Effect of Different Levels of NPK, Biochar and Azotobacter on Physico-chemical Properties of Soil on Cowpea (Vigna unguiculata)

Manish Choudhary, T. Thomas, N. Swaroop, Vinay, Ashima Thomas
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Abstract

In light of this, the following goals are present in the experiment "Effect of Different Levels of NPK and Biochar, Azotobacter on Physico-chemical Properties of Soil and Yield Attributes of Cowpea to calculate the impact of various NPK, Biochar, and Azotobacter dosages on the physical-chemical characteristics of soil. An excavated soil sample from the experimental site revealed that the land topography ranged from nearly level to sloped by 1% to 6%, with soil area falling into the Inceptisol order. The soil texture was sandy loam, with sand percentages of 62.65%, silt percentages of 21.09, and clay percentages of 16.26. The pH of soil was 6.89, and its electrical conductivity (EC) was non-saline (0.42 ds m-1). Organic carbon content was low to medium, available nitrogen was low to medium (280.78 kg ha-1), available phosphorus was 17.34 kg ha-1, and available potassium was 168.16 kg ha-1. Two factors with three levels of @NPK 0, 50, and 100% ha-1, three levels of @Biochar 0, 50, and 100% ha-1, and a randomized block design were used in the statistical analysis. During field testing, nine different treatments were used; the best outcomes were significant. The results indicate that the physical and chemical parameters of the soil, including the cumulative mean values for bulk density (1.39 and 1.41 mg m-3), particle density (2.46 and 2.47 mg m-3), and soil pH (6.89 and 6.91), attained their maximum in T1 (Absolute control) at depths of 0-15 cm and 15-30 cm, respectively. Additionally, the percentage pore space was found to be 48.22% and 47.39%, and the water holding capacity was found to be 44.14% and 45.34%), electrical conductivity (EC) was measured at 0.49 ds m-1 and 0.52 ds m-1, the percentage of organic carbon was determined to be 0.40%), and the available nitrogen was found to be (299.78 kg ha-1 and 295.76 kg ha-1, available phosphorus was (23.78 kg ha-1 and 21.98 kg ha-1), and the available potassium was (179.25 kg ha-1 and 176.56 kg ha-1).
不同水平的氮磷钾、生物炭和氮化细菌对豇豆(Vigna unguiculata)土壤理化性质的影响
有鉴于此,"不同水平的氮磷钾、生物炭和氮杂菌对豇豆土壤理化性质和产量属性的影响 "实验提出了以下目标,以计算各种氮磷钾、生物炭和氮杂菌用量对土壤理化性质的影响。从实验地挖掘出的土壤样本显示,土地地形从几乎平坦到倾斜 1%至 6%不等,土壤面积属于 Inceptisol 顺序。土壤质地为沙壤土,其中沙子占 62.65%,淤泥占 21.09%,粘土占 16.26%。土壤的 pH 值为 6.89,导电率(EC)为非碱性(0.42 ds m-1)。有机碳含量为中低水平,可利用氮为中低水平(280.78 千克/公顷-1),可利用磷为 17.34 千克/公顷-1,可利用钾为 168.16 千克/公顷-1。统计分析采用了两个因子,即 @NPK 0、50 和 100% ha-1 三个水平,@Biochar 0、50 和 100% ha-1 三个水平,以及随机区组设计。在田间试验中,共使用了九种不同的处理;最佳结果是显著的。结果表明,土壤的物理和化学参数,包括容重(1.39 和 1.41 mg m-3)、颗粒密度(2.46 和 2.47 mg m-3)和土壤 pH 值(6.89 和 6.91)的累积平均值,分别在 T1(绝对对照)的 0-15 厘米和 15-30 厘米深度达到最大值。此外,孔隙度百分比分别为 48.22% 和 47.39%,持水量分别为 44.14% 和 45.34%),电导率(EC)分别为 0.49 ds m-1 和 0.52 ds m-1,有机碳百分比为 0.可用氮为 299.78 千克/公顷和 295.76 千克/公顷,可用磷为 23.78 千克/公顷和 21.98 千克/公顷,可用钾为 179.25 千克/公顷和 176.56 千克/公顷。
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