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Soil microstructure alterations induced by land use change for sugarcane expansion in Brazil

机译:巴西甘蔗扩张土地利用变化诱导的土壤微观结构改变

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Land use change (LUC) alters soil structure and, consequently, the functions and services provided by these soils. Conversion from extensive pasture to sugarcane is one of the largest land transitions in Brazil as a result of the growth of the domestic and global demands of bioenergy. However, the impacts of sugarcane expansion on the soil structure under extensive pasture remains unclear, especially when considering changes at the microscale. We investigated whether LUC for sugarcane cultivation impacted soil microstructure quality. Undisturbed soil samples were taken from two soil layers (0-10 and 10-20 cm) under three contrasting land uses (native vegetation-NV, pasture-PA and sugarcane-SC) in three different locations in the central-southern Brazil. Oriented thin sections (30 mu m) were used for micromorphological analysis. The total area of pores decreased following the LUC in the following order: NV > PA > SC in both soil layers. The area of large complex packing pores (>0.01 mm(2)) also decreased with the LUC sequence: NV>PA>SC. Qualitative and semi-quantitative micromorphological analysis confirmed porosity reduction was driven by the decrease in complex packing pores and that biological features decreased in the same LUC sequence as the quantitative parameters. Therefore, LUC for sugarcane expansion reduced microscale soil porosity, irrespectively of soil type and site-specific conditions, indicating that the adoption of more sustainable management practices is imperative to preserve soil structure and sustain soil functions in Brazilian sugarcane fields.
机译:土地利用变化(LUC)改变了土壤结构,因此,这些土壤提供的功能和服务。从广泛的牧场转换为甘蔗是巴西的最大土地过渡之一,由于生物能源的国内和全球需求的增长。然而,在广泛的牧场下,甘蔗扩张对土壤结构的影响尚不清楚,特别是在考虑微米的变化时。我们调查了甘蔗种植的LUC是否受到土壤微观结构的质量。在巴西中部三个不同地点的三个不同地点的三种对比土地使用(原生植被-NV,牧场-PA和甘蔗-SC)下,从两种土壤层(0-10和10-20厘米)取出未受干扰的土壤样品。定向薄切片(30μm)用于微观分析。孔的总面积在下列顺序下调以下顺序:在两层土层中的NV> PA> SC。大型复杂包装孔(> 0.01mm(2))的区域也随着LUC序列的降低:NV> PA> SC。定性和半定量微观分析通过复合填料孔的降低驱动确认的孔隙率降低,并且在与定量参数相同的LUC序列中的生物学特征降低。因此,甘蔗膨胀的LUC膨胀减少了微观土壤孔隙率,无论土壤型和特定的条件如何,都是采用更可持续的管理实践,以保护土壤结构并在巴西甘蔗领域维持土壤功能。

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