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Development and Evaluation of Subsurface Application Technology for Solid Organic Fertilizers

机译:固体有机肥地下施用技术的发展与评价

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The only readily available land application method for solid organic fertilizers (e.g. manure, compost) is surface broadcast application. However, the practice of injecting liquid manure directly under the soil surface is widely used and has demonstrated benefits in terms of reduced odor and ammonia emissions as well as decreased losses of nutrients by runoff or evaporation. The objective of the work reported herein was to develop an implement to apply solid organic fertilizers directly under the soil surface. The design criteria for the injection system included a maximum application rate of 19.8 Mglha at a travel speed of 4.8 Icm/h and a 406-mm injector spacing. The final configuration of the injection system features a feeding screw conveyor (168-mm diameter and 171-mm pitch) that is tapered to join a flexible screw conveyor 89 mm in diameter. The flexible screw conveyor runs in a flexible plastic hose (102-mm inside diameter) that brings the product to a coulter opener. The system was capable ofoutputting 1.9 kg/s of beef cattle manure with straw bedding compared to a target rate of 1.1 kg/s. The hydraulic power requirements were found to be 5.1 kW-s/kg per injection unit. A three-year agronomic evaluation of the technology was performed. Theresults indicated that there was evidence of slightly increased recovery of nitrogen and phosphorus in the manure when it was placed in the soil. In the last year of the study, there appear to be some additional benefit of the injection on crop yield. This may be explained by the injection enhancing the decomposition of the manure to plant-available inorganic forms of nutrients that plant roots can access better. Complementary results suggest that the injection of solid manure is an effective way of reducing odors from land application. However, the overall results obtained for beef cattle manure at the test site indicated that the agronomic benefits of in-soil placement of the solid manure were relatively limited and may not justify the additional associated costs.
机译:固体有机肥料(例如肥料,堆肥)的唯一现成的土地施用方法是地面广播施用。但是,直接在土壤表层下注入液体肥料的做法得到了广泛使用,并且在减少气味和氨气排放以及减少径流或蒸发造成的养分流失方面显示出了诸多好处。本文报道的工作目的是开发一种将固体有机肥料直接施用到土壤表层以下的工具。注射系统的设计标准包括在4.8 Icm / h的行进速度和406 mm的注射器间距下的最大施药量为19.8 Mglha。注射系统的最终配置包括进料螺旋输送机(直径168毫米,节距171毫米),该输送机逐渐变细以与直径89毫米的柔性螺旋输送机连接。柔性螺旋输送机在柔性塑料软管(内径102毫米)中运行,该软管将产品带到犁刀开瓶器中。该系统能够以草编被褥输出1.9 kg / s的肉牛粪便,而目标速度为1.1 kg / s。每个注射单元的液压功率需求为5.1 kW-s / kg。对该技术进行了为期三年的农艺评估。结果表明,当将肥料置于土壤中时,氮和磷的回收率略有增加。在研究的最后一年,注射对作物的产量似乎还有一些额外的好处。这可以通过注射促进粪肥分解为植物根部可以更好地利用的植物可用的无机形式的养分来解释。补充结果表明,固体肥料的注入是减少土地施用产生的气味的有效方法。然而,在测试地点获得的肉牛粪肥的总体结果表明,在土壤中放置固体粪肥的农艺效益相对有限,可能无法证明额外的相关成本。

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