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Topsoil Properties as Affected by Tillage Systems in the Rolling Pampa Region of Argentina

机译:耕作系统对阿根廷滚动潘帕地区表土特性的影响

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摘要

Improved topsoil structural quality is expected under no-till farming, but soil physical constraints can develop under continuous no-till. Our objectives were: to evaluate the properties of loam, silty loam, and silty clay loam soils under various management practices on a regional scale; to clarify the relationship between soil organic matter pools and soil physical properties; and to find a minimum set of topsoil properties to characterize trends established by tillage. Thirty-nine loam, silty loam, and silty clay loam soils were sampled from cropped fields managed using conventional tillage (CT) and no-till (NT) as well as six undisturbed soils (uncropped). The A horizon thickness did not differ among soil textural groups and was 4 cm thicker in uncropped soils. Total and particulate organic C were significantly affected by management (uncropped > CT = NT, P < 0.001). Soil structural instability of uncropped soils (0.317 mm) differed from CT soils (0.723 mm) but not from NT soils (0.573 mm). Soil structural instability was negatively related to total and particulate organic C, and no relation was found with the resistant organic C pool. Water infiltration rate was the only topsoil property affected by a significant texture x management interaction. Lower infiltration rates in NT silty soils were caused by platy structural forms with horizontal pores. Soil penetration resistance (0–5 cm) was 0.77 MPa higher in NT than in CT soils. A minimum set of topsoil properties to evaluate tillage management includes structural instability, total or particulate organic C, infiltration rate, and penetration resistance.
机译:在免耕法下,表土结构质量有望得到改善,但是在连续免耕法下,土壤物理约束条件可能会发展。我们的目标是:在区域范围内评估各种管理方式下的 壤土,粉质壤土和粉质粘土壤土的特性;阐明 土壤有机质库与土壤物理性质之间的关系;和 来找到最小的表土属性集,以表征耕作产生的 趋势。使用常规耕作(CT)和免耕(NT)方式从 管理的作物田中取样了39个壤土,粉质壤土, 和粉质粘土壤土。 sup> 六个未受干扰的土壤(未播种)。土壤质地组之间的A层厚度 没有差异,在 未耕种的土壤中,其水平厚度厚4 cm。总有机碳和颗粒有机碳受管理的影响显着 (未耕种> CT = NT,P <0.001)。 未耕种土壤(0.317 mm)的土壤结构失稳差异 来自CT土壤(0.723毫米),而非来自NT土壤(0.573毫米)。土壤 的结构失稳与总有机碳和颗粒状 有机碳负相关,与抗性有机 C库没有关系。水分渗透率是唯一受到显着纹理x管理相互作用影响的表土属性 NT粉质土壤的较低渗透率是由板状 结构引起的形成有水平毛孔。 NT的土壤渗透阻力 (0-5 cm)比CT土壤高0.77 MPa。评估耕作管理的一组 最少的表层土壤属性 包括结构不稳定性,总有机或颗粒有机 C,入渗速率和抗穿透性。 >

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  • 来源
    《Soil Science Society of America Journal》 |2009年第4期|1242-1250|共9页
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    Cátedra de Fertilidad y Fertilizantes, Facultad de Agronomía, Univ. de Buenos Aires, Av. San Martín 4453, C1417DSE Buenos Aires, Argentina,INTA EEA Angil, Ruta 5 km 580, La Pampa, Argentina;

    Cátedra de Fertilidad y Fertilizantes, Facultad de Agronomía, Univ. de Buenos Aires, Av. San Martín 4453, C1417DSE Buenos Aires, Argentina,INTA EEA Angil, Ruta 5 km 580, La Pampa, Argentina;

    Cátedra de Fertilidad y Fertilizantes, IBYF-CONICET, Facultad de Agronomía, Univ. de Buenos Aires, Av. San Martín 4453, C1417DSE Buenos Aires, Argentina,INTA EEA Angil, Ruta 5 km 580, La Pampa, Argentina;

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