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Long-term tillage impact on soil hydraulic properties

机译:长期耕作对土壤液压特性的影响

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An improved understanding of the impact of tillage systems on soil hydraulic properties is necessary to conserve and manage soil water under a changing climate. The objective of this study was to specifically measure soil hydraulic properties (total porosity, water infiltration, saturated hydraulic conductivity, and water retention characteristics) in no-till, chisel plow, disk, and moldboard plow systems under rainfed continuous corn (Zea mays L.) after 35 yr on silty clay loam soils in eastern Nebraska. We measured ponded water infiltration (positive soil water pressure) and tension (-1 kPa matric potential) infiltration to exclude macropore (>125 mu m diameter) flow. Tillage treatments affected ponded infiltration only. Moldboard plow significantly increased ponded infiltration rate by 21.6 cm h(-1) at 5 min and by 8.8 cm h(-1) at 60 min compared with no-till. However, when compared with disk and chisel, moldboard plow increased ponded infiltration rates at all measurements times, which lasted 3 h. Regarding cumulative infiltration, moldboard plow increased cumulative infiltration by 26.9 cm to 39.0 cm after 3 h compared with other tillage systems. Similarities in tension infiltration suggest that the higher ponded infiltration for moldboard plow was most likely due to the presence of voids or fractures (>125 mu m) created by full inversion tillage. Total porosity, saturated hydraulic conductivity, and water retention among the treatments did not differ. Overall, soil hydraulic properties did not differ among tillage systems except water infiltration in these silty clay loam soils after 35 yr of management. (C) 2017 Elsevier B.V. All rights reserved.
机译:在变化的气候下,有必要改进对耕地系统对土壤液压性能的影响,以保护和管理土壤水。本研究的目的是专门测量雨量连续玉米(Zea mays L 。)在内布拉斯加州东部的粉质粘土壤土土壤上35年后。我们测量了池塘渗透(正土壤水压)和张力(-1 kPa matric潜力)浸润,以排除宏观(> 125 mu m直径)流量。耕作治疗仅受到浸润的渗透。塑料板犁在5分钟,60分钟的渗透液体犁在5分钟和8.8cm H(-1)上显着提高了浸入液体速率21.6cm H(-1)。然而,与盘和凿子相比,塑料板犁在所有测量时间上增加了渗透率,持续3小时。对于累积渗透,与其他耕作系统相比,塑料板犁犁犁累计增加26.9厘米至39.0cm。张力渗透的相似性表明,由于通过全转化耕作产生的空隙或裂缝(>125μm)的存在,迫击压板犁的较高渗透最有可能。治疗中的总孔隙度,饱和液压导电性和水保留没有不同。总体而言,除了35年后这些粉质粘土土壤中的水浸润除外,土壤液压特性没有差异。 (c)2017 Elsevier B.v.保留所有权利。

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