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Improving soil phosphorus availability and yield of Zea mays l. using biochar and compost derived from agro-industrial wastes

机译:改善土壤磷的可用性和ZEA的产量L.使用生物炭和堆肥来自农业工业废物

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摘要

Tropical soils such as Ultisols fix phosphorus (P) because of their characteristically high contents of aluminium and iron. Organic amendments could be used to mitigate P fixation. This study aimed to: i) improve soil P availability, nutrients uptake, and yield of Zea mays L. using biochar and pineapple leaf residues compost; and ii) determine if the use of biochar and pineapple leaf residues compost could exert a residual effect on P. Two cycles of field trials were carried out and the test crop used was Zea mays L. hybrid F1. At harvest, the plants were harvested, partitioned into leaves and stems, and analysed. Soil samples were also collected and analysed. The results suggest that the soil total P, available P, inorganic P, and organic P recovered from the treatments with the organic amendments were higher compared with the nonorganic amendments. The availability of soil macro-nutrients in the soils and Zea mays L. yield were higher in the treatments with the organic amendments in the first and second field trials. Amending chemical fertilisers with organic amendments have a larger residual effect than chemical fertilisers only and can be used to ameliorate P fixation of acid soils to improve maize production on acid soils.
机译:由于其特征性的铝和铁,热带土壤如Ultisols Fix Fillulus(P)。有机修改可用于减轻P固定。本研究旨在:i)改善土壤可用性,养分摄取,Zea 5月L的产量。使用生物炭和菠萝叶残留堆肥; II)确定使用生物炭和菠萝叶残留堆肥是否可以对P的剩余效果进行剩余效果。进行两次的现场试验,使用的测试作物是Zea mays L.杂交F1。在收获时,收获植物,分配到叶片和茎中并分析。还收集和分析土壤样品。结果表明,与非有机型修正案相比,从治疗中恢复的土壤总P,可用的P,无机P和有机P较高。土壤和Zea 5月L.产量的土壤宏观营养素的可用性在第一和第二场试验中的有机修正中的治疗方法较高。随着有机修改的修补化学肥料仅比化学肥料更大的剩余效果,可用于改善酸性土壤的P固定,以改善酸性土壤的玉米产量。

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