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Organic amendments effect on the soil chemical properties of marginal land and soybean yield

机译:有机修正对边缘土地和大豆产量的土壤化学性质的影响

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Land use change is increasing, causing a lack of optimal land for agriculture. Marginal land improvement can be made with the application of organic amendments that can improve soil fertility to be optimal for crop cultivation. Land-use change is increasing, causing a lack of optimal land for agriculture. Marginal land improvement can be made with the application of organic amendments that can improve soil fertility to be optimal for crop cultivation. This study was carried out on acid soil of Karanganyar Regency. The treatments tested were P0 (control), P1 (2.5 t rock phosphate/ha + 5 t cow manure/ha), P2 (5 t rock phosphate/ha + 5 t cow manure /ha), P3 (2.5 t dolomite/ha + 5 t cow manure /ha), P4 (5 t dolomite/ha + 5 t cow manure/ha), P5 (5 t rock phosphate/ha + 5 t dolomite/ha + 5 t cow manure/ha) . The result showed that the application of P5 gave the highest yield of soybean of 1.41 t/ha. The application of manure significantly affected soil chemical properties of available P, available Ca, organic matter, and cation exchange capacity, but it did not significantly affect total N.
机译:土地利用变化正在增加,导致农业缺乏最佳土地。可以使用有机修改的应用程序进行边缘土地改善,这可以改善土壤肥力对作物培养的最佳选择。土地使用变化正在增加,导致农业缺乏最佳土地。可以使用有机修改的应用程序进行边缘土地改善,这可以改善土壤肥力对作物培养的最佳选择。该研究进行了卡朗尼甘露甘露甘露甘露甘露甘露糖酸土。测试的处理是p0(对照),p1(2.5 t岩磷酸盐/ ha + 5 t牛粪/ ha),p2(5 t岩磷酸盐/ ha + 5 t cow manure / ha),p3(2.5 t dolomite / ha + 5 T牛粪/ ha),p4(5 t dolomite / ha + 5 t牛粪/ ha),p5(5 t岩磷酸盐/ ha + 5 t dolomite / ha + 5 t cow manure / ha)。结果表明,P5的应用得到了1.41吨/小时的大豆产量。粪肥的应用显着影响可用P,可用Ca,有机物和阳离子交换能力的土壤化学性质,但它没有显着影响N。

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