Fanyaaju stabilization and productivity of Pennisetum Pedicellatum in response to planting position and spacing at Hawassa Lake watershed, Southern Ethiopia

IF 1.7 4区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY
Zemede Amado Kelbore, Tesfatsion Tadele Wote
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Abstract

The efficiency of physical soil conservation structures could be improved through properly managed biological conservation strategies. Even though the physical soil and water conservation structures were implemented in many parts of Ethiopia; the structures were not stabilized well. The experiment was carried out in Hawassa Lake watershed by considering two planting positions (burm and embankment) and four spacings (5, 10, 15, and 20 cm) with four replications from 2018 to 2020 in RCBD design with a factorial combination of treatments. Results showed that desho grass planted on the embankment of fanyaaju with 20 cm space provided soil aggregate stability values of 31.65, 20.53,15.70, 11.74, and 18.70% at sieve sizes of >2 mm, 1–2 mm, 0.5–1 mm, 0.25–0.5 mm, and <0.25 mm, respectively. These values were significantly higher than others. The lower soil aggregate stability was recorded on desho grass planted at the end of the burm with 5 cm planting space. Desho grass planted on embankments with 15 cm and 20 cm also registered higher soil moisture values of 29.32 and 23.9%, respectively. The highest grass biomass yield of 1755.1 g was recorded on the embankment + PS of 15 cm. Thus, the desho plants maintained on the fanyaaju embankment with 20 cm space showed prolific root and stem growth and stabilized the physical structure. The marginal rate of return produced on 20 cm + Emb was 62.92%, showing economic viability over other treatments. Therefore, the study strongly recommends planting desho grass on the embankment of fanyaaju with 20 cm planting space as the best option for bund stabilization and productivity.
埃塞俄比亚南部哈瓦萨湖流域马尾草种植位置和间距对Fanyaaju稳定性和生产力的响应
通过合理管理生物保护策略,可以提高物理土壤保持结构的效率。尽管在埃塞俄比亚的许多地方实施了物理水土保持结构;结构没有很好地稳定。试验在哈瓦萨湖流域进行,采用RCBD设计,采用因子组合处理,从2018年到2020年,采用2种种植位置(垄和堤)和4种间距(5、10、15和20 cm), 4个重复。结果表明:在>2 mm、1-2 mm、0.5-1 mm、0.25 - 0.5 mm和<0.25 mm筛孔条件下,种植面积为20 cm的大松草土壤团聚体稳定性值分别为31.65、20.53、15.70、11.74和18.70%;这些值明显高于其他值。以5 cm种植间距,在烧末种植大朔草,记录下下层土壤团聚体稳定性。15 cm和20 cm路堤上种植的大松草土壤水分值也较高,分别为29.32%和23.9%。15 cm堤岸+ PS的草生物量产量最高,为1755.1 g。因此,在20 cm空间内维持的花叶菊植株根系生长旺盛,物理结构稳定。20 cm + Emb处理的边际收益率为62.92%,经济效益优于其他处理。因此,本研究强烈建议在凡雅居河堤上种植大朔草,种植间距为20 cm,是稳定河堤和提高生产力的最佳选择。
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来源期刊
Cogent Food & Agriculture
Cogent Food & Agriculture AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
3.30
自引率
5.00%
发文量
79
审稿时长
11 weeks
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