首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Effects of biochar and nitrogen fertilizer on soil physicochemical properties, nitrogen use efficiency and upland rice ( Oryza sativa) yield grown on an Alfisol in Southwestern Nigeria
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Effects of biochar and nitrogen fertilizer on soil physicochemical properties, nitrogen use efficiency and upland rice ( Oryza sativa) yield grown on an Alfisol in Southwestern Nigeria

机译:生物炭和氮肥对尼日利亚西南部Alfisol上土壤理化特性,氮素利用效率和旱稻(Oryza sativa)产量的影响

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PurposeBiochar and inorganic fertilizer when co-applied have been reported to increase crop yield and enhance soil fertility. However, studies on this complementary effect on soil properties and rain-fed upland rice performance in Sub-Saharan Africa are still scanty. MethodsField factorial studies conducted over 2?years was set up to investigate the interactions between rice husk biochar and inorganic nitrogen (N) fertilizer on a sandy clay loam Alfisol. A two-factor (4?×?4) in RCBD where rice husk biochar was incorporated at four doses, 0, 3, 6, and 12?t/hasup?1/sup, inorganic N fertilizer (urea) at four rates, 0, 30, 60 and 90?N?kg/hasup?1/sup, and their combinations was adopted. ResultsResults showed that combination of biochar and N fertilizer exerted significant ( P ?0.05) interactive effect on rice harvest index, grain and straw yield and N-use efficiency. Interaction between biochar and N fertilizer increased agronomic efficiency by 140% and grain nutrient recovery by 191% over 2?years. Combination of biochar and N fertilizer reduced soil bulk density, increased water holding capacity and soil chemical status such as pH, N, P, K, Corg, Ca, ECEC and base saturation, all within the top 10?cm depth of the soil. ConclusionsOverall, the results established that rice husk biochar can be used as a soil conditioner to enhance upland rice yield on an Alfisol. The combined dose of 3–6?t/hasup?1/sup biochar and 30?kg/hasup?1/sup of N fertilizer is thus recommended for upland rice farmers in the study area.
机译:用途据报道,生物炭和无机肥料同时施用可增加作物产量并增强土壤肥力。但是,对撒哈拉以南非洲土壤特性和雨养旱稻性能的这种互补效应的研究仍然很少。方法进行了为期2年的现场因子研究,以研究稻壳生物炭与砂质壤土Alfisol上的无机氮(N)肥料之间的相互作用。 RCBD中有两个因子(4?×?4),其中稻壳生物炭以4、0、3、6和12?t / ha ?1 无机氮肥(尿素)的剂量掺入)以4、0、30、60和90?N?kg / ha ?1 的比率进行组合,并采用它们的组合。结果结果表明,生物炭和氮肥的组合对水稻的收获指数,粮食和稻草的产量以及氮的利用效率具有显着的交互作用(P>?0.05)。在2年内,生物炭与氮肥之间的相互作用将农艺效率提高了140%,将谷物养分回收率提高了191%。生物炭和氮肥的组合降低了土壤的容重,增加了持水量,并增加了土壤化学状态(例如pH,N,P,K,Corg,Ca,ECEC和碱饱和度),这些都在土壤表层10厘米深处。结论总的来说,结果证实稻壳生物炭可以用作土壤改良剂,以提高Alfisol上的旱稻产量。因此,建议研究地区的旱稻农民将3–6?t / ha ?1 生物炭和30?kg / ha ?1 的氮肥组合剂量。

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