首页> 外文期刊>Communications in Soil Science and Plant Analysis >Effect of Integrated Nutrient Management on Soil Physical Properties and Crop Productivity under a Maize (Zea mays)-Mustard (Brassica campestris) Cropping Sequence in Acidic Soils of Northeast India
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Effect of Integrated Nutrient Management on Soil Physical Properties and Crop Productivity under a Maize (Zea mays)-Mustard (Brassica campestris) Cropping Sequence in Acidic Soils of Northeast India

机译:在印度东北酸性土壤中玉米(Zea mays)-芥末(Brassica campestris)种植序列下养分综合管理对土壤物理性质和作物生产力的影响

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摘要

A five-year (2001/02-2006/07) field experiment was carried out on acidic clay loam soil classified as Typic Hapludalf with a maize-mustard crop sequence to study the effect of continuous application of nitrogen, phosphorus, and potassium (NPK) fertilizers alone and in combination with lime, farmyard manure (FYM), and biofertilizers on soil physical properties, soil organic carbon (SOC), soil microbial biomass carbon (SMBC), and crop yields on the hilly ecosystem of Meghalaya. Significant improvement in the soil physical conditions of the soil was observed under integrated application of organic manure and inorganic fertilizers. Addition of NPK fertilizers along with organic manure, lime, and biofertilizers increased soil organic carbon (SOC) content, aggregate stability, moisture-retention capacity, and infiltration rate of the soil while reducing bulk density. The SOC content under the treatment of 100% NPK + lime + biofertilizer + FYM was significantly greater (68.58%) than in control plots. Maize and mustard crop yields also significantly increased (4.73- and 21.09-folds, respectively) with continuous application of balanced inorganic (100% NPK) + lime + biofertilizer + FYM as compared to the control plots. However, crop yields drastically reduced under application of integrated nutrients without FYM as compared to the treatment with FYM application. Thus, the results suggest that integrated use of a balanced inorganic fertilizer in combination with lime and organic manure sustains a soil physical environment that is better for achieving higher crop productivity under intensive cropping systems in the hilly ecosystem of northeastern India.
机译:在一个分类为Typic Hapludalf的酸性黏土壤土上,进行了为期五年(2001 / 02-2006 / 07)的田间试验,研究了玉米-芥菜作物序列,研究了连续施用氮,磷和钾(NPK)的效果。 )单独使用肥料,并与石灰,农家肥(FYM)和生物肥料配合使用,对梅加拉亚邦丘陵生态系统的土壤物理特性,土壤有机碳(SOC),土壤微生物生物量碳(SMBC)和农作物产量产生影响。在有机肥料和无机肥料的综合应用下,土壤的土壤物理条件得到了显着改善。与有机肥料,石灰和生物肥料一起添加氮磷钾肥料可以增加土壤有机碳(SOC)含量,团聚体稳定性,保水能力和土壤渗透率,同时降低堆积密度。在100%NPK +石灰+生物肥料+ FYM处理下,SOC含量(68.58%)明显高于对照样区。与对照样地相比,连续施用平衡的无机(100%NPK)+石灰+生物肥料+ FYM,玉米和芥菜的单产也显着提高(分别为4.73和21.09倍)。但是,与施用FYM的处理相比,在不施用FYM的情况下,施用综合养分会大幅降低作物产量。因此,结果表明,在印度东北部丘陵生态系统中,综合使用平衡的无机肥料,石灰和有机肥可以维持土壤物理环境,该环境有利于在集约化种植系统下实现更高的作物生产力。

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