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首页> 外文期刊>Field Crops Research >Hill placement of manure and fertilizer micro-dosing improves yield and water use efficiency in the Sahelian low input millet-based cropping system
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Hill placement of manure and fertilizer micro-dosing improves yield and water use efficiency in the Sahelian low input millet-based cropping system

机译:在撒哈拉以低投入为基础的小米种植系统中,在肥料和肥料的小剂量堆放丘陵可提高产量和水分利用效率

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摘要

Inadequate nutrient supply and insufficient rainfall are the most important limiting factors for crop production in the Sahelian agro-ecological zones. Targeted technology application may help to improve the efficient use of limited nutrient and water resources. The objective of this study was to determine the optimal combination of fertilizer micro-dosing and manure application rates for improved millet yield and enhanced water use efficiency in low input millet-based cropping system. A two-year field experiment was conducted at a research station in Niger using a randomized complete block design with three replications. The treatments consisted of the factorial combination of: (i) two fertilizer micro-dosing options (20 kg ha(-1) of diammonium phosphate (DAP) and 60 kg ha(-1) of NPK corresponding to 2 g hill(-1) of DAP and 6 g hill(-1) of NPK, respectively), (ii) cattle manure at four application rates (0 kg ha(-1), 1000 kg ha(-1), 2000 kg ha(-1), 3000 kg ha(-1)) and (iii) two methods of manure application (broadcasting and hill placement). Millet grain yields under fertilizer micro-dosing combined with manure was increased on average by 59%, 83% and 113% for 1000 kg ha(-1), 2000 kg ha(-1) and 3000 kg ha(-1), respectively compared with fertilizer micro-dosing alone. Combined applications of manure and fertilizer micro-dosing increased water use efficiency significantly. Hill placement of manure increased total dry matter on average by 23% and water use efficiency by 35% relative to manure broadcasting. The total root length density was increased by 66% and 42% in hill placement of manure at 25 cm and 50 cm, respectively, from the hill centre compared with manure broadcast. These results indicate that millet production with the fertilizer micro-dosing technology can be improved further by hill-placement of manure. The combination of 2000 kg ha(-1) of manure and 20 kg DAP ha(-1) hill-placed were most promising for increasing millet yield and the efficient use of limited nutrients and water in Sahelian millet based systems. There is need for testing this technology further together with farmers to valuate its effectiveness. (C) 2015 Elsevier B.V. All rights reserved.
机译:养分供应不足和降雨不足是萨赫勒地区农业生态区作物生产的最重要限制因素。有针对性的技术应用可能有助于提高有限养分和水资源的有效利用。这项研究的目的是确定肥料的微剂量和肥料施用量的最佳组合,以提高基于低投入的基于小米的种植系统的小米产量和水分利用效率。在尼日尔的一个研究站进行了为期两年的野外实验,使用了随机重复的完整块设计并进行了三次重复。处理包括以下因素的组合:(i)两种肥料的微剂量选择(对应于2 g hill(-1)的磷酸二铵(DAP)20 kg ha(-1)和NPK 60 kg ha(-1) )的DAP和NPK的6 g hill(-1)分别),(ii)四种施肥量的牛粪(0 kg ha(-1),1000 kg ha(-1),2000 kg ha(-1) ,3000 kg ha(-1))和(iii)两种施肥方法(播种和堆肥)。分别施肥和配合肥料,小米谷物的产量分别增加了1000%(2000)ha(-1),3000 kg(-1)和59 kg(59)%,83%和113%。与单独使用肥料的微剂量相比。肥料和肥料微剂量的联合应用显着提高了用水效率。相对于粪肥撒播,在小山上放置的粪肥平均使总干物质增加了23%,用水效率增加了35%。与撒肥相比,在距丘陵中心25 cm和50 cm处的粪肥丘陵位置,总根长密度分别增加了66%和42%。这些结果表明,通过肥料的堆放可以进一步提高用肥料微剂量技术生产小米的能力。 2000 kg ha(-1)的肥料和20 kg DAP ha(-1)堆放的组合最有希望提高小米的产量以及在基于Sahelian小米的系统中有效利用有限的养分和水分。需要与农民一起进一步测试该技术,以评估其有效性。 (C)2015 Elsevier B.V.保留所有权利。

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