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Effect of integrated use of farmyard manure and chemical fertilizers on soil physical properties and productivity of soybean

机译:农家化肥与化肥结合使用对大豆土壤物理特性和生产力的影响

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The effect of sole application of inorganic fertilizers (NPK) (N:P:K:: 30:26:25 kg ha(-1)) and combined application of farmyard manure (FYM) @ 4 Mg ha(-1) and inorganic fertilizers (NPK + FYM) vis-a-vis non-application of fertilizers and manures (control) on changes in soil physical properties and plant growth characteristics of soybean (cv. JS 335) was studied in a deep Vertisol at the Indian Institute of Soil Science, Bhopal during the year 2001-2004. The results indicated that conjunctive use of recommended dose of fertilizer and farmyard manure (NPK + FYM) resulted in significant (P < 0.05) decrease of bulk density (9.3%), soil penetration resistance (42.6%) and increase in hydraulic conductivity (95.8%) and mean weight diameter of the water stable aggregates (13.8%) and soil organic carbon content (45.2%) compared to control. Among the aggregates, in macro-aggregate fraction (250-500 mu m and 500-1000 mu m size fraction) and in large macro-aggregate fraction (>2000 mu m) maximum soil organic carbon concentration was recorded under NPK + FYM. The root mass of soybean was mostly (98%) confined to 15 cm soil depth. Combined application of NPK and FYM recorded significantly higher (P < 0.05) root length density and root mass density of soybean in the 0-15 cm soil layer at flowering stage over NPK (28 and 65%) and control (63 and 175%). The root length density of soybean was significantly negatively correlated with the penetration resistance (r = 0.98, P < 0.05). Application of FYM @ 4 Mg ha(-1) with NPK significantly (P < 0.05) improved the biomass partitioning towards pod over NPK and control. The grain yield, water use efficiency and nitrogen use efficiency of soybean under NPK + FYM were significantly (P < 0.05) higher than NPK and control. The total above ground biomass and the leaf area index at R8 stage could account for respectively, 89 and 63% variation in grain yield of soybean. Therefore in every crop season, integrated use of farmyard manure at 4 Mg ha(-1) and recommended dose of chemical fertilizers may be practised in Vertisols for improving soil physical environment and achieving higher soybean productivity through efficient utilization of water and nutrients
机译:单独施用无机肥料(NPK)(N:P:K :: 30:26:25 kg ha(-1)的效果以及在4 Mg ha(-1)与无机肥料组合施用农家肥(FYM)的效果肥料(NPK + FYM)与不施用肥料和肥料(对照)改变土壤物​​理特性和大豆植物生长特性(cv。JS 335)的关系博帕尔土壤科学系,2001-2004年。结果表明,联合使用推荐剂量的肥料和农家肥(NPK + FYM)导致堆密度(9.3%),耐土壤渗透性(42.6%)和水力传导率(95.8)显着降低(P <0.05)。与对照相比,水稳定聚集体的平均重量直径(13.8%)和土壤有机碳含量(45.2%)。在团聚体中,在NPK + FYM下记录了最大集聚体部分(250-500μm和500-1000μm粒径部分)和大的宏观集聚体部分(> 2000μm)的最大土壤有机碳浓度。大豆的根质量主要(98%)限制在15 cm的土壤深度内。 NPK和FYM的联合施用在开花期0-15 cm土层的大豆根长密度和根质量密度显着高于NPK(28和65%)和对照(63和175%)(P <0.05) 。大豆的根长密度与抗穿透性显着负相关(r = 0.98,P <0.05)。 FYM @ 4 Mg ha(-1)与NPK的配合使用显着(P <0.05)改善了NPK和对照的生物量向荚果的分配。在NPK + FYM条件下,大豆的籽粒产量,水分利用效率和氮素利用效率均明显高于NPK和对照(P <0.05)。在R8期,地上总生物量和叶面积指数分别占大豆籽粒产量的89%和63%。因此,在每个作物季节,可以在Vertisols中综合使用4 Mg ha(-1)的农家肥和推荐剂量的化肥,以改善土壤物理环境并通过有效利用水和养分来提高大豆的生产力

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