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Repeated Freeze-Thaw Cycle Effects on Soil Compaction in a Clay Loam in Northeastern Montana

机译:蒙大拿州东北部粘土壤土反复冻融循环对土壤压实的影响

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In recent years, there has been an increased global concern regarding the impact of soil compaction on crop production and soil quality in modern mechanized agricultural farming systems. Farm equipment is heavier than ever before, and many farmers have resorted to energy intensive deep tillage to alleviate compaction. Freeze-thaw processes influence the physical properties of soil, primarily soil compaction and structure. A 3-yr field study was established in fall 2009 to investigate the effects of the dynamics of freeze-thaw cycles (FTCs) on soil compaction in a clay loam. Results showed that frequent FTCs over the winter generally alleviated soil compaction at the 0- to 30-cm depth. During the winter of 2009-2010, soil penetration resistance (PR) in compacted treatments that were subject to freezing and thawing conditions was significantly reduced by 73, 68, and 59% at depths of 0 to 10, 10 to 20, and 20 to 30 cm, respectively. In compacted soils that were not subject to freezing, PR was significantly reduced by approximately 50, 60, and 46% at the same respective depths of the soil profile presumably due to the biology of soil and disruptive effects of shrink-swell cycles caused by frequent wetting-drying processes. These results demonstrate that repeated FTCs can alleviate soil compaction and alter soil physical quality. We conclude that FTCs associated with typical winter weather conditions are the most effective and economical way to alleviate soil compaction and improve soil structure through the dynamics of FTCs
机译:近年来,全球越来越关注在现代机械化农业耕作系统中土壤压实对作物生产和土壤质量的影响。农场设备比以往任何时候都要重,许多农民已采用能源密集型的深耕机来减轻压实。冻融过程会影响土壤的物理性质,主要影响土壤的压实度和结构。 2009年秋季建立了为期3年的田野研究,以研究冻融循环动力学(FTC)对粘土壤土中土壤压实的影响。结果表明,冬季频繁使用FTC可以减轻0至30 cm深度的土壤压实。在2009-2010年冬季,在0至10、10至20和20至20的深度下,经受冷冻和融化条件的压实处理的土壤渗透阻力(PR)分别降低了73%,6​​8%和59%。 30厘米在未冻结的压实土壤中,在相同的土壤剖面深度处,PR分别显着降低了约50%,60%和46%,这可能是由于土壤的生物学特性和频繁收缩引起的收缩-膨胀周期的破坏润湿干燥过程。这些结果表明,重复的FTC可以减轻土壤压实并改变土壤的物理质量。我们得出结论,与典型的冬季天气状况相关的FTC是通过FTC的动力学减轻土壤压实和改善土壤结构的最有效,最经济的方法。

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