甘蔗保护性管理制度下土壤物理属性的空间变异

S. Arcoverde, C. M. A. D. Souza, H. Nagahama, J. W. Cortez, Jackeline Matos do Nascimento
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引用次数: 0

摘要

甘蔗种植的土壤管理保护系统正在增加。然而,关于这种管理对不同规模的土壤物理质量的影响的信息仍然很少,这是农业活动可持续性的基础。目的是评估甘蔗免耕和少耕条件下Oxisol物理属性的变异性和空间相关性。在甘蔗种植后45天,使用间隔7.5m的规则网格收集未形成的土壤样本,每个耕作系统共32个点。在两个深度(0-0.10和0.10-0.20m)测定了土壤密度、抗渗透性、总孔隙度、大孔隙和微孔性。使用地统计学方法在两种耕作系统中都验证了在两个深度的空间依赖性,主要在0.00-0.10m层,在免耕中,与调整后的球形模型的强依赖性减少了准备,中等依赖性,与指数调整。在0.10-0.20m层,空间依赖性是一种反演和调整模型,即在免耕中,存在中度依赖性、指数调整性、减少准备性、强依赖性和球面调整性。线性相关性表明土壤物理属性在多大程度上与管理条件和当前行为(如等值线图)相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial variability of soil physical attributes under conservation management systems for sugarcane cultivation
Conservation systems for soil management are increasing for sugarcane cultivation. However, there is still little information about the effects of this management on soil physical quality at different scales, fundamental to agricultural activity sustainability. The objective was to evaluate the variability and spatial dependence of Oxisol physical attributes under no-tillage and reduced-tillage in sugarcane cultivation. Undeformed soil samples were collected 45 days after sugarcane planting, using a regular mesh with intervals of 7.5 m, totaling 32 points in each tillage system. Soil density, resistance to penetration, total porosity, macroporosity, and microporosity were determined in two depths (0-0.10 and 0.10-0.20 m). Using geostatistical methods was verified in both tillage systems that spatial dependence in the two depths, prevailing in the layer 0.00-0.10 m, in no-tillage, strong dependence with the adjusted spherical model reduced preparation, moderate dependence, with exponential adjustment. In the 0.10-0.20 m layer, spatial dependence was an inversion and adjusted model, i.e., in no-tillage, there was moderate dependence, exponential adjustment, reduced preparation, strong dependence, and spherical adjustment. Linear correlations demonstrate how much soil physical attributes are related to management conditions and present behaviors like isoline cartogram.
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