巴西塞拉多农牧一体化系统的土壤物理和生物特性

J. A. Bonetti, H. B. Paulino, E. D. Souza, M. Carneiro, J. O. Caetano
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引用次数: 6

摘要

摘要/ Abstract摘要:本研究旨在评价农牧一体化系统(ICLS)不同季节下,有无放牧条件下土壤的物理和生物特性。该实验是在巴西塞拉多生物群系的罗德式Eutrudox中进行的。处理包括0.25、0.35和0.45 m高度的放牧区(放牧后种植大豆)和非放牧区。ICLS对土壤容重、总孔隙度、宏观孔隙度和微观孔隙度均无负面影响。实施ICLS后,放牧区和非放牧区土壤容重减小,土壤宏观孔隙度增大。然而,三年后,堆积密度和宏观孔隙度恢复到与ICLS实施前相似的值。ICLS土壤抗渗透能力较高,主要表现在土壤深度为0.00m ~ 0.05 m。4年后,ICLS促进了微生物生物量C、N的增加和代谢商的降低。微生物生物量碳和代谢商与加权平均直径有关。ICLS对土壤物理和生物特性的好处与适当的ICLS实施、适当的放牧高度(0.35 m)和维持土壤覆盖有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil physical and biological properties in an integrated crop-livestock system in the Brazilian Cerrado
Abstract: The objective of this work was to evaluate the soil physical and biological properties in an integrated crop-livestock system (ICLS), with or without cattle grazing, in different seasons. The experiment was carried out in the Cerrado biome, in Brazil, in a Rhodic Eutrudox. The treatments consisted of grazing areas (Urochloa ruziziensis) at 0.25, 0.35, and 0.45 m heights (with soybean cultivation after grazing) and of nongrazed areas. The ICLS had no negative effects on soil bulk density, total porosity, macroporosity, and microporosity. After ICLS implementation, the values of soil bulk density decreased, and those of soil macroporosity increased, in the grazed and nongrazed areas. However, after three years, bulk density and macroporosity were reestablished to values similar to those before ICLS implementation. Soil penetration resistance was higher in the ICLS, mainly at 0.00-0.05 m soil depth. After four years, ICLS promoted the increase of microbial biomass C and N and the reduction of the metabolic quotient. The microbial biomass carbon and the metabolic quotient were related to the weighted mean diameter. ICLS benefits to soil physical and biological properties are associated with adequate ICLS implementation, adequate grazing height (0.35 m), and maintenance of soil cover.
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