Soil test crop response based phosphorous calibration study on maize at Abay Choman district, Horo Guduru Wollega zone, Oromia region, Ethiopia

Temesgen Chimdessa, C. Takele, Garamu Bayeta, Firaol Gemada, Rafisa Leta
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Abstract

Soil test crop response-based P calibration study can give farmers more economic use of fertilizers and better soil management practices. In a view of this, the trial was done in the Abay Choman district on ten experimental farmers’ fields in the first year of the experiment (2018/19 cropping season) to determine the economic rate of N and on twenty farmers’ fields in the second and third years of the experiment (2019/20 and 2020/21 cropping season respectively) to determine phosphorus critical level and requirement factor. In the first year of the experiment, the treatments were combined in factorial with four levels of phosphorus (0, 10, 20, 40 kg/ha) and four levels of nitrogen (0, 46, 92 and 138 kg/ha). While experiments in the second and third years of the experiment were six levels of Phosphorus 0, 10, 20, 30, 40 and 50 kg/ha. The treatments were laid out as a randomized complete block design (RCBD) with three replications. Representative soil samples were taken before planting and analyzed. Experimental sites that have a pH of < 5.5 were amended using the lime application before the setup of the experiment. Soil test results of the study sites before planting indicated that pH values of most soils were strongly acidic (<5.5) and available phosphorus of experimental soil ranged from 3.22 to 13.62 pp. The main effects of both N and P significantly influenced the mean grain yield of maize, but their interaction was not significant with a grand mean of 76.53 qt/ha during the N determination trial. Economic analysis using partial budget analysis showed 92 kg/ha of N was economically optimal for the production of maize in the Abay Choman district. The study also showed that P- the critical value (12 ppm) and P- the requirement factor (10.55 Kg P/ha) were determined for the phosphorus fertilizer recommendation in the study area. Thus, the farmers in the area might be advised to use soil test crop response-based fertilizer recommendations to increase the productivity of maize in and around the study district.
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埃塞俄比亚奥罗米亚州Horo Guduru Wollega地区Abay Choman地区玉米土壤试验作物响应磷校正研究
基于土壤试验作物响应的磷校正研究可以为农民提供更经济的肥料使用和更好的土壤管理方法。为此,本试验在Abay Choman区试验第一年(2018/19种植季)对10个试验农户进行了氮素经济施用量测定,在试验第二年和第三年(分别为2019/20和2020/21种植季)对20个试验农户进行了磷临界水平和需求因子测定。在试验第一年,按因子组合施用4个水平的磷(0、10、20、40 kg/ha)和4个水平的氮(0、46、92和138 kg/ha)。试验第2年和第3年分别为磷0、10、20、30、40和50 kg/ha 6个水平。治疗采用随机完全区组设计(RCBD),有3个重复。种植前采集有代表性的土壤样品进行分析。pH < 5.5的实验场地在实验开始前用石灰进行了修正。试验点种植前土壤测试结果表明,大部分土壤pH值为强酸性(<5.5),试验土壤速效磷在3.22 ~ 13.62 pp之间。氮和磷的主效应对玉米籽粒平均产量均有显著影响,但它们的交互作用不显著,在氮测定试验期间,它们的大平均值为76.53 qt/ha。采用部分预算分析的经济分析表明,在Abay Choman地区,施氮量为92 kg/ hm2的玉米产量在经济上最优。研究还表明,确定了研究区磷肥推荐量的磷临界值(12 ppm)和磷需要量因子(10.55 Kg P/ha)。因此,可以建议该地区的农民使用基于土壤试验作物反应的肥料建议,以提高研究区内及其周边地区的玉米生产力。
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