首页> 外文期刊>Brazilian Journal of Soil Science >Use potential and structural quality of two soils under sugarcane production in Goianesia, Goias State, Brazil.
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Use potential and structural quality of two soils under sugarcane production in Goianesia, Goias State, Brazil.

机译:巴西戈亚斯州戈亚内西亚,甘蔗生产下两种土壤的利用潜力和结构质量。

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With the expansion of the sugar/alcohol sector, the native vegetation was removed from soils with few limitations as well as with great risks for intensive cultivation and the areas incorporated in the production process. Therefore, the adoption of management systems that maintain the soil structure may be a key for the maintenance of the quality and sustainability of sugarcane production systems. This study was conducted to evaluate the potential use for sugarcane and structural quality of a Dystrophic Haplic Cambisol (CXvbd) (Inceptisol) and Dystrophic Red-Yellow Latosol (LVAd) (Oxisol), in the county of Goianesia, Goias State, Brazil. The soils of each area were classified for their use capacity. Disturbed soil samples were collected at depths corresponding to the surface and subsurface diagnostic horizons, for chemical and physical-hydric characterization. Undisturbed samples were collected (from the layers 0-0.05, 0.1-0.15 and 0.3-0.4 m) to determine soil porosity, water retention curves, the least limiting water range and preconsolidation pressure. The evaluation of soils by the land use capacity system indicated that CXvbd belongs to class IVe and LVAd to IIIs. Results of the analysis of the chemical and physical-hydric attributes of the CXvbd indicated that a continuous sugarcane cultivation, despite the classification as IVe in the use potential system, was due to the adoption of agricultural terraces, aside from the fact that the degrees of soil revolving was lower and of soil cover higher, when sugarcane was harvested green. The water availability for plants was highest for CXvbd, which tends to be advantageous for crops. In the study conditions, the LVAd was most susceptible to compaction, which requires limitations of machinery traffic.
机译:随着糖/酒精领域的扩大,从土壤中去除了原生植被,几乎没有什么限制,而且集约耕作和生产过程中所涉及的地区也存在很大的风险。因此,采用维持土壤结构的管理系统可能是维持甘蔗生产系统质量和可持续性的关键。进行这项研究的目的是评估巴西戈亚斯州戈亚内西亚县的营养不良的触觉甘比索(CXvbd)(Inceptisol)和营养不良的红黄色Latosol(LVAd)(Oxisol)对甘蔗的潜在用途和结构质量。根据其使用能力对每个地区的土壤进行分类。在对应于地面和地下诊断层的深度处收集被扰动的土壤样品,以进行化学和物理水力表征。收集未扰动的样品(从0-0.05、0.1-0.15和0.3-0.4 m层)以确定土壤孔隙率,保水曲线,最小极限水范围和预固结压力。通过土地利用能力系统对土壤进行的评估表明,CXvbd属于IVe类,LVAd属于IIIs类。对CXvbd的化学和物理-水合属性的分析结果表明,尽管在使用潜力系统中被分类为IVe,但连续甘蔗种植是由于采用了农业梯田,当甘蔗收获成绿色时,土壤旋转较低,土壤覆盖较高。 CXvbd的植物可用水量最高,对作物有利。在研究条件下,LVAd最容易压实,这需要限制机械流量。

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