessive use of nitrogen fertilizers can adversely affect the environ-ment by discharging NH 3 , NO, and N 2 O into the air and leaching into surrounding water systems through rainfall runoff. Therefore, it is necessary to develop a technology that reduces the amount of nitrogen fertilizer used without compromising crop yields. Fertilizer deep placement could be a technology employed to increase the efficiency of nitrogen fertilizer use. In this study, a deep fertilization device that can be coupled to a tractor and used to inject fertilizer into the soil was developed. The deep fertilization device consisted of a tractor attachment part, fertilizer amount control and supply part, and an underground fertilizer input part. The fertilization depth was designed to be adjustable from the soil surface down to a depth of 40 cm in the soil. This device injected fertilizer at a speed of 2,000 m 2 /hr to a depth of 25 to 30 cm through an underground fertilizer injection pipe while being attached to and towed by a 62-horsepower agricultural tractor. Fur-thermore, it had no difficulty in employing various fertilizers currently utilized in agricultural fields, and it oper-ated well. It could also perform fertilization and plowing work, thereby further simplifying agricultural labor. In this study, a newly developed device was used to inves-tigate the effects of deep fertilizer placement (FDP) com-pared to those with urea surface broadcasting, in terms of rice and soybean grain yields. FDP increased the number of rice grains, resulting in an average improvement of 9% in rice yields across three regions. It also increased the number of soybean pods, resulting in an average increase of 23% in soybean yields across the three regions. The re-sults of this study suggest that the newly developed deep fertilization device can efficiently and rapidly inject fertilizer into the soil at depths of 25 to 30 cm. This fertilizer deep placement strategy will be an effective fertilizer application method used to increase rice and soybean yields, in addition to reducing nitrogen fertilizer use, under con-ventional rice and soybean cultivation conditions.
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